-
1
-
-
78751672975
-
Autophagy in immunity and inflammation
-
Levine B, Mizushima N, Virgin HW, (2011) Autophagy in immunity and inflammation. Nature 469: 323–335.
-
(2011)
Nature
, vol.469
, pp. 323-335
-
-
Levine, B.1
Mizushima, N.2
Virgin, H.W.3
-
2
-
-
84861782476
-
Bacterial autophagy: restriction or promotion of bacterial replication?
-
Mostowy S, Cossart P, (2012) Bacterial autophagy: restriction or promotion of bacterial replication? Trend Cell Biol 22: 283–291.
-
(2012)
Trend Cell Biol
, vol.22
, pp. 283-291
-
-
Mostowy, S.1
Cossart, P.2
-
3
-
-
84892678766
-
Bacteria-autophagy interplay: a battle for survival
-
Huang J, Brumell JH, (2014) Bacteria-autophagy interplay: a battle for survival. Nat Rev Micro 12: 101–114.
-
(2014)
Nat Rev Micro
, vol.12
, pp. 101-114
-
-
Huang, J.1
Brumell, J.H.2
-
4
-
-
84883800725
-
Autophagy and bacterial infection: an evolving arms race
-
Choy A, Roy CR, (2013) Autophagy and bacterial infection: an evolving arms race. Trends Microbiol 21: 451–456.
-
(2013)
Trends Microbiol
, vol.21
, pp. 451-456
-
-
Choy, A.1
Roy, C.R.2
-
6
-
-
84892859905
-
Interactions between autophagy receptors and ubiquitin-like proteins form the molecular basis for selective autophagy
-
Rogov V, Dötsch V, Johansen T, Kirkin V, (2014) Interactions between autophagy receptors and ubiquitin-like proteins form the molecular basis for selective autophagy. Mol Cell 53: 167–178.
-
(2014)
Mol Cell
, vol.53
, pp. 167-178
-
-
Rogov, V.1
Dötsch, V.2
Johansen, T.3
Kirkin, V.4
-
7
-
-
84873741499
-
Autophagy and bacterial clearance: a not so clear picture
-
Mostowy S, (2013) Autophagy and bacterial clearance: a not so clear picture. Cell Microbiol 15: 395–402.
-
(2013)
Cell Microbiol
, vol.15
, pp. 395-402
-
-
Mostowy, S.1
-
8
-
-
84869413919
-
The actin cytoskeleton participates in the early events of autophagosome formation upon starvation induced autophagy
-
Aguilera MO, Berón W, Colombo MI, (2012) The actin cytoskeleton participates in the early events of autophagosome formation upon starvation induced autophagy. Autophagy 8: 1590–1603.
-
(2012)
Autophagy
, vol.8
, pp. 1590-1603
-
-
Aguilera, M.O.1
Berón, W.2
Colombo, M.I.3
-
9
-
-
84900460616
-
Mutation in VPS35 associated with Parkinson's disease impairs WASH complex association and inhibits autophagy
-
Zavodszky E, Seaman MNJ, Moreau K, Jimenez-Sanchez M, Breusegem SY, et al. (2014) Mutation in VPS35 associated with Parkinson's disease impairs WASH complex association and inhibits autophagy. Nat Commun 5: 3828.
-
(2014)
Nat Commun
, vol.5
, pp. 3828
-
-
Zavodszky, E.1
Seaman, M.N.J.2
Moreau, K.3
Jimenez-Sanchez, M.4
Breusegem, S.Y.5
-
10
-
-
77649337122
-
HDAC6 controls autophagosome maturation essential for ubiquitin-selective quality-control autophagy
-
Lee JY, Koga H, Kawaguchi Y, Tang W, Wong E, et al. (2010) HDAC6 controls autophagosome maturation essential for ubiquitin-selective quality-control autophagy. EMBO J 29: 969–980.
-
(2010)
EMBO J
, vol.29
, pp. 969-980
-
-
Lee, J.Y.1
Koga, H.2
Kawaguchi, Y.3
Tang, W.4
Wong, E.5
-
11
-
-
84883850330
-
Arp2/3-mediated actin-based motility: a tail of pathogen abuse
-
Welch MD, Way M, (2013) Arp2/3-mediated actin-based motility: a tail of pathogen abuse. Cell Host Microbe 14: 242–255.
-
(2013)
Cell Host Microbe
, vol.14
, pp. 242-255
-
-
Welch, M.D.1
Way, M.2
-
12
-
-
70349652310
-
Listeria monocytogenes ActA-mediated escape from autophagic recognition