-
2
-
-
77951217000
-
Dual role of 3-methyladenine in modulation of autophagy via different temporal patterns of inhibition on class I and III phosphoinositide 3-kinase
-
PMID:20123989
-
Wu YT, Tan HL, Shui G, Bauvy C, Huang Q, Wenk MR, et al. Dual role of 3-methyladenine in modulation of autophagy via different temporal patterns of inhibition on class I and III phosphoinositide 3-kinase. J Biol Chem 2010; 285:10850-61; PMID:20123989; http://dx.doi.org/10.1074/jbc.M109.080796
-
(2010)
J Biol Chem
, vol.285
, pp. 10850-10861
-
-
Wu, Y.T.1
Tan, H.L.2
Shui, G.3
Bauvy, C.4
Huang, Q.5
Wenk, M.R.6
-
3
-
-
79952389494
-
PARP and RIP 1 are required for autophagy induced by 11'-deoxyverticillin A, which precedes caspase-dependent apoptosis
-
PMID:21460625
-
Zhang N, Chen Y, Jiang R, Li E, Chen X, Xi Z, et al. PARP and RIP 1 are required for autophagy induced by 11'-deoxyverticillin A, which precedes caspase-dependent apoptosis. Autophagy 2011; 7:598-612; PMID:21460625; http://dx.doi.org/10.4161/auto.7.6.15103
-
(2011)
Autophagy
, vol.7
, pp. 598-612
-
-
Zhang, N.1
Chen, Y.2
Jiang, R.3
Li, E.4
Chen, X.5
Xi, Z.6
-
4
-
-
77955637249
-
ATG12 conjugation to ATG3 regulates mitochondrial homeostasis and cell death
-
Radoshevich L, Murrow L, Chen N, Fernandez E, Roy S, Fung C, et al. ATG12 conjugation to ATG3 regulates mitochondrial homeostasis and cell death. Cell 2010; 142:590-600
-
(2010)
Cell
, vol.142
, pp. 590-600
-
-
Radoshevich, L.1
Murrow, L.2
Chen, N.3
Fernandez, E.4
Roy, S.5
Fung, C.6
-
5
-
-
79951680318
-
Regulation of autophagic activity by 14-3-3ζ proteins associated with class III phosphatidylinositol-3-kinase
-
PMID:20885446
-
Pozuelo-Rubio M. Regulation of autophagic activity by 14-3-3ζ proteins associated with class III phosphatidylinositol-3-kinase. Cell Death Differ 2011; 18:479-92; PMID:20885446; http://dx.doi.org/10.1038/cdd.2010.118
-
(2011)
Cell Death Differ
, vol.18
, pp. 479-492
-
-
Pozuelo-Rubio, M.1
-
6
-
-
77953858790
-
Traf6 and A20 regulate lysine 63-linked ubiquitination of Beclin-1 to control TLR4-induced autophagy
-
PMID:20501938
-
Shi CS, Kehrl JH. Traf6 and A20 regulate lysine 63-linked ubiquitination of Beclin-1 to control TLR4-induced autophagy. Sci Signal 2010; 3:42; PMID:20501938; http://dx.doi.org/10.1126/scisignal. 2000751
-
(2010)
Sci Signal
, vol.3
, pp. 42
-
-
Shi, C.S.1
Kehrl, J.H.2
-
7
-
-
34248998801
-
Functional and physical interaction between Bcl-XL and a BH3-like domain in Beclin-1
-
PMID:17446862
-
Maiuri MC, Le Toumelin G, Criollo A, Rain JC, Gautier F, Juin P, et al. Functional and physical interaction between Bcl-XL and a BH3-like domain in Beclin-1. EMBO J 2007; 26:2527-39; PMID:17446862; http://dx.doi.org/10.1038/sj. emboj.7601689
-
(2007)
EMBO J
, vol.26
, pp. 2527-2539
-
-
Maiuri, M.C.1
Le Toumelin, G.2
Criollo, A.3
Rain, J.C.4
Gautier, F.5
Juin, P.6
-
8
-
-
77953300614
-
Drosophila acinus encodes a novel regulator of endocytic and autophagic trafficking
-
PMID:20504956
-
Haberman AS, Akbar MA, Ray S, Kramer H. Drosophila acinus encodes a novel regulator of endocytic and autophagic trafficking. Development 2010; 137:2157-66; PMID:20504956; http://dx.doi. org/10.1242/dev.044230
-
(2010)
Development
, vol.137
, pp. 2157-2166
-
-
Haberman, A.S.1
Akbar, M.A.2
Ray, S.3
Kramer, H.4
-
9
-
-
78650666886
-
Astrocyte elevated gene-1 induces protective autophagy
-
PMID:21127263
-
Bhutia SK, Kegelman TP, Das SK, Azab B, Su ZZ, Lee SG, et al. Astrocyte elevated gene-1 induces protective autophagy. Proc Natl Acad Sci USA 2010; 107:22243-8; PMID:21127263; http://dx.doi.org/10.1073/pnas.1009479107
-
(2010)
Proc Natl Acad Sci USA
, vol.107
, pp. 22243-22248
-
-
Bhutia, S.K.1
Kegelman, T.P.2
Das, S.K.3
Azab, B.4
Su, Z.Z.5
Lee, S.G.6
-
10
-
-
77951536199
-
ISG20L1 is a p53 family target gene that modulates genotoxic stress-induced autophagy
-
PMID:20429933
-
Eby KG, Rosenbluth JM, Mays DJ, Marshall CB, Barton CE, Sinha S, et al. ISG20L1 is a p53 family target gene that modulates genotoxic stress-induced autophagy. Mol Cancer 2010; 9:95; PMID:20429933; http://dx.doi.org/10.1186/1476- 4598-9-95
-
(2010)
Mol Cancer
, vol.9
, pp. 95
-
-
Eby, K.G.1
Rosenbluth, J.M.2
Mays, D.J.3
Marshall, C.B.4
Barton, C.E.5
Sinha, S.6
-
11
-
-
34250828455
-
Proteomic analysis of membrane-associated proteins from rat liver autophagosomes
-
PMID:17377489
-
Øverbye A, Fengsrud M, Seglen PO. Proteomic analysis of membrane-associated proteins from rat liver autophagosomes. Autophagy 2007; 3:300-22; PMID:17377489
-
(2007)
Autophagy
, vol.3
, pp. 300-322
-
-
Øverbye, A.1
Fengsrud, M.2
Seglen, P.O.3
-
12
-
-
79952343266
-
GDI (AGS3) and a GEF (GIV) regulate autophagy by balancing G protein activity and growth factor signals
-
PMID:21209316
-
Garcia-Marcos M, Ear J, Farquhar MG, Ghosh PA. GDI (AGS3) and a GEF (GIV) regulate autophagy by balancing G protein activity and growth factor signals. Mol Biol Cell 2011; 22:673-86; PMID:21209316; http://dx.doi.org/10.1091/mbc.E10- 08-0738
-
(2011)
Mol Biol Cell
, vol.22
, pp. 673-686
-
-
Garcia-Marcos, M.1
Ear, J.2
Farquhar, M.G.3
Ghosh, P.A.4
-
13
-
-
0037742636
-
The G-protein regulator AGS3 controls an early event during macroautophagy in human intestinal HT-29 cells
-
PMID:12642577
-
Pattingre S, De Vries L, Bauvy C, Chantret I, Cluzeaud F, Ogier-Denis E, et al. The G-protein regulator AGS3 controls an early event during macroautophagy in human intestinal HT-29 cells. J Biol Chem 2003; 278:20995-1002; PMID:12642577; http://dx.doi.org/10.1074/jbc.M300917200
-
(2003)
J Biol Chem
, vol.278
, pp. 20995-21002
-
-
Pattingre, S.1
De Vries, L.2
Bauvy, C.3
Chantret, I.4
Cluzeaud, F.5
Ogier-Denis, E.6
-
14
-
-
0032508564
-
Inhibition of hepatocytic autophagy by adenosine, aminoimidazole-4- carboxamide riboside and N6-mercaptopurine riboside. Evidence for involvement of amp-activated protein kinase
-
PMID:9726984
-
Samari HR, Seglen PO. Inhibition of hepatocytic autophagy by adenosine, aminoimidazole-4-carboxamide riboside and N6-mercaptopurine riboside. Evidence for involvement of amp-activated protein kinase. J Biol Chem 1998; 273:23758-63; PMID:9726984; http://dx.doi.org/10.1074/jbc.273.37.23758
-
(1998)
J Biol Chem
, vol.273
, pp. 23758-23763
-
-
Samari, H.R.1
Seglen, P.O.2
-
15
-
-
41249091730
-
Role of AMP-activated protein kinase in autophagy and proteasome function
-
PMID:18328803
-
Viana R, Aguado C, Esteban I, Moreno D, Viollet B, Knecht E, et al. Role of AMP-activated protein kinase in autophagy and proteasome function. Biochem Biophys Res Commun 2008; 369:964-8; PMID:18328803; http://dx.doi.org/10.1016/j. bbrc.2008.02.126
-
(2008)
Biochem Biophys Res Commun
, vol.369
, pp. 964-968
-
-
Viana, R.1
Aguado, C.2
Esteban, I.3
Moreno, D.4
Viollet, B.5
Knecht, E.6
-
16
-
-
33845924783
-
AMP-activated protein kinase and the regulation of autophagic proteolysis
-
PMID:16990266
-
Meley D, Bauvy C, Houben-Weerts JH, Dubbelhuis PF, Helmond MT, Codogno P, et al. AMP-activated protein kinase and the regulation of autophagic proteolysis. J Biol Chem 2006; 281:34870-9; PMID:16990266; http://dx.doi.org/10. 1074/jbc.M605488200
-
(2006)
J Biol Chem
, vol.281
, pp. 34870-34879
-
-
Meley, D.1
Bauvy, C.2
Houben-Weerts, J.H.3
Dubbelhuis, P.F.4
Helmond, M.T.5
Codogno, P.6
-
17
-
-
77950484269
-
Atg8-family interacting motif crucial for selective autophagy
-
PMID:20083108
-
Noda NN, Ohsumi Y, Inagaki F. Atg8-family interacting motif crucial for selective autophagy. FEBS Lett 2010; 584:1379-85; PMID:20083108; http://dx.doi. org/10.1016/j.febslet.2010.01.018
-
(2010)
FEBS Lett
, vol.584
, pp. 1379-1385
-
-
Noda, N.N.1
Ohsumi, Y.2
Inagaki, F.3
-
18
-
-
4944247868
-
Alfy, a novel FYVE-domain-containing protein associated with protein granules and autophagic membranes
-
PMID:15292400
-
Simonsen A, Birkeland HC, Gillooly DJ, Mizushima N, Kuma A, Yoshimori T, et al. Alfy, a novel FYVE-domain-containing protein associated with protein granules and autophagic membranes. J Cell Sci 2004; 117:4239-51; PMID:15292400; http://dx.doi. org/10.1242/jcs.01287
-
(2004)
J Cell Sci
, vol.117
, pp. 4239-4251
-
-
Simonsen, A.1
Birkeland, H.C.2
Gillooly, D.J.3
Mizushima, N.4
Kuma, A.5
Yoshimori, T.6
-
19
-
-
77950903972
-
The selective macroautophagic degradation of aggregated proteins requires the PI3P-binding protein Alfy
-
PMID:20417604
-
Filimonenko M, Isakson P, Finley KD, Anderson M, Jeong H, Melia TJ, et al. The selective macroautophagic degradation of aggregated proteins requires the PI3P-binding protein Alfy. Mol Cell 2010; 38:265-79; PMID:20417604; http://dx.doi.org/10.1016/j.molcel. 2010.04.007
-
(2010)
Mol Cell
, vol.38
, pp. 265-279
-
-
Filimonenko, M.1
Isakson, P.2
Finley, K.D.3
Anderson, M.4
Jeong, H.5
Melia, T.J.6
-
20
-
-
77952914565
-
p62/SQSTM1 and ALFY interact to facilitate the formation of p62 bodies/ALIS and their degradation by autophagy
-
PMID:20168092
-
Clausen TH, Lamark T, Isakson P, Finley K, Larsen KB, Brech A, et al. p62/SQSTM1 and ALFY interact to facilitate the formation of p62 bodies/ALIS and their degradation by autophagy. Autophagy 2010; 6:330-44; PMID:20168092; http://dx.doi.org/10.4161/auto.6.3.11226
-
(2010)
Autophagy
, vol.6
, pp. 330-344
-
-
Clausen, T.H.1
Lamark, T.2
Isakson, P.3
Finley, K.4
Larsen, K.B.5
Brech, A.6
-
21
-
-
77953699711
-
Termination of autophagy and reformation of lysosomes regulated by mTOR
-
Yu L, McPhee CK, Zheng L, Mardones GA, Rong Y, Peng J, et al. Termination of autophagy and reformation of lysosomes regulated by mTOR. Nature 2010; 465:942-6
-
(2010)
Nature
, vol.465
, pp. 942-946
-
-
Yu, L.1
McPhee, C.K.2
Zheng, L.3
Mardones, G.A.4
Rong, Y.5
Peng, J.6
-
22
-
-
34347344990
-
Ambra1 regulates autophagy and development of the nervous system
-
PMID:17589504
-
Fimia GM, Stoykova A, Romagnoli A, Giunta L, Di Bartolomeo S, Nardacci R, et al. Ambra1 regulates autophagy and development of the nervous system. Nature 2007; 447:1121-5; PMID:17589504
-
(2007)
Nature
, vol.447
, pp. 1121-1125
-
-
Fimia, G.M.1
Stoykova, A.2
Romagnoli, A.3
Giunta, L.4
Di Bartolomeo, S.5
Nardacci, R.6
-
23
-
-
0030338132
-
Structural aspects of autophagy
-
PMID:8860999
-
Seglen PO, Berg TO, Blankson H, Fengsrud M, Holen I, Stromhaug PE. Structural aspects of autophagy. Adv Exp Med Biol 1996; 389:103-11; PMID:8860999
-
(1996)
Adv Exp Med Biol
, vol.389
, pp. 103-111
-
-
Seglen, P.O.1
Berg, T.O.2
Blankson, H.3
Fengsrud, M.4
Holen, I.5
Stromhaug, P.E.6
-
24
-
-
79251587803
-
Phosphorylation of ULK1 (hATG1) by AMP-activated protein kinase connects energy sensing to mitophagy
-
PMID:21205641
-
Egan DF, Shackelford DB, Mihaylova MM, Gelino S, Kohnz RA, Mair W, et al. Phosphorylation of ULK1 (hATG1) by AMP-activated protein kinase connects energy sensing to mitophagy. Science 2011; 331:456-61; PMID:21205641; http://dx.doi.org/10.1126/science. 1196371
-
(2011)
Science
, vol.331
, pp. 456-461
-
-
Egan, D.F.1
Shackelford, D.B.2
Mihaylova, M.M.3
Gelino, S.4
Kohnz, R.A.5
Mair, W.6
-
25
-
-
79551598347
-
AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1
-
PMID:21258367
-
Kim J, Kundu M, Viollet B, Guan K-L. AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1. Nat Cell Biol 2011; 13:132-41; PMID:21258367; http://dx.doi.org/10.1038/ncb2152
-
(2011)
Nat Cell Biol
, vol.13
, pp. 132-141
-
-
Kim, J.1
Kundu, M.2
Viollet, B.3
Guan, K.-L.4
-
26
-
-
34248593475
-
AMP-activated protein kinase and autophagy
-
PMID:17224623
-
Meijer AJ, Codogno P. AMP-activated protein kinase and autophagy. Autophagy 2007; 3:238-40; PMID:17224623
-
(2007)
Autophagy
, vol.3
, pp. 238-240
-
-
Meijer, A.J.1
Codogno, P.2
-
27
-
-
79959963047
-
Ulk1-mediated phosphorylation of AMPK constitutes a negative regulatory feedback loop
-
PMID:21460634
-
Löffler AS, Alers S, Dieterle AM, Keppeler H, Franz-Wachtel M, Kundu M, et al. Ulk1-mediated phosphorylation of AMPK constitutes a negative regulatory feedback loop. Autophagy 2011; 7:696-706; PMID:21460634; http://dx.doi.org/10.4161/auto.7.7.15451
-
(2011)
Autophagy
, vol.7
, pp. 696-706
-
-
Löffler, A.S.1
Alers, S.2
Dieterle, A.M.3
Keppeler, H.4
Franz-Wachtel, M.5
Kundu, M.6
-
28
-
-
67649607465
-
Autophagy, immunity and microbial adaptations
-
PMID:19527881
-
Deretic V, Levine B. Autophagy, immunity and microbial adaptations. Cell Host Microbe 2009; 5:527-49; PMID:19527881; http://dx.doi.org/10.1016/j. chom.2009.05.016
-
(2009)
Cell Host Microbe
, vol.5
, pp. 527-549
-
-
Deretic, V.1
Levine, B.2
-
29
-
-
77951643083
-
ARD1 stabilization of TSC2 suppresses tumorigenesis through the mTOR signaling pathway
-
PMID:20145209
-
Kuo HP, Lee DF, Chen CT, Liu M, Chou CK, Lee HJ, et al. ARD1 stabilization of TSC2 suppresses tumorigenesis through the mTOR signaling pathway. Sci Signal 2010; 3:9; PMID:20145209; http://dx.doi. org/10.1126/scisignal.2000590
-
(2010)
Sci Signal
, vol.3
, pp. 9
-
-
Kuo, H.P.1
Lee, D.F.2
Chen, C.T.3
Liu, M.4
Chou, C.K.5
Lee, H.J.6
-
30
-
-
10744225487
-
A unified nomenclature for yeast autophagy-related genes
-
PMID:14536056
-
Klionsky DJ, Cregg J, Dunn WJ, Emr S, Sakai Y, Sandoval I, et al. A unified nomenclature for yeast autophagy-related genes. Dev Cell 2003; 5:539-45; PMID:14536056; http://dx.doi.org/10.1016/S1534-5807(03)00296-X
-
(2003)
Dev Cell
, vol.5
, pp. 539-545
-
-
Klionsky, D.J.1
Cregg, J.2
Dunn, W.J.3
Emr, S.4
Sakai, Y.5
Sandoval, I.6
-
31
-
-
0030983504
-
Apg1p, a novel protein kinase required for the autophagic process in Saccharomyces cerevisiae
-
PMID:9224897
-
Matsuura A, Tsukada M, Wada Y, Ohsumi Y. Apg1p, a novel protein kinase required for the autophagic process in Saccharomyces cerevisiae. Gene 1997; 192:245-50; PMID:9224897; http://dx.doi.org/10.1016/S0378-1119(97)00084-X
-
(1997)
Gene
, vol.192
, pp. 245-250
-
-
Matsuura, A.1
Tsukada, M.2
Wada, Y.3
Ohsumi, Y.4
-
32
-
-
0035839430
-
Apg2 is a novel protein required for the cytoplasm to vacuole targeting, autophagy and pexophagy pathways
-
PMID:11382760
-
Wang C-W, Kim J, Huang W-P, Abeliovich H, Stromhaug PE, Dunn WA Jr, et al. Apg2 is a novel protein required for the cytoplasm to vacuole targeting, autophagy and pexophagy pathways. J Biol Chem 2001; 276:30442-51; PMID:11382760; http://dx.doi. org/10.1074/jbc.M102342200
-
(2001)
J Biol Chem
, vol.276
, pp. 30442-30451
-
-
Wang, C.-W.1
Kim, J.2
Huang, W.-P.3
Abeliovich, H.4
Stromhaug, P.E.5
Dunn Jr., W.A.6
-
33
-
-
0035839551
-
Apg2p functions in autophagosome formation on the perivacuolar structure
-
PMID:11382761
-
Shintani T, Suzuki K, Kamada Y, Noda T, Ohsumi Y. Apg2p functions in autophagosome formation on the perivacuolar structure. J Biol Chem 2001; 276:30452-60; PMID:11382761; http://dx.doi.org/10.1074/jbc. M102346200
-
(2001)
J Biol Chem
, vol.276
, pp. 30452-30460
-
-
Shintani, T.1
Suzuki, K.2
Kamada, Y.3
Noda, T.4
Ohsumi, Y.5
-
34
-
-
0034707036
-
A ubiquitin-like system mediates protein lipidation
-
PMID:11100732
-
Ichimura Y, Kirisako T, Takao T, Satomi Y, Shimonishi Y, Ishihara N, et al. A ubiquitin-like system mediates protein lipidation. Nature 2000; 408:488-92; PMID:11100732; http://dx.doi. org/10.1038/35044114
-
(2000)
Nature
, vol.408
, pp. 488-492
-
-
Ichimura, Y.1
Kirisako, T.2
Takao, T.3
Satomi, Y.4
Shimonishi, Y.5
Ishihara, N.6
-
35
-
-
0031038649
-
AUT1, a gene essential for autophagocytosis in the yeast Saccharomyces cerevisiae
-
PMID:9023185
-
Schlumpberger M, Schaeffeler E, Straub M, Bredschneider M, Wolf DH, Thumm M. AUT1, a gene essential for autophagocytosis in the yeast Saccharomyces cerevisiae. J Bacteriol 1997; 179:1068-76; PMID:9023185
-
(1997)
J Bacteriol
, vol.179
, pp. 1068-1076
-
-
Schlumpberger, M.1
Schaeffeler, E.2
Straub, M.3
Bredschneider, M.4
Wolf, D.H.5
Thumm, M.6
-
36
-
-
0034676037
-
The reversible modification regulates the membrane-binding state of Apg8/Aut7 essential for autophagy and the cytoplasm to vacuole targeting pathway
-
PMID:11038174
-
Kirisako T, Ichimura Y, Okada H, Kabeya Y, Mizushima N, Yoshimori T, et al. The reversible modification regulates the membrane-binding state of Apg8/Aut7 essential for autophagy and the cytoplasm to vacuole targeting pathway. J Cell Biol 2000; 151:263-76; PMID:11038174; http://dx.doi.org/10.1083/ jcb.151.2.263
-
(2000)
J Cell Biol
, vol.151
, pp. 263-276
-
-
Kirisako, T.1
Ichimura, Y.2
Okada, H.3
Kabeya, Y.4
Mizushima, N.5
Yoshimori, T.6
-
37
-
-
33646690504
-
Atg8L/Apg8L is the fourth mammalian modifier of mammalian Atg8 conjugation mediated by human Atg4B, Atg7 and Atg3
-
PMID:16704426
-
Tanida I, Sou YS, Minematsu-Ikeguchi N, Ueno T, Kominami E. Atg8L/Apg8L is the fourth mammalian modifier of mammalian Atg8 conjugation mediated by human Atg4B, Atg7 and Atg3. FEBS J 2006; 273:2553-62; PMID:16704426; http://dx.doi. org/10.1111/j.1742-4658.2006.05260.x
-
(2006)
FEBS J
, vol.273
, pp. 2553-2562
-
-
Tanida, I.1
Sou, Y.S.2
Minematsu-Ikeguchi, N.3
Ueno, T.4
Kominami, E.5
-
38
-
-
79953190772
-
Kinetics comparisons of mammalian Atg4 homologs indicate selective preferences toward diverse Atg8 substrates
-
PMID:21177865
-
Li M, Hou Y, Wang J, Chen X, Shao ZM, Yin XM. Kinetics comparisons of mammalian Atg4 homologs indicate selective preferences toward diverse Atg8 substrates. J Biol Chem 2011; 286:7327-38; PMID:21177865; http://dx.doi.org/10. 1074/jbc. M110.199059
-
(2011)
J Biol Chem
, vol.286
, pp. 7327-7338
-
-
Li, M.1
Hou, Y.2
Wang, J.3
Chen, X.4
Shao, Z.M.5
Yin, X.M.6
-
39
-
-
0032563798
-
A protein conjugation system essential for autophagy
-
PMID:9759731
-
Mizushima N, Noda T, Yoshimori T, Tanaka Y, Ishii T, George MD, et al. A protein conjugation system essential for autophagy. Nature 1998; 395:395-8; PMID:9759731; http://dx.doi.org/10.1038/26506
-
(1998)
Nature
, vol.395
, pp. 395-398
-
-
Mizushima, N.1
Noda, T.2
Yoshimori, T.3
Tanaka, Y.4
Ishii, T.5
George, M.D.6
-
40
-
-
0032575551
-
Apg14p and Apg6/Vps30p form a protein complex essential for autophagy in the yeast, Saccharomyces cerevisiae
-
PMID:9712845
-
Kametaka S, Okano T, Ohsumi M, Ohsumi Y. Apg14p and Apg6/Vps30p form a protein complex essential for autophagy in the yeast, Saccharomyces cerevisiae. J Biol Chem 1998; 273:22284-91; PMID:9712845; http://dx.doi.org/10.1074/jbc.273. 35.22284
-
(1998)
J Biol Chem
, vol.273
, pp. 22284-22291
-
-
Kametaka, S.1
Okano, T.2
Ohsumi, M.3
Ohsumi, Y.4
-
41
-
-
0032898636
-
Apg7p/Cvt2p: A novel protein-activating enzyme essential for autophagy
-
PMID:10233150
-
Tanida I, Mizushima N, Kiyooka M, Ohsumi M, Ueno T, Ohsumi Y, et al. Apg7p/Cvt2p: A novel protein-activating enzyme essential for autophagy. Mol Biol Cell 1999; 10:1367-79; PMID:10233150
-
(1999)
Mol Biol Cell
, vol.10
, pp. 1367-1379
-
-
Tanida, I.1
Mizushima, N.2
Kiyooka, M.3
Ohsumi, M.4
Ueno, T.5
Ohsumi, Y.6
-
42
-
-
0032896760
-
Apg7p/Cvt2p is required for the cytoplasm-tovacuole targeting, macroautophagy and peroxisome degradation pathways
-
PMID:10233148
-
Kim J, Dalton VM, Eggerton KP, Scott SV, Klionsky DJ. Apg7p/Cvt2p is required for the cytoplasm-tovacuole targeting, macroautophagy and peroxisome degradation pathways. Mol Biol Cell 1999; 10:1337-51; PMID:10233148
-
(1999)
Mol Biol Cell
, vol.10
, pp. 1337-1351
-
-
Kim, J.1
Dalton, V.M.2
Eggerton, K.P.3
Scott, S.V.4
Klionsky, D.J.5
-
43
-
-
0034050457
-
The itinerary of a vesicle component, Aut7p/Cvt5p, terminates in the yeast vacuole via the autophagy/Cvt pathways
-
PMID:10681575
-
Huang W-P, Scott SV, Kim J, Klionsky DJ. The itinerary of a vesicle component, Aut7p/Cvt5p, terminates in the yeast vacuole via the autophagy/Cvt pathways. J Biol Chem 2000; 275:5845-51; PMID:10681575; http://dx.doi.org/10. 1074/jbc.275.8.5845
-
(2000)
J Biol Chem
, vol.275
, pp. 5845-5851
-
-
Huang, W.-P.1
Scott, S.V.2
Kim, J.3
Klionsky, D.J.4
-
44
-
-
0032701984
-
Formation process of autophagosome is traced with Apg8/Aut7p in yeast
-
PMID:10525546
-
Kirisako T, Baba M, Ishihara N, Miyazawa K, Ohsumi M, Yoshimori T, et al. Formation process of autophagosome is traced with Apg8/Aut7p in yeast. J Cell Biol 1999; 147:435-46; PMID:10525546; http://dx.doi.org/10.1083/jcb.147.2.435
-
(1999)
J Cell Biol
, vol.147
, pp. 435-446
-
-
Kirisako, T.1
Baba, M.2
Ishihara, N.3
Miyazawa, K.4
Ohsumi, M.5
Yoshimori, T.6
-
45
-
-
77953122645
-
LC3 and GATE-16/GABARAP subfamilies are both essential yet act differently in autophagosome biogenesis
-
PMID:20418806
-
Weidberg H, Shvets E, Shpilka T, Shimron F, Shinder V, Elazar Z. LC3 and GATE-16/GABARAP subfamilies are both essential yet act differently in autophagosome biogenesis. EMBO J 2010; 29:1792-802; PMID:20418806; http://dx.doi.org/10.1038/emboj.2010.74
-
(2010)
EMBO J
, vol.29
, pp. 1792-1802
-
-
Weidberg, H.1
Shvets, E.2
Shpilka, T.3
Shimron, F.4
Shinder, V.5
Elazar, Z.6
-
46
-
-
0034614934
-
Apg9p/Cvt7p is an integral membrane protein required for transport vesicle formation in the Cvt and autophagy pathways
-
PMID:10662773
-
Noda T, Kim J, Huang W-P, Baba M, Tokunaga C, Ohsumi Y, et al. Apg9p/Cvt7p is an integral membrane protein required for transport vesicle formation in the Cvt and autophagy pathways. J Cell Biol 2000; 148:465-80; PMID:10662773; http://dx.doi. org/10.1083/jcb.148.3.465
-
(2000)
J Cell Biol
, vol.148
, pp. 465-480
-
-
Noda, T.1
Kim, J.2
Huang, W.-P.3
Baba, M.4
Tokunaga, C.5
Ohsumi, Y.6
-
47
-
-
27644544004
-
Atg9 cycles between mitochondria and the pre-autophagosomal structure in yeasts
-
Reggiori F, Shintani T, Nair U, Klionsky DJ. Atg9 cycles between mitochondria and the pre-autophagosomal structure in yeasts. Autophagy 2005; 1:101-9
-
(2005)
Autophagy
, vol.1
, pp. 101-109
-
-
Reggiori, F.1
Shintani, T.2
Nair, U.3
Klionsky, D.J.4
-
48
-
-
24044513985
-
Endothelial nitric-oxide synthase antisense (NOS3AS) gene encodes an autophagy-related protein (APG9-like2) highly expressed in trophoblast
-
PMID:15755735
-
Yamada T, Carson AR, Caniggia I, Umebayashi K, Yoshimori T, Nakabayashi K, et al. Endothelial nitric-oxide synthase antisense (NOS3AS) gene encodes an autophagy-related protein (APG9-like2) highly expressed in trophoblast. J Biol Chem 2005; 280:18283-90; PMID:15755735; http://dx.doi. org/10.1074/jbc. M413957200
-
(2005)
J Biol Chem
, vol.280
, pp. 18283-18290
-
-
Yamada, T.1
Carson, A.R.2
Caniggia, I.3
Umebayashi, K.4
Yoshimori, T.5
Nakabayashi, K.6
-
49
-
-
0033214582
-
Apg10p, a novel protein-conjugating enzyme essential for autophagy in yeast
-
PMID:10508157
-
Shintani T, Mizushima N, Ogawa Y, Matsuura A, Noda T, Ohsumi Y. Apg10p, a novel protein-conjugating enzyme essential for autophagy in yeast. EMBO J 1999; 18:5234-41; PMID:10508157; http://dx.doi. org/10.1093/emboj/18.19.5234
-
(1999)
EMBO J
, vol.18
, pp. 5234-5241
-
-
Shintani, T.1
Mizushima, N.2
Ogawa, Y.3
Matsuura, A.4
Noda, T.5
Ohsumi, Y.6
-
50
-
-
0035897414
-
Cvt9/Gsa9 functions in sequestering selective cytosolic cargo destined for the vacuole
-
PMID:11309418
-
Kim J, Kamada Y, Stromhaug PE, Guan J, Hefner-Gravink A, Baba M, et al. Cvt9/Gsa9 functions in sequestering selective cytosolic cargo destined for the vacuole. J Cell Biol 2001; 153:381-96; PMID:11309418; http://dx.doi.org/10.1083/ jcb.153.2.381
-
(2001)
J Cell Biol
, vol.153
, pp. 381-396
-
-
Kim, J.1
Kamada, Y.2
Stromhaug, P.E.3
Guan, J.4
Hefner-Gravink, A.5
Baba, M.6
-
51
-
-
0034682772
-
Apg13p and Vac8p are part of a complex of phosphoproteins that are required for cytoplasm to vacuole targeting
-
PMID:10837477
-
Scott SV, Nice DC III, Nau JJ, Weisman LS, Kamada Y, Keizer-Gunnink I, et al. Apg13p and Vac8p are part of a complex of phosphoproteins that are required for cytoplasm to vacuole targeting. J Biol Chem 2000; 275:25840-9; PMID:10837477; http://dx.doi. org/10.1074/jbc.M002813200
-
(2000)
J Biol Chem
, vol.275
, pp. 25840-25849
-
-
Scott, S.V.1
Nice III, D.C.2
Nau, J.J.3
Weisman, L.S.4
Kamada, Y.5
Keizer-Gunnink, I.6
-
52
-
-
0030919092
-
Analyses of APG13 gene involved in autophagy in yeast, Saccharomyces cerevisiae
-
PMID:9224892
-
Funakoshi T, Matsuura A, Noda T, Ohsumi Y. Analyses of APG13 gene involved in autophagy in yeast, Saccharomyces cerevisiae. Gene 1997; 192:207-13; PMID:9224892; http://dx.doi.org/10.1016/S0378-1119(97)00031-0
-
(1997)
Gene
, vol.192
, pp. 207-213
-
-
Funakoshi, T.1
Matsuura, A.2
Noda, T.3
Ohsumi, Y.4
-
53
-
-
0035910577
-
Degradation of lipid vesicles in the yeast vacuole requires function of Cvt17, a putative lipase
-
PMID:11085977
-
Teter SA, Eggerton KP, Scott SV, Kim J, Fischer AM, Klionsky DJ. Degradation of lipid vesicles in the yeast vacuole requires function of Cvt17, a putative lipase. J Biol Chem 2001; 276:2083-7; PMID:11085977
-
(2001)
J Biol Chem
, vol.276
, pp. 2083-2087
-
-
Teter, S.A.1
Eggerton, K.P.2
Scott, S.V.3
Kim, J.4
Fischer, A.M.5
Klionsky, D.J.6
-
54
-
-
0034809331
-
Aut5/Cvt17p, a putative lipase essential for disintegration of autophagic bodies inside the vacuole
-
PMID:11566994
-
Epple UD, Suriapranata I, Eskelinen E-L, Thumm M. Aut5/Cvt17p, a putative lipase essential for disintegration of autophagic bodies inside the vacuole. J Bacteriol 2001; 183:5942-55; PMID:11566994; http://dx.doi. org/10.1128/JB.183. 20.5942-55.2001
-
(2001)
J Bacteriol
, vol.183
, pp. 5942-5955
-
-
Epple, U.D.1
Suriapranata, I.2
Eskelinen, E.-L.3
Thumm, M.4
-
55
-
-
0033565655
-
Apg16p is required for the function of the Apg12p-Apg5p conjugate in the yeast autophagy pathway
-
PMID:10406794
-
Mizushima N, Noda T, Ohsumi Y. Apg16p is required for the function of the Apg12p-Apg5p conjugate in the yeast autophagy pathway. EMBO J 1999; 18:3888-96; PMID:10406794; http://dx.doi.org/10.1093/emboj/18.14.3888
-
(1999)
EMBO J
, vol.18
, pp. 3888-3896
-
-
Mizushima, N.1
Noda, T.2
Ohsumi, Y.3
-
56
-
-
35848970794
-
Genome-wide association scanning highlights two autophagy genes, ATG16L1 and IRGM, as being significantly associated with Crohn's disease
-
PMID:17921695
-
Massey DC, Parkes M. Genome-wide association scanning highlights two autophagy genes, ATG16L1 and IRGM, as being significantly associated with Crohn's disease. Autophagy 2007; 3:649-51; PMID:17921695
-
(2007)
Autophagy
, vol.3
, pp. 649-651
-
-
Massey, D.C.1
Parkes, M.2
-
57
-
-
18244394277
-
Atg17 functions in cooperation with Atg1 and Atg13 in yeast autophagy
-
PMID:15743910
-
Kabeya Y, Kamada Y, Baba M, Takikawa H, Sasaki M, Ohsumi Y. Atg17 functions in cooperation with Atg1 and Atg13 in yeast autophagy. Mol Biol Cell 2005; 16:2544-53; PMID:15743910; http://dx.doi. org/10.1091/mbc.E04-08-0669
-
(2005)
Mol Biol Cell
, vol.16
, pp. 2544-2553
-
-
Kabeya, Y.1
Kamada, Y.2
Baba, M.3
Takikawa, H.4
Sasaki, M.5
Ohsumi, Y.6
-
58
-
-
21844470747
-
Atg17 regulates the magnitude of the autophagic response
-
PMID:15901835
-
Cheong H, Yorimitsu T, Reggiori F, Legakis JE, Wang C-W, Klionsky DJ. Atg17 regulates the magnitude of the autophagic response. Mol Biol Cell 2005; 16:3438-53; PMID:15901835; http://dx.doi.org/10.1091/mbc. E04-10-0894
-
(2005)
Mol Biol Cell
, vol.16
, pp. 3438-3453
-
-
Cheong, H.1
Yorimitsu, T.2
Reggiori, F.3
Legakis, J.E.4
Wang, C.-W.5
Klionsky, D.J.6
-
59
-
-
0035661648
-
Cvt18/Gsa12 is required for cytoplasm-to-vacuole transport, pexophagy and autophagy in Saccharomyces cerevisiae and Pichia pastoris
-
PMID:11739783
-
Guan J, Stromhaug PE, George MD, Habibzadegah-Tari P, Bevan A, Dunn WA Jr, et al. Cvt18/Gsa12 is required for cytoplasm-to-vacuole transport, pexophagy and autophagy in Saccharomyces cerevisiae and Pichia pastoris. Mol Biol Cell 2001; 12:3821-38; PMID:11739783
-
(2001)
Mol Biol Cell
, vol.12
, pp. 3821-3838
-
-
Guan, J.1
Stromhaug, P.E.2
George, M.D.3
Habibzadegah-Tari, P.4
Bevan, A.5
Dunn Jr., W.A.6
-
60
-
-
0034964443
-
Cvt19 is a receptor for the cytoplasm-to-vacuole targeting pathway
-
PMID:11430817
-
Scott SV, Guan J, Hutchins MU, Kim J, Klionsky DJ. Cvt19 is a receptor for the cytoplasm-to-vacuole targeting pathway. Mol Cell 2001; 7:1131-41; PMID:11430817; http://dx.doi.org/10.1016/S1097-2765(01)00263-5
-
(2001)
Mol Cell
, vol.7
, pp. 1131-1141
-
-
Scott, S.V.1
Guan, J.2
Hutchins, M.U.3
Kim, J.4
Klionsky, D.J.5
-
61
-
-
0035800870
-
Yol082p, a novel CVT protein involved in the selective targeting of aminopeptidase I to the yeast vacuole
-
PMID:11382752
-
Leber R, Silles E, Sandoval IV, Mazon MJ. Yol082p, a novel CVT protein involved in the selective targeting of aminopeptidase I to the yeast vacuole. J Biol Chem 2001; 276:29210-7; PMID:11382752; http://dx.doi. org/10.1074/jbc. M101438200
-
(2001)
J Biol Chem
, vol.276
, pp. 29210-29217
-
-
Leber, R.1
Silles, E.2
Sandoval, I.V.3
Mazon, M.J.4
-
62
-
-
0037119448
-
Cooperative binding of the cytoplasm to vacuole targeting pathway proteins, Cvt13 and Cvt20, to phosphatidylinositol-3-phosphate at the pre-autophagosomal structure is required for selective autophagy
-
PMID:12048214
-
Nice DC, Sato TK, Stromhaug PE, Emr SD, Klionsky DJ. Cooperative binding of the cytoplasm to vacuole targeting pathway proteins, Cvt13 and Cvt20, to phosphatidylinositol-3-phosphate at the pre-autophagosomal structure is required for selective autophagy. J Biol Chem 2002; 277:30198-207; PMID:12048214; http://dx.doi.org/10.1074/jbc.M204736200
-
(2002)
J Biol Chem
, vol.277
, pp. 30198-30207
-
-
Nice, D.C.1
Sato, T.K.2
Stromhaug, P.E.3
Emr, S.D.4
Klionsky, D.J.5
-
63
-
-
3342951135
-
Atg21 is a phosphoinositide binding protein required for efficient lipidation and localization of Atg8 during uptake of aminopeptidase I by selective autophagy
-
PMID:15155809
-
Stromhaug PE, Reggiori F, Guan J, Wang C-W, Klionsky DJ. Atg21 is a phosphoinositide binding protein required for efficient lipidation and localization of Atg8 during uptake of aminopeptidase I by selective autophagy. Mol Biol Cell 2004; 15:3553-66; PMID:15155809; http://dx.doi.org/10.1091/mbc. E04-02-0147
-
(2004)
Mol Biol Cell
, vol.15
, pp. 3553-3566
-
-
Stromhaug, P.E.1
Reggiori, F.2
Guan, J.3
Wang, C.-W.4
Klionsky, D.J.5
-
64
-
-
33845407202
-
Atg22 recycles amino acids to link the degradative and recycling functions of autophagy
-
PMID:17021250
-
Yang Z, Huang J, Geng J, Nair U, Klionsky DJ. Atg22 recycles amino acids to link the degradative and recycling functions of autophagy. Mol Biol Cell 2006; 17:5094-104; PMID:17021250; http://dx.doi. org/10.1091/mbc.E06-06-0479
-
(2006)
Mol Biol Cell
, vol.17
, pp. 5094-5104
-
-
Yang, Z.1
Huang, J.2
Geng, J.3
Nair, U.4
Klionsky, D.J.5
-
65
-
-
0034472435
-
The breakdown of autophagic vesicles inside the vacuole depends on Aut4p
-
PMID:11058089
-
Suriapranata I, Epple UD, Bernreuther D, Bredschneider M, Sovarasteanu K, Thumm M. The breakdown of autophagic vesicles inside the vacuole depends on Aut4p. J Cell Sci 2000; 113:4025-33; PMID:11058089
-
(2000)
J Cell Sci
, vol.113
, pp. 4025-4033
-
-
Suriapranata, I.1
Epple, U.D.2
Bernreuther, D.3
Bredschneider, M.4
Sovarasteanu, K.5
Thumm, M.6
-
66
-
-
34548082024
-
A cycling protein complex required for selective autophagy
-
PMID:17426440
-
Legakis JE, Yen W-L, Klionsky DJ. A cycling protein complex required for selective autophagy. Autophagy 2007; 3:422-32; PMID:17426440
-
(2007)
Autophagy
, vol.3
, pp. 422-432
-
-
Legakis, J.E.1
Yen, W.-L.2
Klionsky, D.J.3
-
67
-
-
0346503885
-
The Atg1-Atg13 complex regulates Atg9 and Atg23 retrieval transport from the pre-autophagosomal structure
-
PMID:14723849
-
Reggiori F, Tucker KA, Stromhaug PE, Klionsky DJ. The Atg1-Atg13 complex regulates Atg9 and Atg23 retrieval transport from the pre-autophagosomal structure. Dev Cell 2004; 6:79-90; PMID:14723849; http://dx.doi.org/10.1016/ S1534-5807(03)00402-7
-
(2004)
Dev Cell
, vol.6
, pp. 79-90
-
-
Reggiori, F.1
Tucker, K.A.2
Stromhaug, P.E.3
Klionsky, D.J.4
-
68
-
-
0347611578
-
Atg23 is essential for the cytoplasm to vacuole targeting pathway and efficient autophagy but not pexophagy
-
PMID:14504273
-
Tucker KA, Reggiori F, Dunn WA Jr, Klionsky DJ. Atg23 is essential for the cytoplasm to vacuole targeting pathway and efficient autophagy but not pexophagy. J Biol Chem 2003; 278:48445-52; PMID:14504273; http://dx.doi.org/10. 1074/jbc.M309238200
-
(2003)
J Biol Chem
, vol.278
, pp. 48445-48452
-
-
Tucker, K.A.1
Reggiori, F.2
Dunn Jr., W.A.3
Klionsky, D.J.4
-
69
-
-
33745964401
-
The Hansenula polymorpha ATG25 gene encodes a novel coiled-coil protein that is required for macropexophagy
-
PMID:16874036
-
Monastyrska I, Kiel JAKW, Krikken AM, Komduur JA, Veenhuis M, van der Klei IJ. The Hansenula polymorpha ATG25 gene encodes a novel coiled-coil protein that is required for macropexophagy. Autophagy 2005; 1:92-100; PMID:16874036; http://dx.doi. org/10.4161/auto.1.2.1832
-
(2005)
Autophagy
, vol.1
, pp. 92-100
-
-
Monastyrska, I.1
Kiel, J.2
Krikken, A.M.3
Komduur, J.A.4
Veenhuis, M.5
Van Der Klei, I.J.6
-
70
-
-
33846140410
-
Atg26 is not involved in autophagy-related pathways in Saccharomyces cerevisiae
-
PMID:17012830
-
Cao Y, Klionsky DJ. Atg26 is not involved in autophagy-related pathways in Saccharomyces cerevisiae. Autophagy 2007; 3:17-20; PMID:17012830
-
(2007)
Autophagy
, vol.3
, pp. 17-20
-
-
Cao, Y.1
Klionsky, D.J.2
-
71
-
-
33747402357
-
PI4P-signaling pathway for the synthesis of a nascent membrane structure in selective autophagy
-
PMID:16754956
-
Yamashita S, Oku M, Wasada Y, Ano Y, Sakai Y. PI4P-signaling pathway for the synthesis of a nascent membrane structure in selective autophagy. J Cell Biol 2006; 173:709-17; PMID:16754956; http://dx.doi. org/10.1083/jcb.200512142
-
(2006)
J Cell Biol
, vol.173
, pp. 709-717
-
-
Yamashita, S.1
Oku, M.2
Wasada, Y.3
Ano, Y.4
Sakai, Y.5
-
72
-
-
33846807374
-
Atg27 is required for autophagy-dependent cycling of Atg9
-
PMID:17135291
-
Yen W-L, Legakis JE, Nair U, Klionsky DJ. Atg27 is required for autophagy-dependent cycling of Atg9. Mol Biol Cell 2007; 18:581-93; PMID:17135291; http://dx.doi.org/10.1091/mbc.E06-07-0612
-
(2007)
Mol Biol Cell
, vol.18
, pp. 581-593
-
-
Yen, W.-L.1
Legakis, J.E.2
Nair, U.3
Klionsky, D.J.4
-
73
-
-
33644587420
-
Atg28, a novel coiled-coil protein involved in autophagic degradation of peroxisomes in the methylotrophic yeast Pichia pastoris
-
PMID:16874081
-
Stasyk OV, Stasyk OG, Mathewson RD, Farre JC, Nazarko VY, Krasovska OS, et al. Atg28, a novel coiled-coil protein involved in autophagic degradation of peroxisomes in the methylotrophic yeast Pichia pastoris. Autophagy 2006; 2:30-8; PMID:16874081
-
(2006)
Autophagy
, vol.2
, pp. 30-38
-
-
Stasyk, O.V.1
Stasyk, O.G.2
Mathewson, R.D.3
Farre, J.C.4
Nazarko, V.Y.5
Krasovska, O.S.6
-
74
-
-
27844461994
-
Characterization of a novel autophagy-specific gene, ATG29
-
PMID:16289106
-
Kawamata T, Kamada Y, Suzuki K, Kuboshima N, Akimatsu H, Ota S, et al. Characterization of a novel autophagy-specific gene, ATG29. Biochem Biophys Res Commun 2005; 338:1884-9; PMID:16289106; http://dx.doi.org/10.1016/j.bbrc.2005. 10.163
-
(2005)
Biochem Biophys Res Commun
, vol.338
, pp. 1884-1889
-
-
Kawamata, T.1
Kamada, Y.2
Suzuki, K.3
Kuboshima, N.4
Akimatsu, H.5
Ota, S.6
-
75
-
-
42049094041
-
PpAtg30 tags peroxisomes for turnover by selective autophagy
-
PMID:18331717
-
Farré JC, Manjithaya R, Mathewson RD, Subramani S. PpAtg30 tags peroxisomes for turnover by selective autophagy. Dev Cell 2008; 14:365-76; PMID:18331717; http://dx.doi.org/10.1016/j.devcel.2007.12.011
-
(2008)
Dev Cell
, vol.14
, pp. 365-376
-
-
Farré, J.C.1
Manjithaya, R.2
Mathewson, R.D.3
Subramani, S.4
-
76
-
-
33947378818
-
Cis1/Atg31 is required for autophagosome formation in Saccharomyces cerevisiae
-
PMID:17362880
-
Kabeya Y, Kawamata T, Suzuki K, Ohsumi Y. Cis1/Atg31 is required for autophagosome formation in Saccharomyces cerevisiae. Biochem Biophys Res Commun 2007; 356:405-10; PMID:17362880; http://dx.doi.org/10.1016/j.bbrc.2007.02.150
-
(2007)
Biochem Biophys Res Commun
, vol.356
, pp. 405-410
-
-
Kabeya, Y.1
Kawamata, T.2
Suzuki, K.3
Ohsumi, Y.4
-
77
-
-
67650264633
-
Atg32 is a mitochondrial protein that confers selectivity during mitophagy
-
PMID:19619495
-
Kanki T, Wang K, Cao Y, Baba M, Klionsky DJ. Atg32 is a mitochondrial protein that confers selectivity during mitophagy. Dev Cell 2009; 17:98-109; PMID:19619495; http://dx.doi.org/10.1016/j.devcel. 2009.06.014
-
(2009)
Dev Cell
, vol.17
, pp. 98-109
-
-
Kanki, T.1
Wang, K.2
Cao, Y.3
Baba, M.4
Klionsky, D.J.5
-
78
-
-
67650246357
-
Mitochondria-anchored receptor Atg32 mediates degradation of mitochondria via selective autophagy
-
PMID:19619494
-
Okamoto K, Kondo-Okamoto N, Ohsumi Y. Mitochondria-anchored receptor Atg32 mediates degradation of mitochondria via selective autophagy. Dev Cell 2009; 17:87-97; PMID:19619494; http://dx.doi. org/10.1016/j.devcel.2009.06.013
-
(2009)
Dev Cell
, vol.17
, pp. 87-97
-
-
Okamoto, K.1
Kondo-Okamoto, N.2
Ohsumi, Y.3
-
79
-
-
73949122199
-
A genomic screen for yeast mutants defective in selective mitochondria autophagy
-
PMID:19793921
-
Kanki T, Wang K, Baba M, Bartholomew CR, Lynch-Day MA, Du Z, et al. A genomic screen for yeast mutants defective in selective mitochondria autophagy. Mol Biol Cell 2009; 20:4730-8; PMID:19793921; http://dx.doi.org/10.1091/mbc.E09- 03-0225
-
(2009)
Mol Biol Cell
, vol.20
, pp. 4730-4738
-
-
Kanki, T.1
Wang, K.2
Baba, M.3
Bartholomew, C.R.4
Lynch-Day, M.A.5
Du, Z.6
-
80
-
-
77956913181
-
Selective transport of α-mannosidase by autophagic pathways: Structural basis for cargo recognition by Atg19 and Atg34
-
PMID:20659891
-
Watanabe Y, Noda NN, Kumeta H, Suzuki K, Ohsumi Y, Inagaki F. Selective transport of α-mannosidase by autophagic pathways: structural basis for cargo recognition by Atg19 and Atg34. J Biol Chem 2010; 285:30026-33; PMID:20659891; http://dx.doi. org/10.1074/jbc.M110.143545
-
(2010)
J Biol Chem
, vol.285
, pp. 30026-30033
-
-
Watanabe, Y.1
Noda, N.N.2
Kumeta, H.3
Suzuki, K.4
Ohsumi, Y.5
Inagaki, F.6
-
81
-
-
33947383050
-
ATG genes involved in non-selective autophagy are conserved from yeast to man, but the selective Cvt and pexophagy pathways also require organism-specific genes
-
PMID:17204848
-
Meijer WH, van der Klei IJ, Veenhuis M, Kiel JAKW. ATG genes involved in non-selective autophagy are conserved from yeast to man, but the selective Cvt and pexophagy pathways also require organism-specific genes. Autophagy 2007; 3:106-16; PMID:17204848
-
(2007)
Autophagy
, vol.3
, pp. 106-116
-
-
Meijer, W.H.1
Van Der Klei, I.J.2
Veenhuis, M.3
Kiel, J.4
-
82
-
-
79251558467
-
Atg35, a micropexophagy-specific protein that regulates micropexophagic apparatus formation in Pichia pastoris
-
PMID:21169734
-
Nazarko VY, Nazarko TY, Farre JC, Stasyk OV, Warnecke D, Ulaszewski S, et al. Atg35, a micropexophagy-specific protein that regulates micropexophagic apparatus formation in Pichia pastoris. Autophagy 2011; 7:375-85; PMID:21169734; http://dx.doi.org/10.4161/auto.7.4.14369
-
(2011)
Autophagy
, vol.7
, pp. 375-385
-
-
Nazarko, V.Y.1
Nazarko, T.Y.2
Farre, J.C.3
Stasyk, O.V.4
Warnecke, D.5
Ulaszewski, S.6
-
83
-
-
70349644856
-
Atg101, a novel mammalian autophagy protein interacting with Atg13
-
PMID:19597335
-
Hosokawa N, Sasaki T, Iemura S, Natsume T, Hara T, Mizushima N. Atg101, a novel mammalian autophagy protein interacting with Atg13. Autophagy 2009; 5:973-9; PMID:19597335; http://dx.doi.org/10.4161/auto.5.7.9296
-
(2009)
Autophagy
, vol.5
, pp. 973-979
-
-
Hosokawa, N.1
Sasaki, T.2
Iemura, S.3
Natsume, T.4
Hara, T.5
Mizushima, N.6
-
84
-
-
67549110195
-
A novel, human Atg13 binding protein, Atg101, interacts with ULK1 and is essential for macroautophagy
-
PMID:19287211
-
Mercer CA, Kaliappan A, Dennis PB. A novel, human Atg13 binding protein, Atg101, interacts with ULK1 and is essential for macroautophagy. Autophagy 2009; 5:649-62; PMID:19287211; http://dx.doi. org/10.4161/auto.5.5.8249
-
(2009)
Autophagy
, vol.5
, pp. 649-662
-
-
Mercer, C.A.1
Kaliappan, A.2
Dennis, P.B.3
-
85
-
-
77749233738
-
ATM signals to TSC2 in the cytoplasm to regulate mTORC1 in response to ROS
-
PMID:20160076
-
Alexander A, Cai SL, Kim J, Nanez A, Sahin M, Maclean KH, et al. ATM signals to TSC2 in the cytoplasm to regulate mTORC1 in response to ROS. Proc Natl Acad Sci USA 2010; 107:4153-8; PMID:20160076; http://dx.doi.org/10.1073/ pnas.0913860107
-
(2010)
Proc Natl Acad Sci USA
, vol.107
, pp. 4153-4158
-
-
Alexander, A.1
Cai, S.L.2
Kim, J.3
Nanez, A.4
Sahin, M.5
Maclean, K.H.6
-
86
-
-
0025340880
-
Studies on the mechanisms of autophagy: Maturation of the autophagic vacuole
-
PMID:2161853
-
Dunn WA Jr. Studies on the mechanisms of autophagy: maturation of the autophagic vacuole. J Cell Biol 1990; 110:1935-45; PMID:2161853; http://dx.doi. org/10.1083/jcb.110.6.1935
-
(1990)
J Cell Biol
, vol.110
, pp. 1935-1945
-
-
Dunn Jr., W.A.1
-
87
-
-
0029414780
-
Analysis of the membrane structures involved in autophagy in yeast by freeze-replica method
-
PMID:8825067
-
Baba M, Osumi M, Ohsumi Y. Analysis of the membrane structures involved in autophagy in yeast by freeze-replica method. Cell Struct Funct 1995; 20:465-71; PMID:8825067; http://dx.doi.org/10.1247/csf.20.465
-
(1995)
Cell Struct Funct
, vol.20
, pp. 465-471
-
-
Baba, M.1
Osumi, M.2
Ohsumi, Y.3
-
88
-
-
33745866310
-
Autophagic stress in neuronal injury and disease
-
PMID:16772866
-
Chu CT. Autophagic stress in neuronal injury and disease. J Neuropathol Exp Neurol 2006; 65:423-32; PMID:16772866; http://dx.doi.org/10.1097/01. jnen.0000229233.75253.be
-
(2006)
J Neuropathol Exp Neurol
, vol.65
, pp. 423-432
-
-
Chu, C.T.1
-
89
-
-
0031593675
-
Bafilomycin A1 prevents maturation of autophagic vacuoles by inhibiting fusion between autophagosomes and lysosomes in rat hepatoma cell line, H-4-II-E cells
-
PMID:9639028
-
Yamamoto A, Tagawa Y, Yoshimori T, Moriyama Y, Masaki R, Tashiro Y. Bafilomycin A1 prevents maturation of autophagic vacuoles by inhibiting fusion between autophagosomes and lysosomes in rat hepatoma cell line, H-4-II-E cells. Cell Struct Funct 1998; 23:33-42; PMID:9639028; http://dx.doi.org/10.1247/csf. 23.33
-
(1998)
Cell Struct Funct
, vol.23
, pp. 33-42
-
-
Yamamoto, A.1
Tagawa, Y.2
Yoshimori, T.3
Moriyama, Y.4
Masaki, R.5
Tashiro, Y.6
-
90
-
-
53549084325
-
Does bafilomycin A1 block the fusion of autophagosomes with lysosomes?
-
PMID:18758232
-
Klionsky DJ, Elazar Z, Seglen PO, Rubinsztein DC. Does bafilomycin A1 block the fusion of autophagosomes with lysosomes? Autophagy 2008; 4:849-950; PMID:18758232
-
(2008)
Autophagy
, vol.4
, pp. 849-950
-
-
Klionsky, D.J.1
Elazar, Z.2
Seglen, P.O.3
Rubinsztein, D.C.4
-
91
-
-
79551609332
-
BAG3 mediates chaperone-based aggresome-targeting and selective autophagy of misfolded proteins
-
PMID:21252941
-
Gamerdinger M, Kaya AM, Wolfrum U, Clement AM, Behl C. BAG3 mediates chaperone-based aggresome-targeting and selective autophagy of misfolded proteins. EMBO Rep 2011; 12:149-56; PMID:21252941; http://dx.doi.org/10.1038/ embor.2010.203
-
(2011)
EMBO Rep
, vol.12
, pp. 149-156
-
-
Gamerdinger, M.1
Kaya, A.M.2
Wolfrum, U.3
Clement, A.M.4
Behl, C.5
-
92
-
-
58049192897
-
Identification of Barkor as a mammalian autophagy-specific factor for Beclin 1 and class III phosphatidylinositol-3-kinase
-
PMID:19050071
-
Sun Q, Fan W, Chen K, Ding X, Chen S, Zhong Q. Identification of Barkor as a mammalian autophagy-specific factor for Beclin 1 and class III phosphatidylinositol-3-kinase. Proc Natl Acad Sci USA 2008; 105:19211-6; PMID:19050071; http://dx.doi. org/10.1073/pnas.0810452105
-
(2008)
Proc Natl Acad Sci USA
, vol.105
, pp. 19211-19216
-
-
Sun, Q.1
Fan, W.2
Chen, K.3
Ding, X.4
Chen, S.5
Zhong, Q.6
-
93
-
-
79952229430
-
Pancreatic cancers require autophagy for tumor growth
-
PMID:21406549
-
Yang S, Wang X, Contino G, Liesa M, Sahin E, Ying H, et al. Pancreatic cancers require autophagy for tumor growth. Genes Dev 2011; 25:717-29; PMID:21406549; http://dx.doi.org/10.1101/gad.2016111
-
(2011)
Genes Dev
, vol.25
, pp. 717-729
-
-
Yang, S.1
Wang, X.2
Contino, G.3
Liesa, M.4
Sahin, E.5
Ying, H.6
-
94
-
-
79952228407
-
Activated Ras requires autophagy to maintain oxidative metabolism and tumorigenesis
-
PMID:21317241
-
Guo JY, Chen HY, Mathew R, Fan J, Strohecker AM, Karsli-Uzunbas G, et al. Activated Ras requires autophagy to maintain oxidative metabolism and tumorigenesis. Genes Dev 2011; 25:460-70; PMID:21317241; http://dx.doi.org/10. 1101/gad.2016311
-
(2011)
Genes Dev
, vol.25
, pp. 460-470
-
-
Guo, J.Y.1
Chen, H.Y.2
Mathew, R.3
Fan, J.4
Strohecker, A.M.5
Karsli-Uzunbas, G.6
-
95
-
-
79956358522
-
Autophagosome targeting and membrane curvature sensing by Barkor/Atg14(L)
-
PMID:21518905
-
Fan W, Nassiri A, Zhong Q. Autophagosome targeting and membrane curvature sensing by Barkor/Atg14(L). Proc Natl Acad Sci USA 2011; 108:7769-74; PMID:21518905; http://dx.doi.org/10.1073/pnas.1016472108
-
(2011)
Proc Natl Acad Sci USA
, vol.108
, pp. 7769-7774
-
-
Fan, W.1
Nassiri, A.2
Zhong, Q.3
-
96
-
-
77951168347
-
A yeast MAPK cascade regulates pexophagy but not other autophagy pathways
-
PMID:20385774
-
Manjithaya R, Jain S, Farre JC, Subramani S. A yeast MAPK cascade regulates pexophagy but not other autophagy pathways. J Cell Biol 2010; 189:303-10; PMID:20385774; http://dx.doi.org/10.1083/jcb.200909154
-
(2010)
J Cell Biol
, vol.189
, pp. 303-310
-
-
Manjithaya, R.1
Jain, S.2
Farre, J.C.3
Subramani, S.4
-
97
-
-
79958219318
-
Two MAPK-signaling pathways are required for mitophagy in Saccharomyces cerevisiae
-
PMID:21576396
-
Mao K, Zhao M, Xu T, Klionsky DJ. Two MAPK-signaling pathways are required for mitophagy in Saccharomyces cerevisiae. J Cell Biol 2011; 193:755-67; PMID:21576396; http://dx.doi.org/10.1083/jcb.201102092
-
(2011)
J Cell Biol
, vol.193
, pp. 755-767
-
-
Mao, K.1
Zhao, M.2
Xu, T.3
Klionsky, D.J.4
-
98
-
-
0000906170
-
Induction of autophagy and inhibition of tumorigenesis by beclin 1
-
PMID:10604474
-
Liang XH, Jackson S, Seaman M, Brown K, Kempkes B, Hibshoosh H, et al. Induction of autophagy and inhibition of tumorigenesis by beclin 1. Nature 1999; 402:672-6; PMID:10604474; http://dx.doi. org/10.1038/45257
-
(1999)
Nature
, vol.402
, pp. 672-676
-
-
Liang, X.H.1
Jackson, S.2
Seaman, M.3
Brown, K.4
Kempkes, B.5
Hibshoosh, H.6
-
99
-
-
34848899280
-
Bif-1 interacts with Beclin 1 through UVRAG and regulates autophagy and tumorigenesis
-
PMID:17891140
-
Takahashi Y, Coppola D, Matsushita N, Cualing HD, Sun M, Sato Y, et al. Bif-1 interacts with Beclin 1 through UVRAG and regulates autophagy and tumorigenesis. Nat Cell Biol 2007; 9:1142-51; PMID:17891140; http://dx.doi.org/10.1038/ncb1634
-
(2007)
Nat Cell Biol
, vol.9
, pp. 1142-1151
-
-
Takahashi, Y.1
Coppola, D.2
Matsushita, N.3
Cualing, H.D.4
Sun, M.5
Sato, Y.6
-
100
-
-
33845511362
-
Response to myocardial ischemia/reperfusion injury involves Bnip3 and autophagy
-
PMID:16645637
-
Hamacher-Brady A, Brady NR, Logue SE, Sayen MR, Jinno M, Kirshenbaum LA, et al. Response to myocardial ischemia/reperfusion injury involves Bnip3 and autophagy. Cell Death Differ 2007; 14:146-57; PMID:16645637; http://dx.doi.org/10.1038/sj.cdd.4401936
-
(2007)
Cell Death Differ
, vol.14
, pp. 146-157
-
-
Hamacher-Brady, A.1
Brady, N.R.2
Logue, S.E.3
Sayen, M.R.4
Jinno, M.5
Kirshenbaum, L.A.6
-
101
-
-
3042562282
-
Pivotal role of the cell death factor BNIP3 in ceramide-induced autophagic cell death in malignant glioma cells
-
PMID:15205343
-
Daido S, Kanzawa T, Yamamoto A, Takeuchi H, Kondo Y, Kondo S. Pivotal role of the cell death factor BNIP3 in ceramide-induced autophagic cell death in malignant glioma cells. Cancer Res 2004; 64:4286-93; PMID:15205343; http://dx.doi.org/10.1158/0008-5472.CAN-03-3084
-
(2004)
Cancer Res
, vol.64
, pp. 4286-4293
-
-
Daido, S.1
Kanzawa, T.2
Yamamoto, A.3
Takeuchi, H.4
Kondo, Y.5
Kondo, S.6
-
102
-
-
77956592891
-
PI3K/p110δ is a novel therapeutic target in multiple myeloma
-
PMID:20505158
-
Ikeda H, Hideshima T, Fulciniti M, Perrone G, Mimura N, Yasui H, et al. PI3K/p110δ is a novel therapeutic target in multiple myeloma. Blood 2010; 116:1460-8; PMID:20505158; http://dx.doi.org/10.1182/blood- 2009-06-222943
-
(2010)
Blood
, vol.116
, pp. 1460-1468
-
-
Ikeda, H.1
Hideshima, T.2
Fulciniti, M.3
Perrone, G.4
Mimura, N.5
Yasui, H.6
-
103
-
-
75149171923
-
Control of basal autophagy by calpain1 mediated cleavage of ATG5
-
PMID:19901552
-
Xia HG, Zhang L, Chen G, Zhang T, Liu J, Jin M, et al. Control of basal autophagy by calpain1 mediated cleavage of ATG5. Autophagy 2010; 6:61- 6; PMID:19901552; http://dx.doi.org/10.4161/ auto.6.1.10326
-
(2010)
Autophagy
, vol.6
, pp. 61-66
-
-
Xia, H.G.1
Zhang, L.2
Chen, G.3
Zhang, T.4
Liu, J.5
Jin, M.6
-
105
-
-
33846189759
-
Control of macroautophagy by calcium, calmodulin-dependent kinase kinase-b and Bcl-2
-
PMID:17244528
-
Høyer-Hansen M, Bastholm L, Szyniarowski P, Campanella M, Szabadkai G, Farkas T, et al. Control of macroautophagy by calcium, calmodulin-dependent kinase kinase-b and Bcl-2. Mol Cell 2007; 25:193-205; PMID:17244528; http://dx.doi.org/10.1016/j. molcel.2006.12.009
-
(2007)
Mol Cell
, vol.25
, pp. 193-205
-
-
Høyer-Hansen, M.1
Bastholm, L.2
Szyniarowski, P.3
Campanella, M.4
Szabadkai, G.5
Farkas, T.6
-
106
-
-
33751244535
-
Calpain is required for macroautophagy in mammalian cells
-
PMID:17101693
-
Demarchi F, Bertoli C, Copetti T, Tanida I, Brancolini C, Eskelinen E-L, et al. Calpain is required for macroautophagy in mammalian cells. J Cell Biol 2006; 175:595-605; PMID:17101693; http://dx.doi. org/10.1083/jcb.200601024
-
(2006)
J Cell Biol
, vol.175
, pp. 595-605
-
-
Demarchi, F.1
Bertoli, C.2
Copetti, T.3
Tanida, I.4
Brancolini, C.5
Eskelinen, E.-L.6
-
107
-
-
74549133523
-
Chaperone-assisted selective autophagy is essential for muscle maintenance
-
PMID:20060297
-
Arndt V, Dick N, Tawo R, Dreiseidler M, Wenzel D, Hesse M, et al. Chaperone-assisted selective autophagy is essential for muscle maintenance. Curr Biol 2010; 20:143-8; PMID:20060297; http://dx.doi. org/10.1016/j.cub.2009.11. 022
-
(2010)
Curr Biol
, vol.20
, pp. 143-148
-
-
Arndt, V.1
Dick, N.2
Tawo, R.3
Dreiseidler, M.4
Wenzel, D.5
Hesse, M.6
-
108
-
-
78649251041
-
The in vitro cleavage of the hAtg proteins by cell death proteases
-
PMID:21121091
-
Norman JM, Cohen GM, Bampton ET. The in vitro cleavage of the hAtg proteins by cell death proteases. Autophagy 2010; 6:1042-56; PMID:21121091; http://dx.doi.org/10.4161/auto.6.8.13337
-
(2010)
Autophagy
, vol.6
, pp. 1042-1056
-
-
Norman, J.M.1
Cohen, G.M.2
Bampton, E.T.3
-
109
-
-
77957200921
-
Cdc48/p97 and Shp1/p47 regulate autophagosome biogenesis in concert with ubiquitin-like Atg8
-
PMID:20855502
-
Krick R, Bremer S, Welter E, Schlotterhose P, Muehe Y, Eskelinen E-L, et al. Cdc48/p97 and Shp1/p47 regulate autophagosome biogenesis in concert with ubiquitin-like Atg8. J Cell Biol 2010; 190:965-73; PMID:20855502; http://dx.doi.org/10.1083/jcb.201002075
-
(2010)
J Cell Biol
, vol.190
, pp. 965-973
-
-
Krick, R.1
Bremer, S.2
Welter, E.3
Schlotterhose, P.4
Muehe, Y.5
Eskelinen, E.-L.6
-
110
-
-
72649089533
-
Autophagy induction by the pathogen receptor CD46
-
PMID:19837375
-
Joubert PE, Meiffren G, Gregoire IP, Pontini G, Richetta C, Flacher M, et al. Autophagy induction by the pathogen receptor CD46. Cell Host Microbe 2009; 6:354-66; PMID:19837375; http://dx.doi. org/10.1016/j.chom.2009.09.006
-
(2009)
Cell Host Microbe
, vol.6
, pp. 354-366
-
-
Joubert, P.E.1
Meiffren, G.2
Gregoire, I.P.3
Pontini, G.4
Richetta, C.5
Flacher, M.6
-
111
-
-
77949328788
-
Chaperone-mediated autophagy: Selectivity pays off
-
PMID:19857975
-
Cuervo AM. Chaperone-mediated autophagy: selectivity pays off. Trends Endocrinol Metab 2010; 21:142-50; PMID:19857975; http://dx.doi.org/10.1016/j. tem.2009.10.003
-
(2010)
Trends Endocrinol Metab
, vol.21
, pp. 142-150
-
-
Cuervo, A.M.1
-
112
-
-
34250822281
-
Chaperone-mediated autophagy
-
PMID:17404494
-
Dice JF. Chaperone-mediated autophagy. Autophagy 2007; 3:295-9; PMID:17404494
-
(2007)
Autophagy
, vol.3
, pp. 295-299
-
-
Dice, J.F.1
-
113
-
-
0030923854
-
An intralysosomal hsp70 is required for a selective pathway of lysosomal protein degradation
-
PMID:9151685
-
Agarraberes FA, Terlecky S, Dice J. An intralysosomal hsp70 is required for a selective pathway of lysosomal protein degradation. J Cell Biol 1997; 137:825-34; PMID:9151685; http://dx.doi.org/10.1083/jcb.137.4.825
-
(1997)
J Cell Biol
, vol.137
, pp. 825-834
-
-
Agarraberes, F.A.1
Terlecky, S.2
Dice, J.3
-
114
-
-
0029837453
-
A receptor for the selective uptake and degradation of proteins by lysosomes
-
PMID:8662539
-
Cuervo AM, Dice J. A receptor for the selective uptake and degradation of proteins by lysosomes. Science 1996; 273:501-3; PMID:8662539; http://dx.doi. org/10.1126/science.273.5274.501
-
(1996)
Science
, vol.273
, pp. 501-503
-
-
Cuervo, A.M.1
Dice, J.2
-
115
-
-
0014189413
-
Effect of chloroquine on morphology of cytoplasmic granules in maturing human leukocytes - An ultrastructural study
-
PMID:6073998
-
Fedorko M. Effect of chloroquine on morphology of cytoplasmic granules in maturing human leukocytes - an ultrastructural study. J Clin Invest 1967; 46:1932-42; PMID:6073998; http://dx.doi.org/10.1172/JCI105683
-
(1967)
J Clin Invest
, vol.46
, pp. 1932-1942
-
-
Fedorko, M.1
-
116
-
-
77950228149
-
Jun proteins are starvation-regulated inhibitors of autophagy
-
PMID:20197466
-
Yogev O, Goldberg R, Anzi S, Shaulian E. Jun proteins are starvation-regulated inhibitors of autophagy. Cancer Res 2010; 70:2318-27; PMID:20197466; http://dx.doi.org/10.1158/0008-5472.CAN-09-3408
-
(2010)
Cancer Res
, vol.70
, pp. 2318-2327
-
-
Yogev, O.1
Goldberg, R.2
Anzi, S.3
Shaulian, E.4
-
117
-
-
77951001692
-
Positive or negative regulatory roles of different cyclin-dependent kinase Pho85-cyclin complexes orchestrate induction of autophagy in Saccharomyces cerevisiae
-
PMID:20417603
-
Yang Z, Geng J, Yen W-L, Wang K, Klionsky DJ. Positive or negative regulatory roles of different cyclin-dependent kinase Pho85-cyclin complexes orchestrate induction of autophagy in Saccharomyces cerevisiae. Mol Cell 2010; 38:250-64; PMID:20417603; http://dx.doi.org/10.1016/j.molcel.2010.02.033
-
(2010)
Mol Cell
, vol.38
, pp. 250-264
-
-
Yang, Z.1
Geng, J.2
Yen, W.-L.3
Wang, K.4
Klionsky, D.J.5
-
118
-
-
75749135725
-
The conserved oligomeric Golgi complex is involved in double-membrane vesicle formation during autophagy
-
PMID:20065092
-
Yen W-L, Shintani T, Nair U, Cao Y, Richardson BC, Li Z, et al. The conserved oligomeric Golgi complex is involved in double-membrane vesicle formation during autophagy. J Cell Biol 2010; 188:101-14; PMID:20065092; http://dx.doi.org/10.1083/jcb.200904075
-
(2010)
J Cell Biol
, vol.188
, pp. 101-114
-
-
Yen, W.-L.1
Shintani, T.2
Nair, U.3
Cao, Y.4
Richardson, B.C.5
Li, Z.6
-
119
-
-
85010225935
-
Lysosome function in the regulation of the secretory process in cells of the anterior pituitary gland
-
PMID:19866704
-
Smith RE, Farquhar MG. Lysosome function in the regulation of the secretory process in cells of the anterior pituitary gland. J Cell Biol 1966; 31:319-47; PMID:19866704; http://dx.doi.org/10.1083/jcb.31.2.319
-
(1966)
J Cell Biol
, vol.31
, pp. 319-347
-
-
Smith, R.E.1
Farquhar, M.G.2
-
120
-
-
77949997805
-
Delivery of cytosolic components by autophagic adaptor protein p62 endows autophagosomes with unique antimicrobial properties
-
PMID:20206555
-
Ponpuak M, Davis AS, Roberts EA, Delgado MA, Dinkins C, Zhao Z, et al. Delivery of cytosolic components by autophagic adaptor protein p62 endows autophagosomes with unique antimicrobial properties. Immunity 2010; 32:329-41; PMID:20206555; http://dx.doi.org/10.1016/j.immuni.2010.02.009
-
(2010)
Immunity
, vol.32
, pp. 329-341
-
-
Ponpuak, M.1
Davis, A.S.2
Roberts, E.A.3
Delgado, M.A.4
Dinkins, C.5
Zhao, Z.6
-
121
-
-
49649092042
-
A small molecule inhibitor of isoprenylcysteine carboxymethyltransferase induces autophagic cell death in PC3 prostate cancer cells
-
PMID:18434300
-
Wang M, Tan W, Zhou J, Leow J, Go M, Lee HS, et al. A small molecule inhibitor of isoprenylcysteine carboxymethyltransferase induces autophagic cell death in PC3 prostate cancer cells. J Biol Chem 2008; 283:18678-84; PMID:18434300; http://dx.doi. org/10.1074/jbc.M801855200
-
(2008)
J Biol Chem
, vol.283
, pp. 18678-18684
-
-
Wang, M.1
Tan, W.2
Zhou, J.3
Leow, J.4
Go, M.5
Lee, H.S.6
-
122
-
-
0028800171
-
Isolation and characterization of yeast mutants in the cytoplasm to vacuole protein targeting pathway
-
PMID:7593182
-
Harding TM, Morano KA, Scott SV, Klionsky DJ. Isolation and characterization of yeast mutants in the cytoplasm to vacuole protein targeting pathway. J Cell Biol 1995; 131:591-602; PMID:7593182; http://dx.doi.org/10.1083/ jcb.131.3.591
-
(1995)
J Cell Biol
, vol.131
, pp. 591-602
-
-
Harding, T.M.1
Morano, K.A.2
Scott, S.V.3
Klionsky, D.J.4
-
123
-
-
77955716131
-
DAP1, a novel substrate of mTOR, negatively regulates autophagy
-
PMID:20537536
-
Koren I, Reem E, Kimchi A. DAP1, a novel substrate of mTOR, negatively regulates autophagy. Curr Biol 2010; 20:1093-8; PMID:20537536; http://dx.doi. org/10.1016/j.cub.2010.04.041
-
(2010)
Curr Biol
, vol.20
, pp. 1093-1098
-
-
Koren, I.1
Reem, E.2
Kimchi, A.3
-
124
-
-
0037193474
-
DAP kinase and DRP-1 mediate membrane blebbing and the formation of autophagic vesicles during programmed cell death
-
PMID:11980920
-
Inbal B, Bialik S, Sabanay I, Shani G, Kimchi A. DAP kinase and DRP-1 mediate membrane blebbing and the formation of autophagic vesicles during programmed cell death. J Cell Biol 2002; 157:455-68; PMID:11980920; http://dx.doi.org/10.1083/jcb.200109094
-
(2002)
J Cell Biol
, vol.157
, pp. 455-468
-
-
Inbal, B.1
Bialik, S.2
Sabanay, I.3
Shani, G.4
Kimchi, A.5
-
125
-
-
70349648496
-
A combined proteomic and genetic analysis identifies a role for the lipid desaturase Desat1 in starvation-induced autophagy in Drosophila
-
PMID:19587536
-
Köhler K, Brunner E, Guan XL, Boucke K, Greber UF, Mohanty S, et al. A combined proteomic and genetic analysis identifies a role for the lipid desaturase Desat1 in starvation-induced autophagy in Drosophila. Autophagy 2009; 5:980-90; PMID:19587536; http://dx.doi.org/10.4161/auto.5.7.9325
-
(2009)
Autophagy
, vol.5
, pp. 980-990
-
-
Köhler, K.1
Brunner, E.2
Guan, X.L.3
Boucke, K.4
Greber, U.F.5
Mohanty, S.6
-
126
-
-
50249084987
-
Autophagosome formation from membrane compartments enriched in phosphatidylinositol-3-phosphate and dynamically connected to the endoplasmic reticulum
-
PMID:18725538
-
Axe EL, Walker SA, Manifava M, Chandra P, Roderick HL, Habermann A, et al. Autophagosome formation from membrane compartments enriched in phosphatidylinositol-3-phosphate and dynamically connected to the endoplasmic reticulum. J Cell Biol 2008; 182:685-701; PMID:18725538; http://dx.doi.org/10. 1083/jcb.200803137
-
(2008)
J Cell Biol
, vol.182
, pp. 685-701
-
-
Axe, E.L.1
Walker, S.A.2
Manifava, M.3
Chandra, P.4
Roderick, H.L.5
Habermann, A.6
-
127
-
-
77956310643
-
A diacylglycerol-dependent signaling pathway contributes to regulation of antibacterial autophagy
-
PMID:20674539
-
Shahnazari S, Yen W-L, Birmingham CL, Shiu J, Namolovan A, Zheng YT, et al. A diacylglycerol-dependent signaling pathway contributes to regulation of antibacterial autophagy. Cell Host Microbe 2010; 8:137-46; PMID:20674539; http://dx.doi. org/10.1016/j.chom.2010.07.002
-
(2010)
Cell Host Microbe
, vol.8
, pp. 137-146
-
-
Shahnazari, S.1
Yen, W.-L.2
Birmingham, C.L.3
Shiu, J.4
Namolovan, A.5
Zheng, Y.T.6
-
128
-
-
77956231631
-
DJ-1, a cancer and Parkinson's disease associated protein, regulates autophagy through JNK pathway in cancer cells
-
PMID:20510502
-
Ren H, Fu K, Mu C, Li B, Wang D, Wang G. DJ-1, a cancer and Parkinson's disease associated protein, regulates autophagy through JNK pathway in cancer cells. Cancer Lett 2010; 297:101-8; PMID:20510502; http://dx.doi.org/10.1016/j. canlet.2010.05.001
-
(2010)
Cancer Lett
, vol.297
, pp. 101-108
-
-
Ren, H.1
Fu, K.2
Mu, C.3
Li, B.4
Wang, D.5
Wang, G.6
-
129
-
-
74049129024
-
The nuclear cofactor DOR regulates autophagy in mammalian and Drosophila cells
-
PMID:20010805
-
Mauvezin C, Orpinell M, Francis VA, Mansilla F, Duran J, Ribas V, et al. The nuclear cofactor DOR regulates autophagy in mammalian and Drosophila cells. EMBO Rep 2010; 11:37-44; PMID:20010805; http://dx.doi.org/10.1038/embor.2009.242
-
(2010)
EMBO Rep
, vol.11
, pp. 37-44
-
-
Mauvezin, C.1
Orpinell, M.2
Francis, V.A.3
Mansilla, F.4
Duran, J.5
Ribas, V.6
-
130
-
-
33745885329
-
DRAM, a p53-induced modulator of autophagy, is critical for apoptosis
-
PMID:16839881
-
Crighton D, Wilkinson S, O'Prey J, Syed N, Smith P, Harrison PR, et al. DRAM, a p53-induced modulator of autophagy, is critical for apoptosis. Cell 2006; 126:121-34; PMID:16839881; http://dx.doi. org/10.1016/j.cell.2006.05.034
-
(2006)
Cell
, vol.126
, pp. 121-134
-
-
Crighton, D.1
Wilkinson, S.2
O'Prey, J.3
Syed, N.4
Smith, P.5
Harrison, P.R.6
-
131
-
-
77953948764
-
Activation of autophagy during cell death requires the engulfment receptor Draper
-
McPhee CK, Logan MA, Freeman MR, Baehrecke EH. Activation of autophagy during cell death requires the engulfment receptor Draper. Nature 2010; 465:1093-6
-
(2010)
Nature
, vol.465
, pp. 1093-1096
-
-
McPhee, C.K.1
Logan, M.A.2
Freeman, M.R.3
Baehrecke, E.H.4
-
132
-
-
67650456194
-
The drs tumor suppressor is involved in the maturation process of autophagy induced by low serum
-
PMID:19368996
-
Tambe Y, Yamamoto A, Isono T, Chano T, Fukuda M, Inoue H. The drs tumor suppressor is involved in the maturation process of autophagy induced by low serum. Cancer Lett 2009; 283:74-83; PMID:19368996; http://dx.doi.org/10.1016/j. canlet.2009.03.028
-
(2009)
Cancer Lett
, vol.283
, pp. 74-83
-
-
Tambe, Y.1
Yamamoto, A.2
Isono, T.3
Chano, T.4
Fukuda, M.5
Inoue, H.6
-
133
-
-
49649121765
-
E2F1 regulates autophagy and the transcription of autophagy genes
-
PMID:18408756
-
Polager S, Ofir M, Ginsberg D. E2F1 regulates autophagy and the transcription of autophagy genes. Oncogene 2008; 27:4860-4; PMID:18408756; http://dx.doi.org/10.1038/onc.2008.117
-
(2008)
Oncogene
, vol.27
, pp. 4860-4864
-
-
Polager, S.1
Ofir, M.2
Ginsberg, D.3
-
134
-
-
77955989034
-
Identification of regulators of chaperone-mediated autophagy
-
PMID:20797626
-
Bandyopadhyay U, Sridhar S, Kaushik S, Kiffin R, Cuervo AM. Identification of regulators of chaperone-mediated autophagy. Mol Cell 2010; 39:535-47; PMID:20797626; http://dx.doi.org/10.1016/j.molcel. 2010.08.004
-
(2010)
Mol Cell
, vol.39
, pp. 535-547
-
-
Bandyopadhyay, U.1
Sridhar, S.2
Kaushik, S.3
Kiffin, R.4
Cuervo, A.M.5
-
135
-
-
0037039442
-
Regulation of starvation- And virus-induced autophagy by the eIF2α kinase signaling pathway
-
PMID:11756670
-
Tallóczy Z, Jiang W, Virgin HW IV, Leib DA, Scheuner D, Kaufman RJ, et al. Regulation of starvation- and virus-induced autophagy by the eIF2α kinase signaling pathway. Proc Natl Acad Sci USA 2002; 99:190-5; PMID:11756670; http://dx.doi.org/10.1073/pnas.012485299
-
(2002)
Proc Natl Acad Sci USA
, vol.99
, pp. 190-195
-
-
Tallóczy, Z.1
Jiang, W.2
Virgin IV, H.W.3
Leib, D.A.4
Scheuner, D.5
Kaufman, R.J.6
-
136
-
-
33846211417
-
ER stress (PERK/eIF2α phosphorylation) mediates the polyglutamine-induced LC3 conversion, an essential step for autophagy formation
-
PMID:16794605
-
Kouroku Y, Fujita E, Tanida I, Ueno T, Isoai A, Kumagai H, et al. ER stress (PERK/eIF2α phosphorylation) mediates the polyglutamine-induced LC3 conversion, an essential step for autophagy formation. Cell Death Differ 2007; 14:230-9; PMID:16794605; http://dx.doi.org/10.1038/sj.cdd.4401984
-
(2007)
Cell Death Differ
, vol.14
, pp. 230-239
-
-
Kouroku, Y.1
Fujita, E.2
Tanida, I.3
Ueno, T.4
Isoai, A.5
Kumagai, H.6
-
137
-
-
78651423598
-
Microautophagy of cytosolic proteins by late endosomes
-
PMID:21238931
-
Sahu R, Kaushik S, Clement CC, Cannizzo ES, Scharf B, Follenzi A, et al. Microautophagy of cytosolic proteins by late endosomes. Dev Cell 2011; 20:131-9; PMID:21238931; http://dx.doi.org/10.1016/j.devcel. 2010.12.003
-
(2011)
Dev Cell
, vol.20
, pp. 131-139
-
-
Sahu, R.1
Kaushik, S.2
Clement, C.C.3
Cannizzo, E.S.4
Scharf, B.5
Follenzi, A.6
-
138
-
-
77953713630
-
C. elegans screen identifies autophagy genes specific to multicellular organisms
-
PMID:20550938
-
Tian Y, Li Z, Hu W, Ren H, Tian E, Zhao Y, et al. C. elegans screen identifies autophagy genes specific to multicellular organisms. Cell 2010; 141:1042-55; PMID:20550938; http://dx.doi.org/10.1016/j. cell.2010.04.034
-
(2010)
Cell
, vol.141
, pp. 1042-1055
-
-
Tian, Y.1
Li, Z.2
Hu, W.3
Ren, H.4
Tian, E.5
Zhao, Y.6
-
139
-
-
67650249774
-
Epg-1 functions in autophagy-regulated processes and may encode a highly divergent Atg13 homolog in C. elegans
-
PMID:19377305
-
Tian E, Wang F, Han J, Zhang H. epg-1 functions in autophagy-regulated processes and may encode a highly divergent Atg13 homolog in C. elegans. Autophagy 2009; 5:608-15; PMID:19377305; http://dx.doi. org/10.4161/auto.5.5. 8624
-
(2009)
Autophagy
, vol.5
, pp. 608-615
-
-
Tian, E.1
Wang, F.2
Han, J.3
Zhang, H.4
-
140
-
-
0034672063
-
Erk1/2-dependent phosphorylation of Gα-interacting protein stimulates its GTPase accelerating activity and autophagy in human colon cancer cells
-
PMID:10993892
-
Ogier-Denis E, Pattingre S, El Benna J, Codogno P. Erk1/2-dependent phosphorylation of Gα-interacting protein stimulates its GTPase accelerating activity and autophagy in human colon cancer cells. J Biol Chem 2000; 275:39090-5; PMID:10993892; http://dx.doi. org/10.1074/jbc.M006198200
-
(2000)
J Biol Chem
, vol.275
, pp. 39090-39095
-
-
Ogier-Denis, E.1
Pattingre, S.2
El Benna, J.3
Codogno, P.4
-
141
-
-
33847048316
-
Regulation of autophagy by extracellular signal-regulated protein kinases during 1-methyl-4-phenylpyridinium-induced cell death
-
PMID:17200184
-
Zhu JH, Horbinski C, Guo F, Watkins S, Uchiyama Y, Chu CT. Regulation of autophagy by extracellular signal-regulated protein kinases during 1-methyl-4-phenylpyridinium-induced cell death. Am J Pathol 2007; 170:75-86; PMID:17200184; http://dx.doi. org/10.2353/ajpath.2007.060524
-
(2007)
Am J Pathol
, vol.170
, pp. 75-86
-
-
Zhu, J.H.1
Horbinski, C.2
Guo, F.3
Watkins, S.4
Uchiyama, Y.5
Chu, C.T.6
-
142
-
-
50249168137
-
Mitochondrially localized ERK2 regulates mitophagy and autophagic cell stress: Implications for Parkinson's disease
-
PMID:18594198
-
Dagda RK, Zhu J, Kulich SM, Chu CT. Mitochondrially localized ERK2 regulates mitophagy and autophagic cell stress: implications for Parkinson's disease. Autophagy 2008; 4:770-82; PMID:18594198
-
(2008)
Autophagy
, vol.4
, pp. 770-782
-
-
Dagda, R.K.1
Zhu, J.2
Kulich, S.M.3
Chu, C.T.4
-
143
-
-
78651488777
-
RalB and the exocyst mediate the cellular starvation response by direct activation of autophagosome assembly
-
PMID:21241894
-
Bodemann BO, Orvedahl A, Cheng T, Ram RR, Ou YH, Formstecher E, et al. RalB and the exocyst mediate the cellular starvation response by direct activation of autophagosome assembly. Cell 2011; 144:253-67; PMID:21241894; http://dx.doi.org/10.1016/j. cell.2010.12.018
-
(2011)
Cell
, vol.144
, pp. 253-267
-
-
Bodemann, B.O.1
Orvedahl, A.2
Cheng, T.3
Ram, R.R.4
Ou, Y.H.5
Formstecher, E.6
-
144
-
-
77953161593
-
Protein secretion: Unconventional exit by exophagy
-
PMID:20462486
-
Abrahamsen H, Stenmark H. Protein secretion: unconventional exit by exophagy. Curr Biol 2010; 20:415-8; PMID:20462486; http://dx.doi.org/10.1016/j. cub.2010.03.011
-
(2010)
Curr Biol
, vol.20
, pp. 415-418
-
-
Abrahamsen, H.1
Stenmark, H.2
-
145
-
-
77149152566
-
Unconventional secretion of Pichia pastoris Acb1 is dependent on GRASP protein, peroxisomal functions and autophagosome formation
-
PMID:20156962
-
Manjithaya R, Anjard C, Loomis WF, Subramani S. Unconventional secretion of Pichia pastoris Acb1 is dependent on GRASP protein, peroxisomal functions and autophagosome formation. J Cell Biol 2010; 188:537-46; PMID:20156962; http://dx.doi. org/10.1083/jcb.200911149
-
(2010)
J Cell Biol
, vol.188
, pp. 537-546
-
-
Manjithaya, R.1
Anjard, C.2
Loomis, W.F.3
Subramani, S.4
-
146
-
-
77149155386
-
Unconventional secretion of Acb1 is mediated by autophagosomes
-
PMID:20156967
-
Duran JM, Anjard C, Stefan C, Loomis WF, Malhotra V. Unconventional secretion of Acb1 is mediated by autophagosomes. J Cell Biol 2010; 188:527-36; PMID:20156967; http://dx.doi.org/10.1083/jcb.200911154
-
(2010)
J Cell Biol
, vol.188
, pp. 527-536
-
-
Duran, J.M.1
Anjard, C.2
Stefan, C.3
Loomis, W.F.4
Malhotra, V.5
-
147
-
-
77957044703
-
Discovery of drug mode of action and drug repositioning from transcriptional responses
-
PMID:20679242
-
Iorio F, Bosotti R, Scacheri E, Belcastro V, Mithbaokar P, Ferriero R, et al. Discovery of drug mode of action and drug repositioning from transcriptional responses. Proc Natl Acad Sci USA 2010; 107:14621-6; PMID:20679242; http://dx.doi.org/10.1073/pnas.1000138107
-
(2010)
Proc Natl Acad Sci USA
, vol.107
, pp. 14621-14626
-
-
Iorio, F.1
Bosotti, R.2
Scacheri, E.3
Belcastro, V.4
Mithbaokar, P.5
Ferriero, R.6
-
148
-
-
43149090064
-
FIP200, a ULK-interacting protein, is required for autophagosome formation in mammalian cells
-
PMID:18443221
-
Hara T, Takamura A, Kishi C, Iemura S, Natsume T, Guan J-L, et al. FIP200, a ULK-interacting protein, is required for autophagosome formation in mammalian cells. J Cell Biol 2008; 181:497-510; PMID:18443221; http://dx.doi.org/10.1083/jcb.200712064
-
(2008)
J Cell Biol
, vol.181
, pp. 497-510
-
-
Hara, T.1
Takamura, A.2
Kishi, C.3
Iemura, S.4
Natsume, T.5
Guan, J.-L.6
-
149
-
-
77449099093
-
Role of FK506-binding protein 51 in the control of apoptosis of irradiated melanoma cells
-
PMID:19696786
-
Romano S, D'Angelillo A, Pacelli R, Staibano S, De Luna E, Bisogni R, et al. Role of FK506-binding protein 51 in the control of apoptosis of irradiated melanoma cells. Cell Death Differ 2010; 17:145-57; PMID:19696786; http://dx.doi.org/10.1038/cdd.2009.115
-
(2010)
Cell Death Differ
, vol.17
, pp. 145-157
-
-
Romano, S.1
D'Angelillo, A.2
Pacelli, R.3
Staibano, S.4
De Luna, E.5
Bisogni, R.6
-
150
-
-
65249185812
-
A novel hybrid yeast-human network analysis reveals an essential role for FNBP1L in antibacterial autophagy
-
PMID:19342671
-
Huett A, Ng A, Cao Z, Kuballa P, Komatsu M, Daly MJ, et al. A novel hybrid yeast-human network analysis reveals an essential role for FNBP1L in antibacterial autophagy. J Immunol 2009; 182:4917-30; PMID:19342671; http://dx.doi.org/10.4049/jimmunol. 0803050
-
(2009)
J Immunol
, vol.182
, pp. 4917-4930
-
-
Huett, A.1
Ng, A.2
Cao, Z.3
Kuballa, P.4
Komatsu, M.5
Daly, M.J.6
-
151
-
-
77954225200
-
Cytosolic FoxO1 is essential for the induction of autophagy and tumour suppressor activity
-
PMID:20543840
-
Zhao Y, Yang J, Liao W, Liu X, Zhang H, Wang S, et al. Cytosolic FoxO1 is essential for the induction of autophagy and tumour suppressor activity. Nat Cell Biol 2010; 12:665-75; PMID:20543840; http://dx.doi.org/10.1038/ncb2069
-
(2010)
Nat Cell Biol
, vol.12
, pp. 665-675
-
-
Zhao, Y.1
Yang, J.2
Liao, W.3
Liu, X.4
Zhang, H.5
Wang, S.6
-
152
-
-
78650691023
-
Deacetylation of FoxO by Sirt1 plays an essential role in mediating starvation-induced autophagy in cardiac myocytes
-
PMID:20947830
-
Hariharan N, Maejima Y, Nakae J, Paik J, Depinho RA, Sadoshima J. Deacetylation of FoxO by Sirt1 plays an essential role in mediating starvation-induced autophagy in cardiac myocytes. Circ Res 2010; 107:1470-82; PMID:20947830; http://dx.doi.org/10.1161/CIRCRESAHA.110.227371
-
(2010)
Circ Res
, vol.107
, pp. 1470-1482
-
-
Hariharan, N.1
Maejima, Y.2
Nakae, J.3
Paik, J.4
Depinho, R.A.5
Sadoshima, J.6
-
153
-
-
36448968532
-
FoxO3 coordinately activates protein degradation by the autophagic/lysosomal and proteasomal pathways in atrophying muscle cells
-
PMID:18054316
-
Zhao J, Brault JJ, Schild A, Cao P, Sandri M, Schiaffino S, et al. FoxO3 coordinately activates protein degradation by the autophagic/lysosomal and proteasomal pathways in atrophying muscle cells. Cell Metab 2007; 6:472-83; PMID:18054316; http://dx.doi. org/10.1016/j.cmet.2007.11.004
-
(2007)
Cell Metab
, vol.6
, pp. 472-483
-
-
Zhao, J.1
Brault, J.J.2
Schild, A.3
Cao, P.4
Sandri, M.5
Schiaffino, S.6
-
154
-
-
36549042562
-
FoxO3 controls dangerous proteolytic liaisons
-
PMID:18054311
-
Attaix D, Bechet D. FoxO3 controls dangerous proteolytic liaisons. Cell Metab 2007; 6:425-7; PMID:18054311; http://dx.doi.org/10.1016/j. cmet.2007.11.005
-
(2007)
Cell Metab
, vol.6
, pp. 425-427
-
-
Attaix, D.1
Bechet, D.2
-
155
-
-
76149086512
-
FYCO1 is a Rab7 effector that binds to LC3 and PI3P to mediate microtubule plus enddirected vesicle transport
-
PMID:20100911
-
Pankiv S, Alemu EA, Brech A, Bruun JA, Lamark T, Øvervatn A, et al. FYCO1 is a Rab7 effector that binds to LC3 and PI3P to mediate microtubule plus enddirected vesicle transport. J Cell Biol 2010; 188:253-69; PMID:20100911; http://dx.doi.org/10.1083/jcb.200907015
-
(2010)
J Cell Biol
, vol.188
, pp. 253-269
-
-
Pankiv, S.1
Alemu, E.A.2
Brech, A.3
Bruun, J.A.4
Lamark, T.5
Øvervatn, A.6
-
156
-
-
0028985249
-
A heterotrimeric Gi3-protein controls autophagic sequestration in the human colon cancer cell line HT-29
-
PMID:7814364
-
Ogier-Denis E, Couvineau A, Maoret JJ, Houri JJ, Bauvy C, De Stefanis D, et al. A heterotrimeric Gi3-protein controls autophagic sequestration in the human colon cancer cell line HT-29. J Biol Chem 1995; 270:13-6; PMID:7814364; http://dx.doi.org/10.1074/jbc.270.1.13
-
(1995)
J Biol Chem
, vol.270
, pp. 13-16
-
-
Ogier-Denis, E.1
Couvineau, A.2
Maoret, J.J.3
Houri, J.J.4
Bauvy, C.5
De Stefanis, D.6
-
157
-
-
0029905203
-
Guanine nucleotide exchange on heterotrimeric Gi3 protein controls autophagic sequestration in HT-29 cells
-
PMID:8910489
-
Ogier-Denis E, Houri JJ, Bauvy C, Codogno P. Guanine nucleotide exchange on heterotrimeric Gi3 protein controls autophagic sequestration in HT-29 cells. J Biol Chem 1996; 271:28593-600; PMID:8910489; http://dx.doi.org/10.1074/jbc. 271.45.28593
-
(1996)
J Biol Chem
, vol.271
, pp. 28593-28600
-
-
Ogier-Denis, E.1
Houri, J.J.2
Bauvy, C.3
Codogno, P.4
-
158
-
-
0034727876
-
Interaction of the Unc-51-like kinase and microtubule-associated protein light chain 3 related proteins in the brain: Possible role of vesicular transport in axonal elongation
-
PMID:11146101
-
Okazaki N, Yan J, Yuasa S, Ueno T, Kominami E, Masuho Y, et al. Interaction of the Unc-51-like kinase and microtubule-associated protein light chain 3 related proteins in the brain: possible role of vesicular transport in axonal elongation. Brain Res Mol 2000; 85:1-12; PMID:11146101; http://dx.doi.org/10.1016/S0169-328X(00)00218-7
-
(2000)
Brain Res Mol
, vol.85
, pp. 1-12
-
-
Okazaki, N.1
Yan, J.2
Yuasa, S.3
Ueno, T.4
Kominami, E.5
Masuho, Y.6
-
159
-
-
0035910423
-
The human homolog of Saccharomyces cerevisiae Apg7p is a protein-activating enzyme for multiple substrates including human Apg12p, GATE-16, GABARAP and MAP-LC3
-
PMID:11096062
-
Tanida I, Tanida-Miyake E, Ueno T, Kominami E. The human homolog of Saccharomyces cerevisiae Apg7p is a protein-activating enzyme for multiple substrates including human Apg12p, GATE-16, GABARAP and MAP-LC3. J Biol Chem 2001; 276:1701-6; PMID:11096062
-
(2001)
J Biol Chem
, vol.276
, pp. 1701-1706
-
-
Tanida, I.1
Tanida-Miyake, E.2
Ueno, T.3
Kominami, E.4
-
160
-
-
79955005054
-
Gadd34 induces autophagy through the suppression of the mTOR pathway during starvation
-
Uddin MN, Ito S, Nishio N, Suganya T, Isobe KI. Gadd34 induces autophagy through the suppression of the mTOR pathway during starvation. Biochem Biophys Res Commun 2011; 407:692-8
-
(2011)
Biochem Biophys Res Commun
, vol.407
, pp. 692-698
-
-
Uddin, M.N.1
Ito, S.2
Nishio, N.3
Suganya, T.4
Isobe, K.I.5
-
161
-
-
0030822012
-
Control of the expression and activity of the Gα-interacting protein (GAIP) in human intestinal cells
-
PMID:9305927
-
Ogier-Denis E, Petiot A, Bauvy C, Codogno P. Control of the expression and activity of the Gα-interacting protein (GAIP) in human intestinal cells. J Biol Chem 1997; 272:24599-603; PMID:9305927; http://dx.doi. org/10.1074/jbc.272.39.24599
-
(1997)
J Biol Chem
, vol.272
, pp. 24599-24603
-
-
Ogier-Denis, E.1
Petiot, A.2
Bauvy, C.3
Codogno, P.4
-
162
-
-
77950630969
-
Growth factor erv1-like modulates Drp1 to preserve mitochondrial dynamics and function in mouse embryonic stem cells
-
PMID:20147447
-
Todd LR, Damin MN, Gomathinayagam R, Horn SR, Means AR, Sankar U. Growth factor erv1-like modulates Drp1 to preserve mitochondrial dynamics and function in mouse embryonic stem cells. Mol Biol Cell 2010; 21:1225-36; PMID:20147447; http://dx.doi. org/10.1091/mbc.E09-11-0937
-
(2010)
Mol Biol Cell
, vol.21
, pp. 1225-1236
-
-
Todd, L.R.1
Damin, M.N.2
Gomathinayagam, R.3
Horn, S.R.4
Means, A.R.5
Sankar, U.6
-
163
-
-
78649747024
-
The melanoma-associated transmembrane glycoprotein Gpnmb controls trafficking of cellular debris for degradation and is essential for tissue repair
-
PMID:20709912
-
Li B, Castano AP, Hudson TE, Nowlin BT, Lin S-L, Bonventre JV, et al. The melanoma-associated transmembrane glycoprotein Gpnmb controls trafficking of cellular debris for degradation and is essential for tissue repair. FASEB J 2010; 24:4767-81; PMID:20709912; http://dx.doi.org/10.1096/fj.10-154757
-
(2010)
FASEB J
, vol.24
, pp. 4767-4781
-
-
Li, B.1
Castano, A.P.2
Hudson, T.E.3
Nowlin, B.T.4
Lin, S.-L.5
Bonventre, J.V.6
-
164
-
-
28844475400
-
HDAC6 and microtubules are required for autophagic degradation of aggregated huntingtin
-
PMID:16192271
-
Iwata A, Riley BE, Johnston JA, Kopito RR. HDAC6 and microtubules are required for autophagic degradation of aggregated huntingtin. J Biol Chem 2005; 280:40282-92; PMID:16192271; http://dx.doi. org/10.1074/jbc.M508786200
-
(2005)
J Biol Chem
, vol.280
, pp. 40282-40292
-
-
Iwata, A.1
Riley, B.E.2
Johnston, J.A.3
Kopito, R.R.4
-
165
-
-
77649337122
-
HDAC6 controls autophagosome maturation essential for ubiquitin-selective quality-control autophagy
-
PMID:20075865
-
Lee JY, Koga H, Kawaguchi Y, Tang W, Wong E, Gao YS, et al. HDAC6 controls autophagosome maturation essential for ubiquitin-selective quality-control autophagy. EMBO J 2010; 29:969-80; PMID:20075865; http://dx.doi.org/10.1038/emboj.2009.405
-
(2010)
EMBO J
, vol.29
, pp. 969-980
-
-
Lee, J.Y.1
Koga, H.2
Kawaguchi, Y.3
Tang, W.4
Wong, E.5
Gao, Y.S.6
-
166
-
-
34250183177
-
HDAC6 rescues neurodegeneration and provides an essential link between autophagy and the UPS
-
PMID:17568747
-
Pandey UB, Nie Z, Batlevi Y, McCray BA, Ritson GP, Nedelsky NB, et al. HDAC6 rescues neurodegeneration and provides an essential link between autophagy and the UPS. Nature 2007; 447:859-63; PMID:17568747; http://dx.doi.org/10.1038/ nature05853
-
(2007)
Nature
, vol.447
, pp. 859-863
-
-
Pandey, U.B.1
Nie, Z.2
Batlevi, Y.3
McCray, B.A.4
Ritson, G.P.5
Nedelsky, N.B.6
-
167
-
-
36148954660
-
The role of the hypoxiainducible BH3-only proteins BNIP3 and BNIP3L in cancer
-
PMID:17805942
-
Mellor HR, Harris AL. The role of the hypoxiainducible BH3-only proteins BNIP3 and BNIP3L in cancer. Cancer Metastasis Rev 2007; 26:553-66; PMID:17805942; http://dx.doi.org/10.1007/s10555-007-9080-0
-
(2007)
Cancer Metastasis Rev
, vol.26
, pp. 553-566
-
-
Mellor, H.R.1
Harris, A.L.2
-
168
-
-
34248532510
-
HIF-1 regulation of chondrocyte apoptosis: Induction of the autophagic pathway
-
PMID:17224629
-
Bohensky J, Shapiro IM, Leshinsky S, Terkhorn SP, Adams CS, Srinivas V. HIF-1 regulation of chondrocyte apoptosis: induction of the autophagic pathway. Autophagy 2007; 3:207-14; PMID:17224629
-
(2007)
Autophagy
, vol.3
, pp. 207-214
-
-
Bohensky, J.1
Shapiro, I.M.2
Leshinsky, S.3
Terkhorn, S.P.4
Adams, C.S.5
Srinivas, V.6
-
169
-
-
77956386515
-
Endogenous HMGB1 regulates autophagy
-
PMID:20819940
-
Tang D, Kang R, Livesey KM, Cheh CW, Farkas AA, Loughran P, et al. Endogenous HMGB1 regulates autophagy. J Cell Biol 2010; 190:881-92; PMID:20819940; http://dx.doi.org/10.1083/jcb.200911078
-
(2010)
J Cell Biol
, vol.190
, pp. 881-892
-
-
Tang, D.1
Kang, R.2
Livesey, K.M.3
Cheh, C.W.4
Farkas, A.A.5
Loughran, P.6
-
170
-
-
77957106729
-
HMGB1 release and redox regulates autophagy and apoptosis in cancer cells
-
PMID:20622903
-
Tang D, Kang R, Cheh CW, Livesey KM, Liang X, Schapiro NE, et al. HMGB1 release and redox regulates autophagy and apoptosis in cancer cells. Oncogene 2010; 29:5299-310; PMID:20622903; http://dx.doi.org/10.1038/onc.2010.261
-
(2010)
Oncogene
, vol.29
, pp. 5299-5310
-
-
Tang, D.1
Kang, R.2
Cheh, C.W.3
Livesey, K.M.4
Liang, X.5
Schapiro, N.E.6
-
171
-
-
57649217868
-
Autophagy regulates selective HMGB1 release in tumor cells that are destined to die
-
PMID:18846108
-
Thorburn J, Horita H, Redzic J, Hansen K, Frankel AE, Thorburn A. Autophagy regulates selective HMGB1 release in tumor cells that are destined to die. Cell Death Differ 2009; 16:175-83; PMID:18846108; http://dx.doi.org/10. 1038/cdd.2008.143
-
(2009)
Cell Death Differ
, vol.16
, pp. 175-183
-
-
Thorburn, J.1
Horita, H.2
Redzic, J.3
Hansen, K.4
Frankel, A.E.5
Thorburn, A.6
-
172
-
-
0024975155
-
A role for a 70-kilodalton heat shock protein in lysosomal degradation of intracellular proteins
-
PMID:2799391
-
Chiang H-L, Terlecky SR, Plant CP, Dice JF. A role for a 70-kilodalton heat shock protein in lysosomal degradation of intracellular proteins. Science 1989; 246:382-5; PMID:2799391; http://dx.doi.org/10.1126/science. 2799391
-
(1989)
Science
, vol.246
, pp. 382-385
-
-
Chiang, H.-L.1
Terlecky, S.R.2
Plant, C.P.3
Dice, J.F.4
-
173
-
-
33748374920
-
Lysosome membrane lipid microdomains: Novel regulators of chaperone-mediated autophagy
-
PMID:16917501
-
Kaushik S, Massey AC, Cuervo AM. Lysosome membrane lipid microdomains: novel regulators of chaperone-mediated autophagy. EMBO J 2006; 25:3921-33; PMID:16917501; http://dx.doi.org/10.1038/sj.emboj.7601283
-
(2006)
EMBO J
, vol.25
, pp. 3921-3933
-
-
Kaushik, S.1
Massey, A.C.2
Cuervo, A.M.3
-
174
-
-
51349130544
-
Dynamic organization of the receptor for chaperone-mediated autophagy at the lysosomal membrane
-
PMID:18644871
-
Bandyopadhyay U, Kaushik S, Vartikovsky L, Cuervo AM. Dynamic organization of the receptor for chaperone-mediated autophagy at the lysosomal membrane. Mol Cell Biol 2008; 28:5747-63; PMID:18644871; http://dx.doi.org/10. 1128/MCB.02070-07
-
(2008)
Mol Cell Biol
, vol.28
, pp. 5747-5763
-
-
Bandyopadhyay, U.1
Kaushik, S.2
Vartikovsky, L.3
Cuervo, A.M.4
-
175
-
-
33947715151
-
HSV-1 ICP34.5 confers neurovirulence by targeting the Beclin 1 autophagy protein
-
PMID:18005679
-
Orvedahl A, Alexander D, Tallóczy Z, Sun Q, Wei Y, Zhang W, et al. HSV-1 ICP34.5 confers neurovirulence by targeting the Beclin 1 autophagy protein. Cell Host Microbe 2007; 1:23-35; PMID:18005679; http://dx.doi.org/10. 1016/j.chom.2006.12.001
-
(2007)
Cell Host Microbe
, vol.1
, pp. 23-35
-
-
Orvedahl, A.1
Alexander, D.2
Tallóczy, Z.3
Sun, Q.4
Wei, Y.5
Zhang, W.6
-
176
-
-
76349090912
-
The IKK complex contributes to the induction of autophagy
-
PMID:19959994
-
Criollo A, Senovilla L, Authier H, Maiuri MC, Morselli E, Vitale I, et al. The IKK complex contributes to the induction of autophagy. EMBO J 2010; 29:619-31; PMID:19959994; http://dx.doi.org/10.1038/emboj.2009.364
-
(2010)
EMBO J
, vol.29
, pp. 619-631
-
-
Criollo, A.1
Senovilla, L.2
Authier, H.3
Maiuri, M.C.4
Morselli, E.5
Vitale, I.6
-
177
-
-
77953272740
-
Human immunodeficiency virus-1 inhibition of immunoamphisomes in dendritic cells impairs early innate and adaptive immune responses
-
PMID:20451412
-
Blanchet FP, Moris A, Nikolic DS, Lehmann M, Cardinaud S, Stalder R, et al. Human immunodeficiency virus-1 inhibition of immunoamphisomes in dendritic cells impairs early innate and adaptive immune responses. Immunity 2010; 32:654-69; PMID:20451412; http://dx.doi.org/10.1016/j.immuni. 2010.04.011
-
(2010)
Immunity
, vol.32
, pp. 654-669
-
-
Blanchet, F.P.1
Moris, A.2
Nikolic, D.S.3
Lehmann, M.4
Cardinaud, S.5
Stalder, R.6
-
178
-
-
24744463111
-
Autophagy in innate and adaptive immunity
-
PMID:16099218
-
Deretic V. Autophagy in innate and adaptive immunity. Trends Immunol 2005; 26:523-8; PMID:16099218; http://dx.doi.org/10.1016/j.it.2005.08.003
-
(2005)
Trends Immunol
, vol.26
, pp. 523-528
-
-
Deretic, V.1
-
179
-
-
25444483066
-
Lithium induces autophagy by inhibiting inositol monophosphatase
-
PMID:16186256
-
Sarkar S, Floto RA, Berger Z, Imarisio S, Cordenier A, Pasco M, et al. Lithium induces autophagy by inhibiting inositol monophosphatase. J Cell Biol 2005; 170:1101-11; PMID:16186256; http://dx.doi. org/10.1083/jcb.200504035
-
(2005)
J Cell Biol
, vol.170
, pp. 1101-1111
-
-
Sarkar, S.1
Floto, R.A.2
Berger, Z.3
Imarisio, S.4
Cordenier, A.5
Pasco, M.6
-
180
-
-
33748506089
-
Human IRGM induces autophagy to eliminate intracellular mycobacteria
-
PMID:16888103
-
Singh SB, Davis AS, Taylor GA, Deretic V. Human IRGM induces autophagy to eliminate intracellular mycobacteria. Science 2006; 313:1438-41; PMID:16888103; http://dx.doi.org/10.1126/science. 1129577
-
(2006)
Science
, vol.313
, pp. 1438-1441
-
-
Singh, S.B.1
Davis, A.S.2
Taylor, G.A.3
Deretic, V.4
-
181
-
-
44949237240
-
JNK1-mediated phosphorylation of Bcl-2 regulates starvation-induced autophagy
-
PMID:18570871
-
Wei Y, Pattingre S, Sinha S, Bassik M, Levine B. JNK1-mediated phosphorylation of Bcl-2 regulates starvation-induced autophagy. Mol Cell 2008; 30:678-88; PMID:18570871; http://dx.doi.org/10.1016/j. molcel.2008.06.001
-
(2008)
Mol Cell
, vol.30
, pp. 678-688
-
-
Wei, Y.1
Pattingre, S.2
Sinha, S.3
Bassik, M.4
Levine, B.5
-
182
-
-
68249153748
-
Control of autophagy initiation by phosphoinositide-3-phosphatase Jumpy
-
PMID:19590496
-
Vergne I, Roberts E, Elmaoued RA, Tosch V, Delgado MA, Proikas-Cezanne T, et al. Control of autophagy initiation by phosphoinositide-3-phosphatase Jumpy. EMBO J 2009; 28:2244-58; PMID:19590496; http://dx.doi.org/10.1038/emboj.2009. 159
-
(2009)
EMBO J
, vol.28
, pp. 2244-2258
-
-
Vergne, I.1
Roberts, E.2
Elmaoued, R.A.3
Tosch, V.4
Delgado, M.A.5
Proikas-Cezanne, T.6
-
183
-
-
79960348203
-
Relieving autophagy and 4EBP1 from rapamycin resistance
-
PMID:21576371
-
Nyfeler B, Bergman P, Triantafellow E, Wilson CJ, Zhu Y, Radetich B, et al. Relieving autophagy and 4EBP1 from rapamycin resistance. Mol Cell Biol 2011; 31:2867-76; PMID:21576371; http://dx.doi. org/10.1128/MCB.05430-11
-
(2011)
Mol Cell Biol
, vol.31
, pp. 2867-2876
-
-
Nyfeler, B.1
Bergman, P.2
Triantafellow, E.3
Wilson, C.J.4
Zhu, Y.5
Radetich, B.6
-
184
-
-
77954486784
-
Laforin, the most common protein mutated in Lafora disease, regulates autophagy
-
PMID:20453062
-
Aguado C, Sarkar S, Korolchuk VI, Criado O, Vernia S, Boya P, et al. Laforin, the most common protein mutated in Lafora disease, regulates autophagy. Hum Mol Genet 2010; 19:2867-76; PMID:20453062; http://dx.doi.org/10.1093/hmg/ ddq190
-
(2010)
Hum Mol Genet
, vol.19
, pp. 2867-2876
-
-
Aguado, C.1
Sarkar, S.2
Korolchuk, V.I.3
Criado, O.4
Vernia, S.5
Boya, P.6
-
185
-
-
26944460775
-
Unifying nomenclature for the isoforms of the lysosomal membrane protein LAMP-2
-
PMID:16190986
-
Eskelinen E-L, Cuervo AM, Taylor MR, Nishino I, Blum JS, Dice JF, et al. Unifying nomenclature for the isoforms of the lysosomal membrane protein LAMP-2. Traffic 2005; 6:1058-61; PMID:16190986; http://dx.doi.org/10.1111/j.1600-0854. 2005.00337.x
-
(2005)
Traffic
, vol.6
, pp. 1058-1061
-
-
Eskelinen, E.-L.1
Cuervo, A.M.2
Taylor, M.R.3
Nishino, I.4
Blum, J.S.5
Dice, J.F.6
-
186
-
-
0036735949
-
Role of LAMP-2 in lysosome biogenesis and autophagy
-
DOI 10.1091/mbc.E02-02-0114
-
Eskelinen E-L, Illert A, Tanaka Y, Schwarzmann G, Blanz J, Von Figura K, et al. Role of LAMP-2 in lysosome biogenesis and autophagy. Mol Biol Cell 2002; 13:3355-68 (Pubitemid 35034269)
-
(2002)
Molecular Biology of the Cell
, vol.13
, Issue.9
, pp. 3355-3368
-
-
Eskelinen, E.-L.1
Illert, A.L.2
Tanaka, Y.3
Schwarzmann, G.4
Blanz, J.5
Von Figura, K.6
Saftig, P.7
-
187
-
-
3042760943
-
Disturbed cholesterol traffic but normal proteolytic function in LAMP-1/LAMP-2 double-deficient fibroblasts
-
PMID:15121881
-
Eskelinen E-L, Schmidt C, Neu S, Willenborg M, Fuertes G, Salvador N, et al. Disturbed cholesterol traffic but normal proteolytic function in LAMP-1/LAMP-2 double-deficient fibroblasts. Mol Biol Cell 2004; 15:3132-45; PMID:15121881; http://dx.doi. org/10.1091/mbc.E04-02-0103
-
(2004)
Mol Biol Cell
, vol.15
, pp. 3132-3145
-
-
Eskelinen, E.-L.1
Schmidt, C.2
Neu, S.3
Willenborg, M.4
Fuertes, G.5
Salvador, N.6
-
188
-
-
19244384656
-
Accumulation of autophagic vacuoles and cardiomyopathy in Lamp-2-deficient mice
-
PMID:10972293
-
Tanaka Y, Guhde G, Suter A, Eskelinen E-L, Hartmann D, Lullmann-Rauch R, et al. Accumulation of autophagic vacuoles and cardiomyopathy in Lamp-2-deficient mice. Nature 2000; 406:902-6; PMID:10972293; http://dx.doi.org/10.1038/35022595
-
(2000)
Nature
, vol.406
, pp. 902-906
-
-
Tanaka, Y.1
Guhde, G.2
Suter, A.3
Eskelinen, E.-L.4
Hartmann, D.5
Lullmann-Rauch, R.6
-
189
-
-
0034329418
-
LC3, a mammalian homolog of yeast Apg8p, is localized in autophagosome membranes after processing
-
PMID:11060023
-
Kabeya Y, Mizushima N, Ueno T, Yamamoto A, Kirisako T, Noda T, et al. LC3, a mammalian homolog of yeast Apg8p, is localized in autophagosome membranes after processing. EMBO J 2000; 19:5720-8; PMID:11060023; http://dx.doi.org/10. 1093/emboj/19.21.5720
-
(2000)
EMBO J
, vol.19
, pp. 5720-5728
-
-
Kabeya, Y.1
Mizushima, N.2
Ueno, T.3
Yamamoto, A.4
Kirisako, T.5
Noda, T.6
-
190
-
-
77955875002
-
Regulation of the autophagy protein LC3 by phosphorylation
-
PMID:20713600
-
Cherra SJ, III, Kulich SM, Uechi G, Balasubramani M, Mountzouris J, Day BW, et al. Regulation of the autophagy protein LC3 by phosphorylation. J Cell Biol 2010; 190:533-9; PMID:20713600; http://dx.doi. org/10.1083/jcb.201002108
-
(2010)
J Cell Biol
, vol.190
, pp. 533-539
-
-
Cherra III, S.J.1
Kulich, S.M.2
Uechi, G.3
Balasubramani, M.4
Mountzouris, J.5
Day, B.W.6
-
191
-
-
37549043217
-
Toll-like receptor signalling in macrophages links the autophagy pathway to phagocytosis
-
PMID:18097414
-
Sanjuan MA, Dillon CP, Tait SW, Moshiach S, Dorsey F, Connell S, et al. Toll-like receptor signalling in macrophages links the autophagy pathway to phagocytosis. Nature 2007; 450:1253-7; PMID:18097414; http://dx.doi.org/10.1038/ nature06421
-
(2007)
Nature
, vol.450
, pp. 1253-1257
-
-
Sanjuan, M.A.1
Dillon, C.P.2
Tait, S.W.3
Moshiach, S.4
Dorsey, F.5
Connell, S.6
-
192
-
-
65949095803
-
Autophagy regulates lipid metabolism
-
PMID:19339967
-
Singh R, Kaushik S, Wang Y, Xiang Y, Novak I, Komatsu M, et al. Autophagy regulates lipid metabolism. Nature 2009; 458:1131-5; PMID:19339967; http://dx.doi.org/10.1038/nature07976
-
(2009)
Nature
, vol.458
, pp. 1131-1135
-
-
Singh, R.1
Kaushik, S.2
Wang, Y.3
Xiang, Y.4
Novak, I.5
Komatsu, M.6
-
193
-
-
60849099049
-
A role for NBR1 in autophagosomal degradation of ubiquitinated substrates
-
PMID:19250911
-
Kirkin V, Lamark T, Sou YS, Bjørkøy G, Nunn JL, Bruun JA, et al. A role for NBR1 in autophagosomal degradation of ubiquitinated substrates. Mol Cell 2009; 33:505-16; PMID:19250911; http://dx.doi. org/10.1016/j.molcel.2009.01.020
-
(2009)
Mol Cell
, vol.33
, pp. 505-516
-
-
Kirkin, V.1
Lamark, T.2
Sou, Y.S.3
Bjørkøy, G.4
Nunn, J.L.5
Bruun, J.A.6
-
194
-
-
33947250696
-
The energy sensing LKB1-AMPK pathway regulates p27(kip1) phosphorylation mediating the decision to enter autophagy or apoptosis
-
PMID:17237771
-
Liang J, Shao SH, Xu ZX, Hennessy B, Ding Z, Larrea M, et al. The energy sensing LKB1-AMPK pathway regulates p27(kip1) phosphorylation mediating the decision to enter autophagy or apoptosis. Nat Cell Biol 2007; 9:218-24; PMID:17237771; http://dx.doi. org/10.1038/ncb1537
-
(2007)
Nat Cell Biol
, vol.9
, pp. 218-224
-
-
Liang, J.1
Shao, S.H.2
Xu, Z.X.3
Hennessy, B.4
Ding, Z.5
Larrea, M.6
-
195
-
-
34248583762
-
Methods for monitoring autophagy from yeast to human
-
PMID:17224625
-
Klionsky DJ, Cuervo AM, Seglen PO. Methods for monitoring autophagy from yeast to human. Autophagy 2007; 3:181-206; PMID:17224625
-
(2007)
Autophagy
, vol.3
, pp. 181-206
-
-
Klionsky, D.J.1
Cuervo, A.M.2
Seglen, P.O.3
-
196
-
-
79953211917
-
Nutrient starvation elicits an acute autophagic response mediated by Ulk1 dephosphorylation and its subsequent dissociation from AMPK
-
PMID:21383122
-
Shang L, Chen S, Du F, Li S, Zhao L, Wang X. Nutrient starvation elicits an acute autophagic response mediated by Ulk1 dephosphorylation and its subsequent dissociation from AMPK. Proc Natl Acad Sci USA 2011; 108:4788-93; PMID:21383122; http://dx.doi.org/10.1073/pnas.1100844108
-
(2011)
Proc Natl Acad Sci USA
, vol.108
, pp. 4788-4793
-
-
Shang, L.1
Chen, S.2
Du, F.3
Li, S.4
Zhao, L.5
Wang, X.6
-
197
-
-
79953171152
-
Lucanthone is a novel inhibitor of autophagy that induces cathepsin D-mediated apoptosis
-
PMID:21148553
-
Carew JS, Espitia CM, Esquivel JA, II, Mahalingam D, Kelly KR, Reddy G, et al. Lucanthone is a novel inhibitor of autophagy that induces cathepsin D-mediated apoptosis. J Biol Chem 2011; 286:6602-13; PMID:21148553; http://dx.doi.org/10.1074/jbc. M110.151324
-
(2011)
J Biol Chem
, vol.286
, pp. 6602-6613
-
-
Carew, J.S.1
Espitia, C.M.2
Esquivel II, J.A.3
Mahalingam, D.4
Kelly, K.R.5
Reddy, G.6
-
198
-
-
39549117093
-
Role of autophagy in G2019S-LRRK2-associated neurite shortening in differentiated SH-SY5Y cells
-
PMID:18182054
-
Plowey ED, Cherra SJ, III, Liu YJ, Chu CT. Role of autophagy in G2019S-LRRK2-associated neurite shortening in differentiated SH-SY5Y cells. J Neurochem 2008; 105:1048-56; PMID:18182054; http://dx.doi.org/10.1111/j.1471- 4159.2008.05217.x
-
(2008)
J Neurochem
, vol.105
, pp. 1048-1056
-
-
Plowey, E.D.1
Cherra III, S.J.2
Liu, Y.J.3
Chu, C.T.4
-
199
-
-
70349991886
-
LRRK2 regulates autophagic activity and localizes to specific membrane microdomains in a novel human genomic reporter cellular model
-
PMID:19640926
-
Alegre-Abarrategui J, Christian H, Lufino MM, Mutihac R, Venda LL, Ansorge O, et al. LRRK2 regulates autophagic activity and localizes to specific membrane microdomains in a novel human genomic reporter cellular model. Hum Mol Genet 2009; 18:4022-34; PMID:19640926; http://dx.doi. org/10.1093/hmg/ddp346
-
(2009)
Hum Mol Genet
, vol.18
, pp. 4022-4034
-
-
Alegre-Abarrategui, J.1
Christian, H.2
Lufino, M.M.3
Mutihac, R.4
Venda, L.L.5
Ansorge, O.6
-
200
-
-
79952742148
-
Human leucine-rich repeat proteins: A genome-wide bioinformatic categorization and functional analysis in innate immunity
-
PMID:20616063
-
Ng ACY, Eisenberg JM, Heath RJW, Huett A, Robinson CM, Nau GJ, et al. Human leucine-rich repeat proteins: a genome-wide bioinformatic categorization and functional analysis in innate immunity. Proc Natl Acad Sci USA 2011; 108:4631-8; PMID:20616063; http://dx.doi.org/10.1073/pnas.1000093107
-
(2011)
Proc Natl Acad Sci USA
, vol.108
, pp. 4631-4638
-
-
Ng, A.C.Y.1
Eisenberg, J.M.2
Heath, R.J.W.3
Huett, A.4
Robinson, C.M.5
Nau, G.J.6
-
201
-
-
8044257699
-
The phosphatidylinositol-3-kinase inhibitors wortmannin and LY294002 inhibit autophagy in isolated rat hepatocytes
-
PMID:9030745
-
Blommaart EF, Krause U, Schellens JP, Vreeling-Sindelarova H, Meijer AJ. The phosphatidylinositol-3-kinase inhibitors wortmannin and LY294002 inhibit autophagy in isolated rat hepatocytes. Eur J Biochem 1997; 243:240-6; PMID:9030745; http://dx.doi. org/10.1111/j.1432-033.1997.0240a.x
-
(1997)
Eur J Biochem
, vol.243
, pp. 240-246
-
-
Blommaart, E.F.1
Krause, U.2
Schellens, J.P.3
Vreeling-Sindelarova, H.4
Meijer, A.J.5
-
202
-
-
0028836002
-
Monodansylcadaverine (MDC) is a specific in vivo marker for autophagic vacuoles
-
PMID:7750517
-
Biederbick A, Kern HF, Elsasser HP. Monodansylcadaverine (MDC) is a specific in vivo marker for autophagic vacuoles. Eur J Cell Biol 1995; 66:3-14; PMID:7750517
-
(1995)
Eur J Cell Biol
, vol.66
, pp. 3-14
-
-
Biederbick, A.1
Kern, H.F.2
Elsasser, H.P.3
-
203
-
-
38949108670
-
Guidelines for the use and interpretation of assays for monitoring autophagy in higher eukaryotes
-
PMID:18188003
-
Klionsky DJ, Abeliovich H, Agostinis P, Agrawal DK, Aliev G, Askew DS, et al. Guidelines for the use and interpretation of assays for monitoring autophagy in higher eukaryotes. Autophagy 2008; 4:151-75; PMID:18188003
-
(2008)
Autophagy
, vol.4
, pp. 151-175
-
-
Klionsky, D.J.1
Abeliovich, H.2
Agostinis, P.3
Agrawal, D.K.4
Aliev, G.5
Askew, D.S.6
-
204
-
-
0038263977
-
Peroxisome degradation requires catalytically active sterol glucosyltransferase with a GRAM domain
-
PMID:12839986
-
Oku M, Warnecke D, Noda T, Muller F, Heinz E, Mukaiyama H, et al. Peroxisome degradation requires catalytically active sterol glucosyltransferase with a GRAM domain. EMBO J 2003; 22:3231-41; PMID:12839986; http://dx.doi.org/ 10.1093/emboj/cdg331
-
(2003)
EMBO J
, vol.22
, pp. 3231-3241
-
-
Oku, M.1
Warnecke, D.2
Noda, T.3
Muller, F.4
Heinz, E.5
Mukaiyama, H.6
-
205
-
-
16844366524
-
Selective mitochondrial autophagy or mitophagy, as a targeted defense against oxidative stress, mitochondrial dysfunction and aging
-
PMID:15798367
-
Lemasters JJ. Selective mitochondrial autophagy or mitophagy, as a targeted defense against oxidative stress, mitochondrial dysfunction and aging. Rejuvenation Res 2005; 8:3-5; PMID:15798367; http://dx.doi. org/10.1089/rej. 2005.8.3
-
(2005)
Rejuvenation Res
, vol.8
, pp. 3-5
-
-
Lemasters, J.J.1
-
206
-
-
77951708056
-
Modulation of local PtdIns3P levels by the PI phosphatase MTMR3 regulates constitutive autophagy
-
PMID:20059746
-
Taguchi-Atarashi N, Hamasaki M, Matsunaga K, Omori H, Ktistakis NT, Yoshimori T, et al. Modulation of local PtdIns3P levels by the PI phosphatase MTMR3 regulates constitutive autophagy. Traffic 2010; 11:468-78; PMID:20059746; http://dx.doi.org/10.1111/j.1600-0854.2010.01034.x
-
(2010)
Traffic
, vol.11
, pp. 468-478
-
-
Taguchi-Atarashi, N.1
Hamasaki, M.2
Matsunaga, K.3
Omori, H.4
Ktistakis, N.T.5
Yoshimori, T.6
-
207
-
-
65549094988
-
Activation of antibacterial autophagy by NADPH oxidases
-
PMID:19339495
-
Huang J, Canadien V, Lam GY, Steinberg BE, Dinauer MC, Magalhaes MA, et al. Activation of antibacterial autophagy by NADPH oxidases. Proc Natl Acad Sci USA 2009; 106:6226-31; PMID:19339495; http://dx.doi.org/10.1073/pnas.0811045106
-
(2009)
Proc Natl Acad Sci USA
, vol.106
, pp. 6226-6231
-
-
Huang, J.1
Canadien, V.2
Lam, G.Y.3
Steinberg, B.E.4
Dinauer, M.C.5
Magalhaes, M.A.6
-
208
-
-
76349114046
-
Antagonism of Beclin 1-dependent autophagy by BCL-2 at the endoplasmic reticulum requires NAF-1
-
PMID:20010695
-
Chang NC, Nguyen M, Germain M, Shore GC. Antagonism of Beclin 1-dependent autophagy by BCL-2 at the endoplasmic reticulum requires NAF-1. EMBO J 2010; 29:606-18; PMID:20010695; http://dx.doi.org/10.1038/emboj.2009.369
-
(2010)
EMBO J
, vol.29
, pp. 606-618
-
-
Chang, N.C.1
Nguyen, M.2
Germain, M.3
Shore, G.C.4
-
209
-
-
66149104113
-
Cisd2 deficiency drives premature aging and causes mitochondria-mediated defects in mice
-
PMID:19451219
-
Chen YF, Kao CH, Chen YT, Wang CH, Wu CY, Tsai CY, et al. Cisd2 deficiency drives premature aging and causes mitochondria-mediated defects in mice. Genes Dev 2009; 23:1183-94; PMID:19451219; http://dx.doi.org/10.1101/gad. 1779509
-
(2009)
Genes Dev
, vol.23
, pp. 1183-1194
-
-
Chen, Y.F.1
Kao, C.H.2
Chen, Y.T.3
Wang, C.H.4
Wu, C.Y.5
Tsai, C.Y.6
-
210
-
-
70350450808
-
The TBK1 adaptor and autophagy receptor NDP52 restricts the proliferation of ubiquitin-coated bacteria
-
PMID:19820708
-
Thurston TL, Ryzhakov G, Bloor S, von Muhlinen N, Randow F. The TBK1 adaptor and autophagy receptor NDP52 restricts the proliferation of ubiquitin-coated bacteria. Nat Immunol 2009; 10:1215-21; PMID:19820708; http://dx.doi.org/10.1038/ni.1800
-
(2009)
Nat Immunol
, vol.10
, pp. 1215-1221
-
-
Thurston, T.L.1
Ryzhakov, G.2
Bloor, S.3
Von Muhlinen, N.4
Randow, F.5
-
211
-
-
57649181391
-
Identification of a molecular signaling network that regulates a cellular necrotic cell death pathway
-
PMID:19109899
-
Hitomi J, Christofferson DE, Ng A, Yao J, Degterev A, Xavier RJ, et al. Identification of a molecular signaling network that regulates a cellular necrotic cell death pathway. Cell 2008; 135:1311-23; PMID:19109899; http://dx.doi.org/10.1016/j.cell.2008.10.044
-
(2008)
Cell
, vol.135
, pp. 1311-1323
-
-
Hitomi, J.1
Christofferson, D.E.2
Ng, A.3
Yao, J.4
Degterev, A.5
Xavier, R.J.6
-
212
-
-
77951171023
-
Induction of autophagy-dependent necroptosis is required for childhood acute lymphoblastic leukemia cells to overcome glucocorticoid resistance
-
PMID:20200450
-
Bonapace L, Bornhauser BC, Schmitz M, Cario G, Ziegler U, Niggli FK, et al. Induction of autophagy-dependent necroptosis is required for childhood acute lymphoblastic leukemia cells to overcome glucocorticoid resistance. J Clin Invest 2010; 120:1310-23; PMID:20200450; http://dx.doi.org/10.1172/JCI39987
-
(2010)
J Clin Invest
, vol.120
, pp. 1310-1323
-
-
Bonapace, L.1
Bornhauser, B.C.2
Schmitz, M.3
Cario, G.4
Ziegler, U.5
Niggli, F.K.6
-
213
-
-
34250878386
-
Regulation of autophagy by NFκB transcription factor and reactives oxygen species
-
PMID:17471012
-
Djavaheri-Mergny M, Amelotti M, Mathieu J, Besancon F, Bauvy C, Codogno P. Regulation of autophagy by NFκB transcription factor and reactives oxygen species. Autophagy 2007; 3:390-2; PMID:17471012
-
(2007)
Autophagy
, vol.3
, pp. 390-392
-
-
Djavaheri-Mergny, M.1
Amelotti, M.2
Mathieu, J.3
Besancon, F.4
Bauvy, C.5
Codogno, P.6
-
214
-
-
37649017266
-
NIX is required for programmed mitochondrial clearance during reticulocyte maturation
-
PMID:18048346
-
Schweers RL, Zhang J, Randall MS, Loyd MR, Li W, Dorsey FC, et al. NIX is required for programmed mitochondrial clearance during reticulocyte maturation. Proc Natl Acad Sci USA 2007; 104:19500-5; PMID:18048346; http://dx.doi.org/10. 1073/pnas.0708818104
-
(2007)
Proc Natl Acad Sci USA
, vol.104
, pp. 19500-19505
-
-
Schweers, R.L.1
Zhang, J.2
Randall, M.S.3
Loyd, M.R.4
Li, W.5
Dorsey, F.C.6
-
215
-
-
73849121209
-
Nod1 and Nod2 direct autophagy by recruiting ATG16L1 to the plasma membrane at the site of bacterial entry
-
PMID:19898471
-
Travassos LH, Carneiro LA, Ramjeet M, Hussey S, Kim YG, Magalhaes JG, et al. Nod1 and Nod2 direct autophagy by recruiting ATG16L1 to the plasma membrane at the site of bacterial entry. Nat Immunol 2010; 11:55-62; PMID:19898471; http://dx.doi. org/10.1038/ni.1823
-
(2010)
Nat Immunol
, vol.11
, pp. 55-62
-
-
Travassos, L.H.1
Carneiro, L.A.2
Ramjeet, M.3
Hussey, S.4
Kim, Y.G.5
Magalhaes, J.G.6
-
216
-
-
58149104300
-
Non-canonical autophagy: An exception or an underestimated form of autophagy?
-
PMID:18849663
-
Scarlatti F, Maffei R, Beau I, Ghidoni R, Codogno P. Non-canonical autophagy: an exception or an underestimated form of autophagy? Autophagy 2008; 4:1083-5; PMID:18849663
-
(2008)
Autophagy
, vol.4
, pp. 1083-1085
-
-
Scarlatti, F.1
Maffei, R.2
Beau, I.3
Ghidoni, R.4
Codogno, P.5
-
217
-
-
70349687405
-
Discovery of Atg5/Atg7-independent alternative macroautophagy
-
PMID:19794493
-
Nishida Y, Arakawa S, Fujitani K, Yamaguchi H, Mizuta T, Kanaseki T, et al. Discovery of Atg5/Atg7-independent alternative macroautophagy. Nature 2009; 461:654-8; PMID:19794493; http://dx.doi. org/10.1038/nature08455
-
(2009)
Nature
, vol.461
, pp. 654-658
-
-
Nishida, Y.1
Arakawa, S.2
Fujitani, K.3
Yamaguchi, H.4
Mizuta, T.5
Kanaseki, T.6
-
218
-
-
79952422876
-
OATL1, a novel autophagosome-resident Rab33BGAP, regulates autophagosomal maturation
-
PMID:21383079
-
Itoh T, Kanno E, Uemura T, Waguri S, Fukuda M. OATL1, a novel autophagosome-resident Rab33BGAP, regulates autophagosomal maturation. J Cell Biol 2011; 192:839-53; PMID:21383079; http://dx.doi. org/10.1083/jcb.201008107
-
(2011)
J Cell Biol
, vol.192
, pp. 839-853
-
-
Itoh, T.1
Kanno, E.2
Uemura, T.3
Waguri, S.4
Fukuda, M.5
-
219
-
-
77957840160
-
Omi/HtrA2 is a positive regulator of autophagy that facilitates the degradation of mutant proteins involved in neurodegenerative diseases
-
PMID:20467442
-
Li B, Hu Q, Wang H, Man N, Ren H, Wen L, et al. Omi/HtrA2 is a positive regulator of autophagy that facilitates the degradation of mutant proteins involved in neurodegenerative diseases. Cell Death Differ 2010; 17:1773-84; PMID:20467442; http://dx.doi.org/10.1038/cdd.2010.55
-
(2010)
Cell Death Differ
, vol.17
, pp. 1773-1784
-
-
Li, B.1
Hu, Q.2
Wang, H.3
Man, N.4
Ren, H.5
Wen, L.6
-
220
-
-
77950899469
-
Deficiency of the transcriptional regulator p8 results in increased autophagy and apoptosis, and causes impaired heart function
-
PMID:20181828
-
Kong DK, Georgescu SP, Cano C, Aronovitz MJ, Iovanna JL, Patten RD, et al. Deficiency of the transcriptional regulator p8 results in increased autophagy and apoptosis, and causes impaired heart function. Mol Biol Cell 2010; 21:1335-49; PMID:20181828; http://dx.doi.org/10.1091/mbc.E09-09-0818
-
(2010)
Mol Biol Cell
, vol.21
, pp. 1335-1349
-
-
Kong, D.K.1
Georgescu, S.P.2
Cano, C.3
Aronovitz, M.J.4
Iovanna, J.L.5
Patten, R.D.6
-
221
-
-
75649085703
-
Coordinated regulation of autophagy by p38α MAPK through mAtg9 and p38IP
-
PMID:19893488
-
Webber JL, Tooze SA. Coordinated regulation of autophagy by p38α MAPK through mAtg9 and p38IP. EMBO J 2010; 29:27-40; PMID:19893488; http://dx.doi.org/10.1038/emboj.2009.321
-
(2010)
EMBO J
, vol.29
, pp. 27-40
-
-
Webber, J.L.1
Tooze, S.A.2
-
222
-
-
53549122987
-
The effects of p53 on whole organism longevity are mediated by autophagy
-
PMID:18728385
-
Tavernarakis N, Pasparaki A, Tasdemir E, Maiuri MC, Kroemer G. The effects of p53 on whole organism longevity are mediated by autophagy. Autophagy 2008; 4:870-3; PMID:18728385
-
(2008)
Autophagy
, vol.4
, pp. 870-873
-
-
Tavernarakis, N.1
Pasparaki, A.2
Tasdemir, E.3
Maiuri, M.C.4
Kroemer, G.5
-
223
-
-
27944504351
-
P62/SQSTM1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death
-
PMID:16286508
-
Bjørkøy G, Lamark T, Brech A, Outzen H, Perander M, Øvervatn A, et al. p62/SQSTM1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death. J Cell Biol 2005; 171:603-14; PMID:16286508; http://dx.doi. org/10.1083/jcb.200507002
-
(2005)
J Cell Biol
, vol.171
, pp. 603-614
-
-
Bjørkøy, G.1
Lamark, T.2
Brech, A.3
Outzen, H.4
Perander, M.5
Øvervatn, A.6
-
224
-
-
78349244834
-
The class IA phosphatidylinositol-3-kinase p110β subunit is a positive regulator of autophagy
-
PMID:21059846
-
Dou Z, Chattopadhyay M, Pan JA, Guerriero JL, Jiang YP, Ballou LM, et al. The class IA phosphatidylinositol-3-kinase p110β subunit is a positive regulator of autophagy. J Cell Biol 2010; 191:827-43; PMID:21059846; http://dx.doi.org/10.1083/jcb.201006056
-
(2010)
J Cell Biol
, vol.191
, pp. 827-843
-
-
Dou, Z.1
Chattopadhyay, M.2
Pan, J.A.3
Guerriero, J.L.4
Jiang, Y.P.5
Ballou, L.M.6
-
225
-
-
58149314211
-
Parkin is recruited selectively to impaired mitochondria and promotes their autophagy
-
PMID:19029340
-
Narendra D, Tanaka A, Suen DF, Youle RJ. Parkin is recruited selectively to impaired mitochondria and promotes their autophagy. J Cell Biol 2008; 183:795-803; PMID:19029340; http://dx.doi.org/10.1083/jcb.200809125
-
(2008)
J Cell Biol
, vol.183
, pp. 795-803
-
-
Narendra, D.1
Tanaka, A.2
Suen, D.F.3
Youle, R.J.4
-
226
-
-
79955410000
-
Functional alteration of PARL contributes to mitochondrial dysregulation in Parkinson's disease
-
Shi G, Lee JR, Grimes DA, Racacho L, Ye D, Yang H, et al. Functional alteration of PARL contributes to mitochondrial dysregulation in Parkinson's disease. Hum Mol Genet 2011; 20:1966-74
-
(2011)
Hum Mol Genet
, vol.20
, pp. 1966-1974
-
-
Shi, G.1
Lee, J.R.2
Grimes, D.A.3
Racacho, L.4
Ye, D.5
Yang, H.6
-
227
-
-
58149380360
-
PARP-1 is involved in autophagy induced by DNA damage
-
PMID:19001878
-
Muñoz-Gámez JA, Rodriguez-Vargas JM, Quiles-Perez R, Aguilar-Quesada R, Martin-Oliva D, de Murcia G, et al. PARP-1 is involved in autophagy induced by DNA damage. Autophagy 2009; 5:61-74; PMID:19001878; http://dx.doi.org/10.4161/auto.5.1.7272
-
(2009)
Autophagy
, vol.5
, pp. 61-74
-
-
Muñoz-Gámez, J.A.1
Rodriguez-Vargas, J.M.2
Quiles-Perez, R.3
Aguilar-Quesada, R.4
Martin-Oliva, D.5
De Murcia, G.6
-
228
-
-
58249098507
-
A novel function of poly(ADP-ribose) polymerase-1 in modulation of autophagy and necrosis under oxidative stress
-
PMID:18974775
-
Huang Q, Wu YT, Tan HL, Ong CN, Shen H-M. A novel function of poly(ADP-ribose) polymerase-1 in modulation of autophagy and necrosis under oxidative stress. Cell Death Differ 2009; 16:264-77; PMID:18974775; http://dx.doi.org/10.1038/cdd.2008.151
-
(2009)
Cell Death Differ
, vol.16
, pp. 264-277
-
-
Huang, Q.1
Wu, Y.T.2
Tan, H.L.3
Ong, C.N.4
Shen, H.-M.5
-
229
-
-
34248581861
-
Atg9 trafficking in autophagy-related pathways
-
PMID:17329962
-
He C, Klionsky DJ. Atg9 trafficking in autophagy-related pathways. Autophagy 2007; 3:271-4; PMID:17329962
-
(2007)
Autophagy
, vol.3
, pp. 271-274
-
-
He, C.1
Klionsky, D.J.2
-
230
-
-
0035503594
-
The pre-autophagosomal structure organized by concerted functions of APG genes is essential for autophagosome formation
-
PMID:11689437
-
Suzuki K, Kirisako T, Kamada Y, Mizushima N, Noda T, Ohsumi Y. The pre-autophagosomal structure organized by concerted functions of APG genes is essential for autophagosome formation. EMBO J 2001; 20:5971-81; PMID:11689437; http://dx.doi. org/10.1093/emboj/20.21.5971
-
(2001)
EMBO J
, vol.20
, pp. 5971-5981
-
-
Suzuki, K.1
Kirisako, T.2
Kamada, Y.3
Mizushima, N.4
Noda, T.5
Ohsumi, Y.6
-
231
-
-
77954381442
-
The PEA-15 protein regulates autophagy via activation of JNK
-
PMID:20452983
-
Böck BC, Tagscherer KE, Fassl A, Kramer A, Oehme I, Zentgraf HW, et al. The PEA-15 protein regulates autophagy via activation of JNK. J Biol Chem 2010; 285:21644-54; PMID:20452983; http://dx.doi. org/10.1074/jbc.M109.096628
-
(2010)
J Biol Chem
, vol.285
, pp. 21644-21654
-
-
Böck, B.C.1
Tagscherer, K.E.2
Fassl, A.3
Kramer, A.4
Oehme, I.5
Zentgraf, H.W.6
-
232
-
-
70349768075
-
A small molecule inhibitor of inducible heat shock protein 70
-
PMID:19818706
-
Leu JI-J, Pimkina J, Frank A, Murphy ME, George DL. A small molecule inhibitor of inducible heat shock protein 70. Mol Cell 2009; 36:15-27; PMID:19818706; http://dx.doi.org/10.1016/j.molcel.2009.09.023
-
(2009)
Mol Cell
, vol.36
, pp. 15-27
-
-
Leu, J.I.-J.1
Pimkina, J.2
Frank, A.3
Murphy, M.E.4
George, D.L.5
-
233
-
-
0030917085
-
Protein transport from the cytoplasm into the vacuole
-
PMID:9151652
-
Klionsky DJ. Protein transport from the cytoplasm into the vacuole. J Membr Biol 1997; 157:105-15; PMID:9151652; http://dx.doi.org/10.1007/ s002329900220
-
(1997)
J Membr Biol
, vol.157
, pp. 105-115
-
-
Klionsky, D.J.1
-
235
-
-
57349198328
-
Piecemeal microautophagy of the nucleus requires the core macroautophagy genes
-
PMID:18701704
-
Krick R, Muehe Y, Prick T, Bremer S, Schlotterhose P, Eskelinen E-L, et al. Piecemeal microautophagy of the nucleus requires the core macroautophagy genes. Mol Biol Cell 2008; 19:4492-505; PMID:18701704; http://dx.doi.org/10. 1091/mbc.E08-04-0363
-
(2008)
Mol Biol Cell
, vol.19
, pp. 4492-4505
-
-
Krick, R.1
Muehe, Y.2
Prick, T.3
Bremer, S.4
Schlotterhose, P.5
Eskelinen, E.-L.6
-
236
-
-
0037243892
-
Piecemeal microautophagy of nucleus in Saccharomyces cerevisiae
-
PMID:12529432
-
Roberts P, Moshitch-Moshkovitz S, Kvam E, O'Toole E, Winey M, Goldfarb DS. Piecemeal microautophagy of nucleus in Saccharomyces cerevisiae. Mol Biol Cell 2003; 14:129-41; PMID:12529432; http://dx.doi. org/10.1091/mbc.E02-08-0483
-
(2003)
Mol Biol Cell
, vol.14
, pp. 129-141
-
-
Roberts, P.1
Moshitch-Moshkovitz, S.2
Kvam, E.3
O'Toole, E.4
Winey, M.5
Goldfarb, D.S.6
-
237
-
-
77953877676
-
A pivotal role for PINK1 and autophagy in mitochondrial quality control: Implications for Parkinson disease
-
PMID:20385539
-
Chu CT. A pivotal role for PINK1 and autophagy in mitochondrial quality control: implications for Parkinson disease. Hum Mol Genet 2010; 19:28-37; PMID:20385539; http://dx.doi.org/10.1093/hmg/ddq143
-
(2010)
Hum Mol Genet
, vol.19
, pp. 28-37
-
-
Chu, C.T.1
-
238
-
-
67649399288
-
Loss of PINK1 function promotes mitophagy through effects on oxidative stress and mitochondrial fission
-
PMID:19279012
-
Dagda RK, Cherra SJ, III, Kulich SM, Tandon A, Park D, Chu CT. Loss of PINK1 function promotes mitophagy through effects on oxidative stress and mitochondrial fission. J Biol Chem 2009; 284:13843-55; PMID:19279012; http://dx.doi.org/10.1074/jbc. M808515200
-
(2009)
J Biol Chem
, vol.284
, pp. 13843-13855
-
-
Dagda, R.K.1
Cherra III, S.J.2
Kulich, S.M.3
Tandon, A.4
Park, D.5
Chu, C.T.6
-
239
-
-
75949098487
-
PINK1-dependent recruitment of Parkin to mitochondria in mitophagy
-
PMID:19966284
-
Vives-Bauza C, Zhou C, Huang Y, Cui M, de Vries RL, Kim J, et al. PINK1-dependent recruitment of Parkin to mitochondria in mitophagy. Proc Natl Acad Sci USA 2010; 107:378-83; PMID:19966284; http://dx.doi. org/10.1073/pnas.0911187107
-
(2010)
Proc Natl Acad Sci USA
, vol.107
, pp. 378-383
-
-
Vives-Bauza, C.1
Zhou, C.2
Huang, Y.3
Cui, M.4
De Vries, R.L.5
Kim, J.6
-
240
-
-
2442645050
-
The Ras/cAMP-dependent protein kinase signaling pathway regulates an early step of the autophagy process in Saccharomyces cerevisiae
-
PMID:15016820
-
Budovskaya YV, Stephan JS, Reggiori F, Klionsky DJ, Herman PK. The Ras/cAMP-dependent protein kinase signaling pathway regulates an early step of the autophagy process in Saccharomyces cerevisiae. J Biol Chem 2004; 279:20663-71; PMID:15016820; http://dx.doi. org/10.1074/jbc.M400272200
-
(2004)
J Biol Chem
, vol.279
, pp. 20663-20671
-
-
Budovskaya, Y.V.1
Stephan, J.S.2
Reggiori, F.3
Klionsky, D.J.4
Herman, P.K.5
-
241
-
-
80052385974
-
Bacterial toxins can inhibit host cell autophagy through cAMP generation
-
Shahab S, Namolovan A, Mogridge J, Kim PK, Brumell JH. Bacterial toxins can inhibit host cell autophagy through cAMP generation. Autophagy 2011; 7:957-65
-
(2011)
Autophagy
, vol.7
, pp. 957-965
-
-
Shahab, S.1
Namolovan, A.2
Mogridge, J.3
Kim, P.K.4
Brumell, J.H.5
-
242
-
-
77956310643
-
A diacylglycerol-dependent signaling pathway contributes to regulation of antibacterial autophagy
-
PMID:20674539
-
Shahnazari S, Yen WL, Birmingham CL, Shiu J, Namolovan A, Zheng YT, et al. A diacylglycerol-dependent signaling pathway contributes to regulation of antibacterial autophagy. Cell Host Microbe 2010; 8:137-46; PMID:20674539; http://dx.doi. org/10.1016/j.chom.2010.07.002
-
(2010)
Cell Host Microbe
, vol.8
, pp. 137-146
-
-
Shahnazari, S.1
Yen, W.L.2
Birmingham, C.L.3
Shiu, J.4
Namolovan, A.5
Zheng, Y.T.6
-
243
-
-
33644609471
-
PKR-dependent autophagic degradation of herpes simplex virus type 1
-
PMID:16874088
-
Tallóczy Z, Virgin HW IV, Levine B. PKR-dependent autophagic degradation of herpes simplex virus type 1. Autophagy 2006; 2:24-9; PMID:16874088
-
(2006)
Autophagy
, vol.2
, pp. 24-29
-
-
Tallóczy, Z.1
Virgin IV, H.W.2
Levine, B.3
-
244
-
-
47849094901
-
Autophagic control of listeria through intracellular innate immune recognition in drosophila
-
PMID:18604211
-
Yano T, Mita S, Ohmori H, Oshima Y, Fujimoto Y, Ueda R, et al. Autophagic control of listeria through intracellular innate immune recognition in drosophila. Nat Immunol 2008; 9:908-16; PMID:18604211; http://dx.doi.org/10. 1038/ni.1634
-
(2008)
Nat Immunol
, vol.9
, pp. 908-916
-
-
Yano, T.1
Mita, S.2
Ohmori, H.3
Oshima, Y.4
Fujimoto, Y.5
Ueda, R.6
-
245
-
-
79251558467
-
Atg35, a micropexophagy-specific protein that regulates micropexophagic apparatus formation in Pichia pastoris
-
Nazarko VY, Nazarko TY, Farre JC, Stasyk OV, Warnecke D, Ulaszewski S, et al. Atg35, a micropexophagy-specific protein that regulates micropexophagic apparatus formation in Pichia pastoris. Autophagy 2011; 7:375-85
-
(2011)
Autophagy
, vol.7
, pp. 375-385
-
-
Nazarko, V.Y.1
Nazarko, T.Y.2
Farre, J.C.3
Stasyk, O.V.4
Warnecke, D.5
Ulaszewski, S.6
-
246
-
-
77953913051
-
Lysosomal proteolysis and autophagy require presenilin 1 and are disrupted by Alzheimer-related PS1 mutations
-
PMID:20541250
-
Lee JH, Yu WH, Kumar A, Lee S, Mohan PS, Peterhoff CM, et al. Lysosomal proteolysis and autophagy require presenilin 1 and are disrupted by Alzheimer-related PS1 mutations. Cell 2010; 141:1146-58; PMID:20541250; http://dx.doi.org/10.1016/j.cell.2010.05.008
-
(2010)
Cell
, vol.141
, pp. 1146-1158
-
-
Lee, J.H.1
Yu, W.H.2
Kumar, A.3
Lee, S.4
Mohan, P.S.5
Peterhoff, C.M.6
-
247
-
-
79951985639
-
Presenilin is necessary for efficient proteolysis through the autophagy-lysosome system in a γ-secretase-independent manner
-
PMID:21414900
-
Neely KM, Green KN, Laferla FM. Presenilin is necessary for efficient proteolysis through the autophagy-lysosome system in a γ-secretase- independent manner. J Neurosci 2011; 31:2781-91; PMID:21414900; http://dx.doi.org/10.1523/JNEUROSCI.5156-10.2010
-
(2011)
J Neurosci
, vol.31
, pp. 2781-2791
-
-
Neely, K.M.1
Green, K.N.2
Laferla, F.M.3
-
248
-
-
79952797615
-
Identification of PTPs as an autophagic phosphatase
-
PMID:21303930
-
Martin KR, Xu Y, Looyenga BD, Davis RJ, Wu CL, Tremblay ML, et al. Identification of PTPs as an autophagic phosphatase. J Cell Sci 2011; 124:812-9; PMID:21303930; http://dx.doi.org/10.1242/jcs.080341
-
(2011)
J Cell Sci
, vol.124
, pp. 812-819
-
-
Martin, K.R.1
Xu, Y.2
Looyenga, B.D.3
Davis, R.J.4
Wu, C.L.5
Tremblay, M.L.6
-
249
-
-
68049105101
-
Rab GTPases as coordinators of vesicle traffic
-
PMID:19603039
-
Stenmark H. Rab GTPases as coordinators of vesicle traffic. Nat Rev Mol Cell Biol 2009; 10:513-25; PMID:19603039; http://dx.doi.org/10.1038/nrm2728
-
(2009)
Nat Rev Mol Cell Biol
, vol.10
, pp. 513-525
-
-
Stenmark, H.1
-
250
-
-
3242877218
-
Rab7 is required for the normal progression of the autophagic pathway in mammalian cells
-
PMID:15138286
-
Gutierrez MG, Munafo DB, Beron W, Colombo MI. Rab7 is required for the normal progression of the autophagic pathway in mammalian cells. J Cell Sci 2004; 117:2687-97; PMID:15138286; http://dx.doi. org/10.1242/jcs.01114
-
(2004)
J Cell Sci
, vol.117
, pp. 2687-2697
-
-
Gutierrez, M.G.1
Munafo, D.B.2
Beron, W.3
Colombo, M.I.4
-
251
-
-
7244255989
-
Role for Rab7 in maturation of late autophagic vacuoles
-
PMID:15340014
-
Jäger S, Bucci C, Tanida I, Ueno T, Kominami E, Saftig P, et al. Role for Rab7 in maturation of late autophagic vacuoles. J Cell Sci 2004; 117:4837-48; PMID:15340014; http://dx.doi.org/10.1242/jcs.01370
-
(2004)
J Cell Sci
, vol.117
, pp. 4837-4848
-
-
Jäger, S.1
Bucci, C.2
Tanida, I.3
Ueno, T.4
Kominami, E.5
Saftig, P.6
-
252
-
-
0036017758
-
Induction of autophagy causes dramatic changes in the subcellular distribution of GFP-Rab24
-
PMID:12047555
-
Munafó DB, Colombo MI. Induction of autophagy causes dramatic changes in the subcellular distribution of GFP-Rab24. Traffic 2002; 3:472-82; PMID:12047555; http://dx.doi.org/10.1034/j.1600-0854.2002.30704.x
-
(2002)
Traffic
, vol.3
, pp. 472-482
-
-
Munafó, D.B.1
Colombo, M.I.2
-
253
-
-
68949214328
-
A small GTPase, human Rab32, is required for the formation of autophagic vacuoles under basal conditions
-
PMID:19593531
-
Hirota Y, Tanaka Y. A small GTPase, human Rab32, is required for the formation of autophagic vacuoles under basal conditions. Cell Mol Life Sci 2009; 66:2913-32; PMID:19593531; http://dx.doi.org/10.1007/s00018-009-0080-9
-
(2009)
Cell Mol Life Sci
, vol.66
, pp. 2913-2932
-
-
Hirota, Y.1
Tanaka, Y.2
-
254
-
-
50249098491
-
Golgi-resident small GTPase Rab33B interacts with Atg16L and modulates autophagosome formation
-
PMID:18448665
-
Itoh T, Fujita N, Kanno E, Yamamoto A, Yoshimori T, Fukuda M. Golgi-resident small GTPase Rab33B interacts with Atg16L and modulates autophagosome formation. Mol Biol Cell 2008; 19:2916-25; PMID:18448665; http://dx.doi.org/10.1091/mbc. E07-12-1231
-
(2008)
Mol Biol Cell
, vol.19
, pp. 2916-2925
-
-
Itoh, T.1
Fujita, N.2
Kanno, E.3
Yamamoto, A.4
Yoshimori, T.5
Fukuda, M.6
-
255
-
-
79952422876
-
OATL1, a novel autophagosome-resident Rab33BGAP, regulates autophagosomal maturation
-
PMID:21383079
-
Itoh T, Kanno E, Uemura T, Waguri S, Fukuda M. OATL1, a novel autophagosome-resident Rab33BGAP, regulates autophagosomal maturation. J Cell Biol 2011; 192:839-53; PMID:21383079; http://dx.doi. org/10.1083/jcb.201008107
-
(2011)
J Cell Biol
, vol.192
, pp. 839-853
-
-
Itoh, T.1
Kanno, E.2
Uemura, T.3
Waguri, S.4
Fukuda, M.5
-
256
-
-
77957234857
-
The Rab GTPase RabG3b functions in autophagy and contributes to tracheary element differentiation in Arabidopsis
-
PMID:20659276
-
Kwon SI, Cho HJ, Jung JH, Yoshimoto K, Shirasu K, Park OK. The Rab GTPase RabG3b functions in autophagy and contributes to tracheary element differentiation in Arabidopsis. Plant J 2010; 64:151-64; PMID:20659276
-
(2010)
Plant J
, vol.64
, pp. 151-164
-
-
Kwon, S.I.1
Cho, H.J.2
Jung, J.H.3
Yoshimoto, K.4
Shirasu, K.5
Park, O.K.6
-
257
-
-
48649085816
-
Regulation of TORC1 by Rag GTPases in nutrient response
-
PMID:18604198
-
Kim E, Goraksha-Hicks P, Li L, Neufeld TP, Guan K-L. Regulation of TORC1 by Rag GTPases in nutrient response. Nat Cell Biol 2008; 10:935-45; PMID:18604198; http://dx.doi.org/10.1038/ncb1753
-
(2008)
Nat Cell Biol
, vol.10
, pp. 935-945
-
-
Kim, E.1
Goraksha-Hicks, P.2
Li, L.3
Neufeld, T.P.4
Guan, K.-L.5
-
258
-
-
77949542302
-
The receptor for advanced glycation end products (RAGE) sustains autophagy and limits apoptosis, promoting pancreatic tumor cell survival
-
PMID:19834494
-
Kang R, Tang D, Schapiro NE, Livesey KM, Farkas A, Loughran P, et al. The receptor for advanced glycation end products (RAGE) sustains autophagy and limits apoptosis, promoting pancreatic tumor cell survival. Cell Death Differ 2010; 17:666-76; PMID:19834494; http://dx.doi.org/10.1038/cdd.2009.149
-
(2010)
Cell Death Differ
, vol.17
, pp. 666-676
-
-
Kang, R.1
Tang, D.2
Schapiro, N.E.3
Livesey, K.M.4
Farkas, A.5
Loughran, P.6
-
259
-
-
80052590666
-
The receptor for advanced glycation end-products (RAGE) protects pancreatic tumor cells against oxidative injury
-
PMID:21126167
-
Kang R, Tang D, Livesey KM, Schapiro N, Lotze MT, Zeh HJ. The receptor for advanced glycation end-products (RAGE) protects pancreatic tumor cells against oxidative injury. Antioxid Redox Signal 2011; 15:2175-84; PMID:21126167; http://dx.doi. org/10.1089/ars.2010.3378
-
(2011)
Antioxid Redox Signal
, vol.15
, pp. 2175-2184
-
-
Kang, R.1
Tang, D.2
Livesey, K.M.3
Schapiro, N.4
Lotze, M.T.5
Zeh, H.J.6
-
260
-
-
77954184503
-
Post-Golgi Sec proteins are required for autophagy in Saccharomyces cerevisiae
-
PMID:20444978
-
Geng J, Nair U, Yasumura-Yorimitsu K, Klionsky DJ. Post-Golgi Sec proteins are required for autophagy in Saccharomyces cerevisiae. Mol Biol Cell 2010; 21:2257-69; PMID:20444978; http://dx.doi.org/10.1091/mbc. E09-11-0969
-
(2010)
Mol Biol Cell
, vol.21
, pp. 2257-2269
-
-
Geng, J.1
Nair, U.2
Yasumura-Yorimitsu, K.3
Klionsky, D.J.4
-
261
-
-
78049262912
-
The RB-E2F1 pathway regulates autophagy
-
PMID:20807803
-
Jiang H, Martin V, Gomez-Manzano C, Johnson DG, Alonso M, White E, et al. The RB-E2F1 pathway regulates autophagy. Cancer Res 2010; 70:7882-93; PMID:20807803; http://dx.doi.org/10.1158/0008-5472.CAN-10-1604
-
(2010)
Cancer Res
, vol.70
, pp. 7882-7893
-
-
Jiang, H.1
Martin, V.2
Gomez-Manzano, C.3
Johnson, D.G.4
Alonso, M.5
White, E.6
-
262
-
-
34247186472
-
Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4
-
PMID:17347651
-
Scherz-Shouval R, Shvets E, Fass E, Shorer H, Gil L, Elazar Z. Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4. EMBO J 2007; 26:1749-60; PMID:17347651; http://dx.doi.org/10. 1038/sj.emboj.7601623
-
(2007)
EMBO J
, vol.26
, pp. 1749-1760
-
-
Scherz-Shouval, R.1
Shvets, E.2
Fass, E.3
Shorer, H.4
Gil, L.5
Elazar, Z.6
-
263
-
-
52449146523
-
Filipin labelling and intramembrane particles on the membranes of early and later autophagic vacuoles in Ehrlich ascites cells
-
PMID:2451345
-
Punnonen E-L, Reunanen H, Hirsimaki P, Lounatmaa K. Filipin labelling and intramembrane particles on the membranes of early and later autophagic vacuoles in Ehrlich ascites cells. Virchows Arch B Cell Pathol Incl Mol Pathol 1988; 54:317-26; PMID:2451345; http://dx.doi.org/10.1007/BF02899229
-
(1988)
Virchows Arch B Cell Pathol Incl Mol Pathol
, vol.54
, pp. 317-326
-
-
Punnonen, E.-L.1
Reunanen, H.2
Hirsimaki, P.3
Lounatmaa, K.4
-
264
-
-
1642556763
-
Resveratrol-induced autophagocytosis in ovarian cancer cells
-
PMID:14744787
-
Opipari AW, Tan L, Boitano AE, Sorenson DR, Aurora A, Liu JR. Resveratrol-induced autophagocytosis in ovarian cancer cells. Cancer Res 2004; 64:696-703; PMID:14744787; http://dx.doi.org/10.1158/0008-5472.CAN-03-2404
-
(2004)
Cancer Res
, vol.64
, pp. 696-703
-
-
Opipari, A.W.1
Tan, L.2
Boitano, A.E.3
Sorenson, D.R.4
Aurora, A.5
Liu, J.R.6
-
265
-
-
34548093280
-
How shall I eat thee?
-
PMID:17568180
-
Klionsky DJ, Cuervo AM, Dunn WA Jr, Levine B, van der Klei I, Seglen PO. How shall I eat thee? Autophagy 2007; 3:413-6; PMID:17568180
-
(2007)
Autophagy
, vol.3
, pp. 413-416
-
-
Klionsky, D.J.1
Cuervo, A.M.2
Dunn Jr., W.A.3
Levine, B.4
Van Der Klei, I.5
Seglen, P.O.6
-
266
-
-
4344563878
-
Role and regulation of starvation-induced autophagy in the Drosophila fat body
-
PMID:15296714
-
Scott RC, Schuldiner O, Neufeld TP. Role and regulation of starvation-induced autophagy in the Drosophila fat body. Dev Cell 2004; 7:167-78; PMID:15296714; http://dx.doi.org/10.1016/j.devcel.2004.07.009
-
(2004)
Dev Cell
, vol.7
, pp. 167-178
-
-
Scott, R.C.1
Schuldiner, O.2
Neufeld, T.P.3
-
267
-
-
43049138051
-
Mature ribosomes are selectively degraded upon starvation by an autophagy pathway requiring the Ubp3p/Bre5p ubiquitin protease
-
PMID:18391941
-
Kraft C, Deplazes A, Sohrmann M, Peter M. Mature ribosomes are selectively degraded upon starvation by an autophagy pathway requiring the Ubp3p/Bre5p ubiquitin protease. Nat Cell Biol 2008; 10:602-10; PMID:18391941; http://dx.doi.org/10.1038/ncb1723
-
(2008)
Nat Cell Biol
, vol.10
, pp. 602-610
-
-
Kraft, C.1
Deplazes, A.2
Sohrmann, M.3
Peter, M.4
-
268
-
-
34948828483
-
Protein kinase A and Sch9 cooperatively regulate induction of autophagy in Saccharomyces cerevisiae
-
PMID:17699586
-
Yorimitsu T, Zaman S, Broach JR, Klionsky DJ. Protein kinase A and Sch9 cooperatively regulate induction of autophagy in Saccharomyces cerevisiae. Mol Biol Cell 2007; 18:4180-9; PMID:17699586; http://dx.doi. org/10.1091/mbc.E07-05- 0485
-
(2007)
Mol Biol Cell
, vol.18
, pp. 4180-4189
-
-
Yorimitsu, T.1
Zaman, S.2
Broach, J.R.3
Klionsky, D.J.4
-
269
-
-
79551615012
-
RNS2, a conserved member of the RNase T2 family, is necessary for ribosomal RNA decay in plants
-
PMID:21199950
-
Hillwig MS, Contento AL, Meyer A, Ebany D, Bassham DC, Macintosh GC. RNS2, a conserved member of the RNase T2 family, is necessary for ribosomal RNA decay in plants. Proc Natl Acad Sci USA 2011; 108:1093-8; PMID:21199950; http://dx.doi. org/10.1073/pnas.1009809108
-
(2011)
Proc Natl Acad Sci USA
, vol.108
, pp. 1093-1098
-
-
Hillwig, M.S.1
Contento, A.L.2
Meyer, A.3
Ebany, D.4
Bassham, D.C.5
Macintosh, G.C.6
-
270
-
-
64049086758
-
Two Beclin 1-binding proteins, Atg14L and Rubicon, reciprocally regulate autophagy at different stages
-
PMID:19270696
-
Matsunaga K, Saitoh T, Tabata K, Omori H, Satoh T, Kurotori N, et al. Two Beclin 1-binding proteins, Atg14L and Rubicon, reciprocally regulate autophagy at different stages. Nat Cell Biol 2009; 11:385-96; PMID:19270696; http://dx.doi.org/10.1038/ncb1846
-
(2009)
Nat Cell Biol
, vol.11
, pp. 385-396
-
-
Matsunaga, K.1
Saitoh, T.2
Tabata, K.3
Omori, H.4
Satoh, T.5
Kurotori, N.6
-
271
-
-
64049113909
-
Distinct regulation of autophagic activity by Atg14L and Rubicon associated with Beclin 1-phosphatidylinositol-3-kinase complex
-
PMID:19270693
-
Zhong Y, Wang QJ, Li X, Yan Y, Backer JM, Chait BT, et al. Distinct regulation of autophagic activity by Atg14L and Rubicon associated with Beclin 1-phosphatidylinositol-3-kinase complex. Nat Cell Biol 2009; 11:468-76; PMID:19270693; http://dx.doi. org/10.1038/ncb1854
-
(2009)
Nat Cell Biol
, vol.11
, pp. 468-476
-
-
Zhong, Y.1
Wang, Q.J.2
Li, X.3
Yan, Y.4
Backer, J.M.5
Chait, B.T.6
-
272
-
-
79957971892
-
A conserved coatomer-related complex containing Sec13 and Seh1 dynamically associates with the vacuole in Saccharomyces cerevisiae
-
Dokudovskaya S, Waharte F, Schlessinger A, Pieper U, Devos DP, Cristea IM, et al. A conserved coatomer-related complex containing Sec13 and Seh1 dynamically associates with the vacuole in Saccharomyces cerevisiae. Mol Cell Proteomics 2011; 10:110.006478
-
(2011)
Mol Cell Proteomics
, vol.10
-
-
Dokudovskaya, S.1
Waharte, F.2
Schlessinger, A.3
Pieper, U.4
Devos, D.P.5
Cristea, I.M.6
-
273
-
-
79960798816
-
SNARE proteins are required for macroautophagy
-
PMID:21784249
-
Nair U, Jotwani A, Geng J, Gammoh N, Richerson D, Yen W-L, et al. SNARE proteins are required for macroautophagy. Cell 2011; 146:290-302; PMID:21784249; http://dx.doi.org/10.1016/j.cell.2011.06.022
-
(2011)
Cell
, vol.146
, pp. 290-302
-
-
Nair, U.1
Jotwani, A.2
Geng, J.3
Gammoh, N.4
Richerson, D.5
Yen, W.-L.6
-
274
-
-
0035192612
-
Autophagosome requires specific early Sec proteins for its formation and NSF/SNARE for vacuolar fusion
-
PMID:11694599
-
Ishihara N, Hamasaki M, Yokota S, Suzuki K, Kamada Y, Kihara A, et al. Autophagosome requires specific early Sec proteins for its formation and NSF/SNARE for vacuolar fusion. Mol Biol Cell 2001; 12:3690-702; PMID:11694599
-
(2001)
Mol Biol Cell
, vol.12
, pp. 3690-3702
-
-
Ishihara, N.1
Hamasaki, M.2
Yokota, S.3
Suzuki, K.4
Kamada, Y.5
Kihara, A.6
-
275
-
-
58249085224
-
SEPA-1 mediates the specific recognition and degradation of P granule components by autophagy in C. elegans
-
PMID:19167332
-
Zhang Y, Yan L, Zhou Z, Yang P, Tian E, Zhang K, et al. SEPA-1 mediates
-
(2009)
Cell
, vol.136
, pp. 308-321
-
-
Zhang, Y.1
Yan, L.2
Zhou, Z.3
Yang, P.4
Tian, E.5
Zhang, K.6
-
276
-
-
78349239252
-
Entrapment of intracytosolic bacteria by septin cage-like structures
-
PMID:21075354
-
Mostowy S, Bonazzi M, Hamon MA, Tham TN, Mallet A, Lelek M, et al. Entrapment of intracytosolic bacteria by septin cage-like structures. Cell Host Microbe 2010; 8:433-44; PMID:21075354; http://dx.doi.org/10.1016/j.chom.2010.10. 009
-
(2010)
Cell Host Microbe
, vol.8
, pp. 433-444
-
-
Mostowy, S.1
Bonazzi, M.2
Hamon, M.A.3
Tham, T.N.4
Mallet, A.5
Lelek, M.6
-
277
-
-
41549138483
-
A role for the NAD-dependent deacetylase Sirt1 in the regulation of autophagy
-
PMID:18296641
-
Lee IH, Cao L, Mostoslavsky R, Lombard DB, Liu J, Bruns NE, et al. A role for the NAD-dependent deacetylase Sirt1 in the regulation of autophagy. Proc Natl Acad Sci USA 2008; 105:3374-9; PMID:18296641; http://dx.doi.org/10.1073/ pnas.0712145105
-
(2008)
Proc Natl Acad Sci USA
, vol.105
, pp. 3374-3379
-
-
Lee, I.H.1
Cao, L.2
Mostoslavsky, R.3
Lombard, D.B.4
Liu, J.5
Bruns, N.E.6
-
278
-
-
38349110486
-
Listeriolysin O allows Listeria monocytogenes replication in macrophage vacuoles
-
PMID:18202661
-
Birmingham CL, Canadien V, Kaniuk NA, Steinberg BE, Higgins DE, Brumell JH. Listeriolysin O allows Listeria monocytogenes replication in macrophage vacuoles. Nature 2008; 451:350-4; PMID:18202661; http://dx.doi.org/10.1038/ nature06479
-
(2008)
Nature
, vol.451
, pp. 350-354
-
-
Birmingham, C.L.1
Canadien, V.2
Kaniuk, N.A.3
Steinberg, B.E.4
Higgins, D.E.5
Brumell, J.H.6
-
279
-
-
0031930276
-
Chronic Listeria infection in SCID mice: Requirements for the carrier state and the dual role of T cells in transferring protection or suppression
-
PMID:9551994
-
Bhardwaj V, Kanagawa O, Swanson PE, Unanue ER. Chronic Listeria infection in SCID mice: requirements for the carrier state and the dual role of T cells in transferring protection or suppression. J Immunol 1998; 160:376-84; PMID:9551994
-
(1998)
J Immunol
, vol.160
, pp. 376-384
-
-
Bhardwaj, V.1
Kanagawa, O.2
Swanson, P.E.3
Unanue, E.R.4
-
280
-
-
59049087460
-
Bidirectional transport of amino acids regulates mTOR and autophagy
-
PMID:19203585
-
Nicklin P, Bergman P, Zhang B, Triantafellow E, Wang H, Nyfeler B, et al. Bidirectional transport of amino acids regulates mTOR and autophagy. Cell 2009; 136:521-34; PMID:19203585; http://dx.doi. org/10.1016/j.cell.2008.11.044
-
(2009)
Cell
, vol.136
, pp. 521-534
-
-
Nicklin, P.1
Bergman, P.2
Zhang, B.3
Triantafellow, E.4
Wang, H.5
Nyfeler, B.6
-
281
-
-
79951910694
-
Autophagy in immunity and cell-autonomous defense against intracellular microbes
-
PMID:21349088
-
Deretic V. Autophagy in immunity and cell-autonomous defense against intracellular microbes. Immunol Rev 2011; 240:92-104; PMID:21349088; http://dx.doi.org/10.1111/j.1600-065X.2010.00995.x
-
(2011)
Immunol Rev
, vol.240
, pp. 92-104
-
-
Deretic, V.1
-
283
-
-
77957325618
-
Snapin-regulated late endosomal transport is critical for efficient autophagy-lysosomal function in neurons
-
PMID:20920792
-
Cai Q, Lu L, Tian J-H, Zhu Y-B, Qiao H, Sheng Z-H. Snapin-regulated late endosomal transport is critical for efficient autophagy-lysosomal function in neurons. Neuron 2010; 68:73-86; PMID:20920792; http://dx.doi.org/10.1016/j. neuron.2010.09.022
-
(2010)
Neuron
, vol.68
, pp. 73-86
-
-
Cai, Q.1
Lu, L.2
Tian, J.-H.3
Zhu, Y.-B.4
Qiao, H.5
Sheng, Z.-H.6
-
284
-
-
70449529855
-
Induction of autophagy by spermidine promotes longevity
-
PMID:19801973
-
Eisenberg T, Knauer H, Schauer A, Buttner S, Ruckenstuhl C, Carmona-Gutierrez D, et al. Induction of autophagy by spermidine promotes longevity. Nat Cell Biol 2009; 11:1305-14; PMID:19801973; http://dx.doi.org/10. 1038/ncb1975
-
(2009)
Nat Cell Biol
, vol.11
, pp. 1305-1314
-
-
Eisenberg, T.1
Knauer, H.2
Schauer, A.3
Buttner, S.4
Ruckenstuhl, C.5
Carmona-Gutierrez, D.6
-
285
-
-
0029867412
-
The metabolism of sphingo(glyco)lipids is correlated with the differentiation-dependent autophagic pathway in HT-29 cells
-
PMID:8647085
-
Ghidoni R, Houri JJ, Giuliani A, Ogier-Denis E, Parolari E, Botti S, et al. The metabolism of sphingo(glyco)lipids is correlated with the differentiation-dependent autophagic pathway in HT-29 cells. Eur J Biochem 1996; 237:454-9; PMID:8647085; http://dx.doi.org/10.1111/j.1432-033.1996.0454k.x
-
(1996)
Eur J Biochem
, vol.237
, pp. 454-459
-
-
Ghidoni, R.1
Houri, J.J.2
Giuliani, A.3
Ogier-Denis, E.4
Parolari, E.5
Botti, S.6
-
286
-
-
33846192839
-
Is autophagy the key mechanism by which the sphingolipid rheostat controls the cell fate decision?
-
PMID:17035732
-
Lavieu G, Scarlatti F, Sala G, Levade T, Ghidoni R, Botti J, et al. Is autophagy the key mechanism by which the sphingolipid rheostat controls the cell fate decision? Autophagy 2007; 3:45-7; PMID:17035732
-
(2007)
Autophagy
, vol.3
, pp. 45-47
-
-
Lavieu, G.1
Scarlatti, F.2
Sala, G.3
Levade, T.4
Ghidoni, R.5
Botti, J.6
-
287
-
-
79956346329
-
Spinster is required for autophagic lysosome reformation and mTOR reactivation following starvation
-
PMID:21518918
-
Rong Y, McPhee C, Deng S, Huang L, Chen L, Liu M, et al. Spinster is required for autophagic lysosome reformation and mTOR reactivation following starvation. Proc Natl Acad Sci USA 2011; 108:7826-31; PMID:21518918; http://dx.doi.org/10.1073/ pnas.1013800108
-
(2011)
Proc Natl Acad Sci USA
, vol.108
, pp. 7826-7831
-
-
Rong, Y.1
McPhee, C.2
Deng, S.3
Huang, L.4
Chen, L.5
Liu, M.6
-
288
-
-
79951805767
-
Atg1-mediated myosin II activation regulates autophagosome formation during starvation-induced autophagy
-
PMID:21169990
-
Tang HW, Wang YB, Wang SL, Wu MH, Lin SY, Chen GC. Atg1-mediated myosin II activation regulates autophagosome formation during starvation-induced autophagy. EMBO J 2011; 30:636-51; PMID:21169990; http://dx.doi.org/10.1038/ emboj.2010.338
-
(2011)
EMBO J
, vol.30
, pp. 636-651
-
-
Tang, H.W.1
Wang, Y.B.2
Wang, S.L.3
Wu, M.H.4
Lin, S.Y.5
Chen, G.C.6
-
289
-
-
79551546749
-
Autophagic substrate clearance requires activity of the syntaxin-5 SNARE complex
-
PMID:21242315
-
Renna M, Schaffner C, Winslow AR, Menzies FM, Peden AA, Floto RA, et al. Autophagic substrate clearance requires activity of the syntaxin-5 SNARE complex. J Cell Sci 2011; 124:469-82; PMID:21242315; http://dx.doi.org/10.1242/ jcs.076489
-
(2011)
J Cell Sci
, vol.124
, pp. 469-482
-
-
Renna, M.1
Schaffner, C.2
Winslow, A.R.3
Menzies, F.M.4
Peden, A.A.5
Floto, R.A.6
-
290
-
-
62649146372
-
TAK1 activates AMPK-dependent cytoprotective autophagy in TRAIL-treated epithelial cells
-
PMID:19197243
-
Herrero-Martín G, Hoyer-Hansen M, Garcia-Garcia C, Fumarola C, Farkas T, Lopez-Rivas A, et al. TAK1 activates AMPK-dependent cytoprotective autophagy in TRAIL-treated epithelial cells. EMBO J 2009; 28:677-85; PMID:19197243; http://dx.doi. org/10.1038/emboj.2009.8
-
(2009)
EMBO J
, vol.28
, pp. 677-685
-
-
Herrero-Martín, G.1
Hoyer-Hansen, M.2
Garcia-Garcia, C.3
Fumarola, C.4
Farkas, T.5
Lopez-Rivas, A.6
-
291
-
-
0036901104
-
Mechanism of cargo selection in the cytoplasm to vacuole targeting pathway
-
PMID:12479808
-
Shintani T, Huang W-P, Stromhaug PE, Klionsky DJ. Mechanism of cargo selection in the cytoplasm to vacuole targeting pathway. Dev Cell 2002; 3:825-37; PMID:12479808; http://dx.doi.org/10.1016/S1534-5807(02)00373-8
-
(2002)
Dev Cell
, vol.3
, pp. 825-837
-
-
Shintani, T.1
Huang, W.-P.2
Stromhaug, P.E.3
Klionsky, D.J.4
-
292
-
-
79956325949
-
Spatial coupling of mTOR and autophagy augments secretory phenotypes
-
PMID:21512002
-
Narita M, Young AR, Arakawa S, Samarajiwa SA, Nakashima T, Yoshida S, et al. Spatial coupling of mTOR and autophagy augments secretory phenotypes. Science 2011; 332:966-70; PMID:21512002; http://dx.doi.org/10.1126/science. 1205407
-
(2011)
Science
, vol.332
, pp. 966-970
-
-
Narita, M.1
Young, A.R.2
Arakawa, S.3
Samarajiwa, S.A.4
Nakashima, T.5
Yoshida, S.6
-
293
-
-
79956147302
-
A tecpr1-dependent selective autophagy pathway targets bacterial pathogens
-
PMID:21575909
-
Ogawa M, Yoshikawa Y, Kobayashi T, Mimuro H, Fukumatsu M, Kiga K, et al. A tecpr1-dependent selective autophagy pathway targets bacterial pathogens. Cell Host Microbe 2011; 9:376-89; PMID:21575909; http://dx.doi.org/10.1016/j.chom. 2011.04.010
-
(2011)
Cell Host Microbe
, vol.9
, pp. 376-389
-
-
Ogawa, M.1
Yoshikawa, Y.2
Kobayashi, T.3
Mimuro, H.4
Fukumatsu, M.5
Kiga, K.6
-
294
-
-
80955177196
-
TFEB links autophagy to lysosomal biogenesis
-
PMID:21617040
-
Settembre C, Di Malta C, Polito VA, Arencibia MG, Vetrini F, Erdin S, et al. TFEB links autophagy to lysosomal biogenesis. Science 2011; 332:1429-33; PMID:21617040; http://dx.doi.org/10.1126/science. 1204592
-
(2011)
Science
, vol.332
, pp. 1429-1433
-
-
Settembre, C.1
Di Malta, C.2
Polito, V.A.3
Arencibia, M.G.4
Vetrini, F.5
Erdin, S.6
-
295
-
-
70350575440
-
Modulation of intracellular ROS levels by TIGAR controls autophagy
-
PMID:19713938
-
Bensaad K, Cheung EC, Vousden KH. Modulation of intracellular ROS levels by TIGAR controls autophagy. EMBO J 2009; 28:3015-26; PMID:19713938; http://dx.doi.org/10.1038/emboj.2009.242
-
(2009)
EMBO J
, vol.28
, pp. 3015-3026
-
-
Bensaad, K.1
Cheung, E.C.2
Vousden, K.H.3
-
296
-
-
0033231275
-
Cytoplasm to vacuole trafficking of aminopeptidase I requires a t-SNARE-Sec1p complex composed of Tlg2p and Vps45p
-
PMID:10545112
-
Abeliovich H, Darsow T, Emr SD. Cytoplasm to vacuole trafficking of aminopeptidase I requires a t-SNARE-Sec1p complex composed of Tlg2p and Vps45p. EMBO J 1999; 18:6005-16; PMID:10545112; http://dx.doi.org/10.1093/emboj/18.21. 6005
-
(1999)
EMBO J
, vol.18
, pp. 6005-6016
-
-
Abeliovich, H.1
Darsow, T.2
Emr, S.D.3
-
297
-
-
58149374223
-
High-throughput functional screening for autophagy-related genes and identification of TM9SF1 as an autophagosome-inducing gene
-
PMID:19029833
-
He P, Peng Z, Luo Y, Wang L, Yu P, Deng W, et al. High-throughput functional screening for autophagy-related genes and identification of TM9SF1 as an autophagosome-inducing gene. Autophagy 2009; 5:52-60; PMID:19029833; http://dx.doi.org/10.4161/auto.5.1.7247
-
(2009)
Autophagy
, vol.5
, pp. 52-60
-
-
He, P.1
Peng, Z.2
Luo, Y.3
Wang, L.4
Yu, P.5
Deng, W.6
-
298
-
-
40949132464
-
TMEM74, a lysosome and autophagosome protein, regulates autophagy
-
PMID:18294959
-
Yu C, Wang L, Lv B, Lu Y, Zeng L, Chen Y, et al. TMEM74, a lysosome and autophagosome protein, regulates autophagy. Biochem Biophys Res Commun 2008; 369:622-9; PMID:18294959; http://dx.doi. org/10.1016/j.bbrc.2008.02.055
-
(2008)
Biochem Biophys Res Commun
, vol.369
, pp. 622-629
-
-
Yu, C.1
Wang, L.2
Lv, B.3
Lu, Y.4
Zeng, L.5
Chen, Y.6
-
299
-
-
34250824671
-
TMEM166, a novel transmembrane protein, regulates cell autophagy and apoptosis
-
PMID:17492404
-
Wang L, Yu C, Lu Y, He P, Guo J, Zhang C, et al. TMEM166, a novel transmembrane protein, regulates cell autophagy and apoptosis. Apoptosis 2007; 12:1489-502; PMID:17492404; http://dx.doi. org/10.1007/s10495-007-0073-9
-
(2007)
Apoptosis
, vol.12
, pp. 1489-1502
-
-
Wang, L.1
Yu, C.2
Lu, Y.3
He, P.4
Guo, J.5
Zhang, C.6
-
300
-
-
52049091512
-
What controls TOR?
-
PMID:18493947
-
Jacinto E. What controls TOR? IUBMB Life 2008; 60:483-96; PMID:18493947; http://dx.doi. org/10.1002/iub.56
-
(2008)
IUBMB Life
, vol.60
, pp. 483-496
-
-
Jacinto, E.1
-
301
-
-
67349241955
-
DEPTOR is an mTOR inhibitor frequently overexpressed in multiple myeloma cells and required for their survival
-
PMID:19446321
-
Peterson TR, Laplante M, Thoreen CC, Sancak Y, Kang SA, Kuehl WM, et al. DEPTOR is an mTOR inhibitor frequently overexpressed in multiple myeloma cells and required for their survival. Cell 2009; 137:873-86; PMID:19446321; http://dx.doi. org/10.1016/j.cell.2009.03.046
-
(2009)
Cell
, vol.137
, pp. 873-886
-
-
Peterson, T.R.1
Laplante, M.2
Thoreen, C.C.3
Sancak, Y.4
Kang, S.A.5
Kuehl, W.M.6
-
302
-
-
34347210090
-
Identification of Protor as a novel Rictor-binding component of mTOR complex-2
-
PMID:17461779
-
Pearce LR, Huang X, Boudeau J, Pawlowski R, Wullschleger S, Deak M, et al. Identification of Protor as a novel Rictor-binding component of mTOR complex-2. Biochem J 2007; 405:513-22; PMID:17461779; http://dx.doi.org/10.1042/ BJ20070540
-
(2007)
Biochem J
, vol.405
, pp. 513-522
-
-
Pearce, L.R.1
Huang, X.2
Boudeau, J.3
Pawlowski, R.4
Wullschleger, S.5
Deak, M.6
-
303
-
-
65549145048
-
An ATP-competitive mammalian target of rapamycin inhibitor reveals rapamycin-resistant functions of mTORC1
-
PMID:19150980
-
Thoreen CC, Kang SA, Chang JW, Liu Q, Zhang J, Gao Y, et al. An ATP-competitive mammalian target of rapamycin inhibitor reveals rapamycin-resistant functions of mTORC1. J Biol Chem 2009; 284:8023-32; PMID:19150980; http://dx.doi.org/10.1074/jbc. M900301200
-
(2009)
J Biol Chem
, vol.284
, pp. 8023-8032
-
-
Thoreen, C.C.1
Kang, S.A.2
Chang, J.W.3
Liu, Q.4
Zhang, J.5
Gao, Y.6
-
304
-
-
79961185086
-
Absence of tumor suppressor Tumor Protein 53-Induced Nuclear Protein 1 sensitizes mouse thymocytes and embryonic fibroblasts to redox-driven apoptosis
-
PMID:21235351
-
N'Guessan P, Pouyet L, Gosset G, Hamlaoui S, Seillier M, Cano C, et al. Absence of tumor suppressor Tumor Protein 53-Induced Nuclear Protein 1 sensitizes mouse thymocytes and embryonic fibroblasts to redox-driven apoptosis. Antioxid Redox Signal 2011; 15:1639-53; PMID:21235351; http://dx.doi.org/10. 1089/ars.2010.3553
-
(2011)
Antioxid Redox Signal
, vol.15
, pp. 1639-1653
-
-
N'Guessan, P.1
Pouyet, L.2
Gosset, G.3
Hamlaoui, S.4
Seillier, M.5
Cano, C.6
-
305
-
-
64049119964
-
The TP53INP2 protein is required for autophagy in mammalian cells
-
PMID:19056683
-
Nowak J, Archange C, Tardivel-Lacombe J, Pontarotti P, Pebusque MJ, Vaccaro MI, et al. The TP53INP2 protein is required for autophagy in mammalian cells. Mol Biol Cell 2009; 20:870-81; PMID:19056683; http://dx.doi.org/10.1091/ mbc.E08-07-0671
-
(2009)
Mol Biol Cell
, vol.20
, pp. 870-881
-
-
Nowak, J.1
Archange, C.2
Tardivel-Lacombe, J.3
Pontarotti, P.4
Pebusque, M.J.5
Vaccaro, M.I.6
-
306
-
-
77952329475
-
Trs85 directs a Ypt1 GEF, TRAPPIII, to the phagophore to promote autophagy
-
PMID:20375281
-
Lynch-Day MA, Bhandari D, Menon S, Huang J, Cai H, Bartholomew CR, et al. Trs85 directs a Ypt1 GEF, TRAPPIII, to the phagophore to promote autophagy. Proc Natl Acad Sci USA 2010; 107:7811-6; PMID:20375281; http://dx.doi.org/10. 1073/pnas.1000063107
-
(2010)
Proc Natl Acad Sci USA
, vol.107
, pp. 7811-7816
-
-
Lynch-Day, M.A.1
Bhandari, D.2
Menon, S.3
Huang, J.4
Cai, H.5
Bartholomew, C.R.6
-
307
-
-
59649110865
-
PLIC proteins or ubiquilins regulate autophagy-dependent cell survival during nutrient starvation
-
PMID:19148225
-
N'Diaye EN, Kajihara KK, Hsieh I, Morisaki H, Debnath J, Brown EJ. PLIC proteins or ubiquilins regulate autophagy-dependent cell survival during nutrient starvation. EMBO Rep 2009; 10:173-9; PMID:19148225; http://dx.doi.org/10.1038/embor.2008.238
-
(2009)
EMBO Rep
, vol.10
, pp. 173-179
-
-
N'Diaye, E.N.1
Kajihara, K.K.2
Hsieh, I.3
Morisaki, H.4
Debnath, J.5
Brown, E.J.6
-
308
-
-
34548482499
-
SiRNA screening of the kinome identifies ULK1 as a multidomain modulator of autophagy
-
PMID:17595159
-
Chan EYW, Kir S, Tooze SA. siRNA screening of the kinome identifies ULK1 as a multidomain modulator of autophagy. J Biol Chem 2007; 282:25464-74; PMID:17595159; http://dx.doi.org/10.1074/jbc. M703663200
-
(2007)
J Biol Chem
, vol.282
, pp. 25464-25474
-
-
Chan, E.Y.W.1
Kir, S.2
Tooze, S.A.3
-
309
-
-
33750366092
-
Starvation and ULK1-dependent cycling of mammalian Atg9 between the TGN and endosomes
-
PMID:16940348
-
Young ARJ, Chan EYW, Hu XW, Köchl R, Crawshaw SG, High S, et al. Starvation and ULK1-dependent cycling of mammalian Atg9 between the TGN and endosomes. J Cell Sci 2006; 119:3888-900; PMID:16940348; http://dx.doi.org/10. 1242/jcs.03172
-
(2006)
J Cell Sci
, vol.119
, pp. 3888-3900
-
-
Young, A.R.J.1
Chan, E.Y.W.2
Hu, X.W.3
Köchl, R.4
Crawshaw, S.G.5
High, S.6
-
310
-
-
77951221542
-
The role of the Atg1/ULK1 complex in autophagy regulation
-
PMID:20056399
-
Mizushima N. The role of the Atg1/ULK1 complex in autophagy regulation. Curr Opin Cell Biol 2010; 22:132-9; PMID:20056399; http://dx.doi. org/10.1016/j.ceb.2009.12.004
-
(2010)
Curr Opin Cell Biol
, vol.22
, pp. 132-139
-
-
Mizushima, N.1
-
311
-
-
33745751085
-
Autophagic and tumour suppressor activity of a novel Beclin1-binding protein UVRAG
-
PMID:16799551
-
Liang C, Feng P, Ku B, Dotan I, Canaani D, Oh BH, et al. Autophagic and tumour suppressor activity of a novel Beclin1-binding protein UVRAG. Nat Cell Biol 2006; 8:688-99; PMID:16799551; http://dx.doi. org/10.1038/ncb1426
-
(2006)
Nat Cell Biol
, vol.8
, pp. 688-699
-
-
Liang, C.1
Feng, P.2
Ku, B.3
Dotan, I.4
Canaani, D.5
Oh, B.H.6
-
312
-
-
0029844569
-
Isolation of degradation-deficient mutants defective in the targeting of fructose-1,6-bisphosphatase into the vacuole for degradation in Saccharomyces cerevisiae
-
PMID:8844145
-
Hoffman M, Chiang H-L. Isolation of degradation-deficient mutants defective in the targeting of fructose-1,6-bisphosphatase into the vacuole for degradation in Saccharomyces cerevisiae. Genetics 1996; 143:1555-66; PMID:8844145
-
(1996)
Genetics
, vol.143
, pp. 1555-1566
-
-
Hoffman, M.1
Chiang, H.-L.2
-
313
-
-
0030807624
-
A multispecificity syntaxin homolog, Vam3p, essential for autophagic and biosynthetic protein transport to the vacuole
-
PMID:9245783
-
Darsow T, Rieder SE, Emr SD. A multispecificity syntaxin homolog, Vam3p, essential for autophagic and biosynthetic protein transport to the vacuole. J Cell Biol 1997; 138:517-29; PMID:9245783; http://dx.doi.org/10.1083/jcb.138.3. 517
-
(1997)
J Cell Biol
, vol.138
, pp. 517-529
-
-
Darsow, T.1
Rieder, S.E.2
Emr, S.D.3
-
314
-
-
72049088519
-
TI-VAMP/VAMP7 and VAMP3/cellubrevin: Two v-SNARE proteins involved in specific steps of the autophagy/multivesicular body pathways
-
Fader CM, Sanchez DG, Mestre MB, Colombo MI. TI-VAMP/VAMP7 and VAMP3/cellubrevin: two v-SNARE proteins involved in specific steps of the autophagy/multivesicular body pathways. Biochim Biophys Acta 2009; 1793:1901-16
-
(2009)
Biochim Biophys Acta
, vol.1793
, pp. 1901-1916
-
-
Fader, C.M.1
Sanchez, D.G.2
Mestre, M.B.3
Colombo, M.I.4
-
315
-
-
79960774898
-
Autophagosome precursor maturation requires homotypic fusion
-
PMID:21784250
-
Moreau K, Ravikumar B, Renna M, Puri C, Rubinsztein DC. Autophagosome precursor maturation requires homotypic fusion. Cell 2011; 146:303-17; PMID:21784250; http://dx.doi.org/10.1016/j. cell.2011.06.023
-
(2011)
Cell
, vol.146
, pp. 303-317
-
-
Moreau, K.1
Ravikumar, B.2
Renna, M.3
Puri, C.4
Rubinsztein, D.C.5
-
316
-
-
77949448601
-
Combinational soluble N-ethylmaleimide-sensitive factor attachment protein receptor proteins VAMP8 and Vti1b mediate fusion of antimicrobial and canonical autophagosomes with lysosomes
-
PMID:20089838
-
Furuta N, Fujita N, Noda T, Yoshimori T, Amano A. Combinational soluble N-ethylmaleimide-sensitive factor attachment protein receptor proteins VAMP8 and Vti1b mediate fusion of antimicrobial and canonical autophagosomes with lysosomes. Mol Biol Cell 2010; 21:1001-10; PMID:20089838; http://dx.doi. org/10.1091/mbc.E09-08-0693
-
(2010)
Mol Biol Cell
, vol.21
, pp. 1001-1010
-
-
Furuta, N.1
Fujita, N.2
Noda, T.3
Yoshimori, T.4
Amano, A.5
-
317
-
-
77952533111
-
VCP/p97 is essential for maturation of ubiquitin-containing autophagosomes and this function is impaired by mutations that cause IBMPFD
-
PMID:20104022
-
Tresse E, Salomons FA, Vesa J, Bott LC, Kimonis V, Yao TP, et al. VCP/p97 is essential for maturation of ubiquitin-containing autophagosomes and this function is impaired by mutations that cause IBMPFD. Autophagy 2010; 6:217-27; PMID:20104022; http://dx.doi.org/10.4161/auto.6.2.11014
-
(2010)
Autophagy
, vol.6
, pp. 217-227
-
-
Tresse, E.1
Salomons, F.A.2
Vesa, J.3
Bott, L.C.4
Kimonis, V.5
Yao, T.P.6
-
318
-
-
74049124412
-
Valosin-containing protein (VCP) is required for autophagy and is disrupted in VCP disease
-
PMID:20008565
-
Ju JS, Fuentealba RA, Miller SE, Jackson E, Piwnica-Worms D, Baloh RH, et al. Valosin-containing protein (VCP) is required for autophagy and is disrupted in VCP disease. J Cell Biol 2009; 187:875-88; PMID:20008565; http://dx.doi.org/10.1083/jcb.200908115
-
(2009)
J Cell Biol
, vol.187
, pp. 875-888
-
-
Ju, J.S.1
Fuentealba, R.A.2
Miller, S.E.3
Jackson, E.4
Piwnica-Worms, D.5
Baloh, R.H.6
-
319
-
-
79953203958
-
Inhibition of autophagosome formation by the benzoporphyrin derivative verteporfin
-
PMID:21193398
-
Donohue E, Tovey A, Vogl AW, Arns S, Sternberg E, Young RN, et al. Inhibition of autophagosome formation by the benzoporphyrin derivative verteporfin. J Biol Chem 2011; 286:7290-300; PMID:21193398; http://dx.doi.org/ 10.1074/jbc.M110.139915
-
(2011)
J Biol Chem
, vol.286
, pp. 7290-7300
-
-
Donohue, E.1
Tovey, A.2
Vogl, A.W.3
Arns, S.4
Sternberg, E.5
Young, R.N.6
-
320
-
-
41449102022
-
A novel mammalian trans-membrane protein reveals an alternative initiation pathway for autophagy
-
PMID:18253086
-
Vaccaro MI, Ropolo A, Grasso D, Iovanna JL. A novel mammalian trans-membrane protein reveals an alternative initiation pathway for autophagy. Autophagy 2008; 4:388-90; PMID:18253086
-
(2008)
Autophagy
, vol.4
, pp. 388-390
-
-
Vaccaro, M.I.1
Ropolo, A.2
Grasso, D.3
Iovanna, J.L.4
-
321
-
-
37549012209
-
The pancreatitis-induced vacuole membrane protein 1 triggers autophagy in mammalian cells
-
PMID:17940279
-
Ropolo A, Grasso D, Pardo R, Sacchetti ML, Archange C, Lo Re A, et al. The pancreatitis-induced vacuole membrane protein 1 triggers autophagy in mammalian cells. J Biol Chem 2007; 282:37124-33; PMID:17940279; http://dx.doi.org/10.1074/jbc. M706956200
-
(2007)
J Biol Chem
, vol.282
, pp. 37124-37133
-
-
Ropolo, A.1
Grasso, D.2
Pardo, R.3
Sacchetti, M.L.4
Archange, C.5
Lo Re, A.6
-
322
-
-
33748434220
-
Role of Vac8 in formation of the vacuolar sequestering membrane during micropexophagy
-
PMID:16874085
-
Oku M, Nishimura T, Hattori T, Ano Y, Yamashita S, Sakai Y. Role of Vac8 in formation of the vacuolar sequestering membrane during micropexophagy. Autophagy 2006; 2:272-9; PMID:16874085
-
(2006)
Autophagy
, vol.2
, pp. 272-279
-
-
Oku, M.1
Nishimura, T.2
Hattori, T.3
Ano, Y.4
Yamashita, S.5
Sakai, Y.6
-
323
-
-
77949448601
-
Combinational soluble N-ethylmaleimide-sensitive factor attachment protein receptor proteins VAMP8 and Vti1b mediate fusion of antimicrobial and canonical autophagosomes with lysosomes
-
PMID:20089838
-
Furuta N, Fujita N, Noda T, Yoshimori T, Amano A. Combinational soluble N-ethylmaleimide-sensitive factor attachment protein receptor proteins VAMP8 and Vti1b mediate fusion of antimicrobial and canonical autophagosomes with lysosomes. Mol Biol Cell 2010; 21:1001-10; PMID:20089838; http://dx.doi. org/10.1091/mbc.E09-08-0693
-
(2010)
Mol Biol Cell
, vol.21
, pp. 1001-1010
-
-
Furuta, N.1
Fujita, N.2
Noda, T.3
Yoshimori, T.4
Amano, A.5
-
324
-
-
11244289333
-
WIPI-1α (WIPI49), a member of the novel 7-bladed WIPI protein family, is aberrantly expressed in human cancer and is linked to starvation-induced autophagy
-
PMID:15602573
-
Proikas-Cezanne T, Waddell S, Gaugel A, Frickey T, Lupas A, Nordheim A. WIPI-1α (WIPI49), a member of the novel 7-bladed WIPI protein family, is aberrantly expressed in human cancer and is linked to starvation-induced autophagy. Oncogene 2004; 23:9314-25; PMID:15602573; http://dx.doi. org/10.1038/sj.onc.1208331
-
(2004)
Oncogene
, vol.23
, pp. 9314-9325
-
-
Proikas-Cezanne, T.1
Waddell, S.2
Gaugel, A.3
Frickey, T.4
Lupas, A.5
Nordheim, A.6
-
325
-
-
77953726483
-
Mammalian Atg18 (WIPI2) localizes to omegasome-anchored phagophores and positively regulates LC3 lipidation
-
PMID:20505359
-
Polson HE, de Lartigue J, Rigden DJ, Reedijk M, UrbéS, Clague MJ, et al. Mammalian Atg18 (WIPI2) localizes to omegasome-anchored phagophores and positively regulates LC3 lipidation. Autophagy 2010; 6:506-22; PMID:20505359; http://dx.doi.org/10.4161/auto.6.4.11863
-
(2010)
Autophagy
, vol.6
, pp. 506-522
-
-
Polson, H.E.1
De Lartigue, J.2
Rigden, D.J.3
Reedijk, M.4
Urbé, S.5
Clague, M.J.6
-
326
-
-
57249083972
-
Structural basis of target recognition by Atg8/LC3 during selective autophagy
-
PMID:19021777
-
Noda NN, Kumeta H, Nakatogawa H, Satoo K, Adachi W, Ishii J, et al. Structural basis of target recognition by Atg8/LC3 during selective autophagy. Genes Cells 2008; 13:1211-8; PMID:19021777; http://dx.doi.org/10.1111/j.1365- 2443.2008.01238.x
-
(2008)
Genes Cells
, vol.13
, pp. 1211-1218
-
-
Noda, N.N.1
Kumeta, H.2
Nakatogawa, H.3
Satoo, K.4
Adachi, W.5
Ishii, J.6
-
327
-
-
79960348203
-
Relieving autophagy and 4EBP1 from rapamycin resistance
-
PMID:21576371
-
Nyfeler B, Bergman P, Triantafellow E, Wilson CJ, Zhu Y, Radetich B, et al. Relieving autophagy and 4EBP1 from rapamycin resistance. Mol Cell Biol 2011; 31:2867-76; PMID:21576371; http://dx.doi. org/10.1128/MCB.05430-11
-
(2011)
Mol Cell Biol
, vol.31
, pp. 2867-2876
-
-
Nyfeler, B.1
Bergman, P.2
Triantafellow, E.3
Wilson, C.J.4
Zhu, Y.5
Radetich, B.6
-
328
-
-
65749101996
-
Endoplasmic reticulum stress in the intestinal epithelium and inflammatory bowel disease
-
PMID:19237300
-
Kaser A, Blumberg RS. Endoplasmic reticulum stress in the intestinal epithelium and inflammatory bowel disease. Semin Immunol 2009; 21:156-63; PMID:19237300; http://dx.doi.org/10.1016/j. smim.2009.01.001
-
(2009)
Semin Immunol
, vol.21
, pp. 156-163
-
-
Kaser, A.1
Blumberg, R.S.2
-
329
-
-
12944308330
-
Eating oneself and uninvited guests: Autophagy-related pathways in cellular defense
-
PMID:15680321
-
Levine B. Eating oneself and uninvited guests: autophagy-related pathways in cellular defense. Cell 2005; 120:159-62; PMID:15680321; http://dx.doi. org/10.1016/S0092-8674(05)00043-7
-
(2005)
Cell
, vol.120
, pp. 159-162
-
-
Levine, B.1
-
330
-
-
34247380330
-
Regulation of autophagy by the inositol trisphosphate receptor
-
PMID:17256008
-
Criollo A, Maiuri MC, Tasdemir E, Vitale I, Fiebig AA, Andrews D, et al. Regulation of autophagy by the inositol trisphosphate receptor. Cell Death Differ 2007; 14:1029-39; PMID:17256008
-
(2007)
Cell Death Differ
, vol.14
, pp. 1029-1039
-
-
Criollo, A.1
Maiuri, M.C.2
Tasdemir, E.3
Vitale, I.4
Fiebig, A.A.5
Andrews, D.6
-
331
-
-
0037572294
-
Ykt6p is a multifunctional yeast R-SNARE that is required for multiple membrane transport pathways to the vacuole
-
PMID:12802061
-
Kweon Y, Rothe A, Conibear E, Stevens TH. Ykt6p is a multifunctional yeast R-SNARE that is required for multiple membrane transport pathways to the vacuole. Mol Biol Cell 2003; 14:1868-81; PMID:12802061; http://dx.doi.org/10. 1091/mbc.E02-10-0687
-
(2003)
Mol Biol Cell
, vol.14
, pp. 1868-1881
-
-
Kweon, Y.1
Rothe, A.2
Conibear, E.3
Stevens, T.H.4
-
332
-
-
78650812302
-
Antibacterial autophagy occurs at PI(3)P-enriched domains of the endoplasmic reticulum and requires Rab1 GTPase
-
PMID:20980813
-
Huang J, Birmingham CL, Shahnazari S, Shiu J, Zheng YT, Smith AC, et al. Antibacterial autophagy occurs at PI(3)P-enriched domains of the endoplasmic reticulum and requires Rab1 GTPase. Autophagy 2011; 7:17-26; PMID:20980813; http://dx.doi.org/10.4161/auto.7.1.13840
-
(2011)
Autophagy
, vol.7
, pp. 17-26
-
-
Huang, J.1
Birmingham, C.L.2
Shahnazari, S.3
Shiu, J.4
Zheng, Y.T.5
Smith, A.C.6
-
333
-
-
77955239270
-
Autophagosome formation depends on the small GTPase Rab1 and functional ER exit sites
-
PMID:20545908
-
Zoppino FC, Militello RD, Slavin I, Alvarez C, Colombo MI. Autophagosome formation depends on the small GTPase Rab1 and functional ER exit sites. Traffic 2010; 11:1246-61; PMID:20545908; http://dx.doi.org/10.1111/j.1600-0854.2010. 01086.x
-
(2010)
Traffic
, vol.11
, pp. 1246-1261
-
-
Zoppino, F.C.1
Militello, R.D.2
Slavin, I.3
Alvarez, C.4
Colombo, M.I.5
-
334
-
-
79951805767
-
Atg1-mediated myosin II activation regulates autophagosome formation during starvation-induced autophagy
-
PMID:21169990
-
Tang H-W, Wang Y-B, Wang S-L, Wu M-H, Lin S-Y, Chen G-C. Atg1-mediated myosin II activation regulates autophagosome formation during starvation-induced autophagy. EMBO J 2011; 30:2867-76; PMID:21169990; http://dx.doi.org/10.1038/ emboj.2010.338
-
(2011)
EMBO J
, vol.30
, pp. 2867-2876
-
-
Tang, H.-W.1
Wang, Y.-B.2
Wang, S.-L.3
Wu, M.-H.4
Lin, S.-Y.5
Chen, G.-C.6
-
335
-
-
79953144994
-
Zymophagy, a novel selective autophagy pathway mediated by VMP1-USP9x-p62, prevents pancreatic cell death
-
PMID:21173155
-
Grasso D, Ropolo A, Lo Re A, Boggio V, Molejon MI, Iovanna JL, et al. Zymophagy, a novel selective autophagy pathway mediated by VMP1-USP9x-p62, prevents pancreatic cell death. J Biol Chem 2011; 286:8308-24; PMID:21173155; http://dx.doi. org/10.1074/jbc.M110.197301
-
(2011)
J Biol Chem
, vol.286
, pp. 8308-8324
-
-
Grasso, D.1
Ropolo, A.2
Lo Re, A.3
Boggio, V.4
Molejon, M.I.5
Iovanna, J.L.6
|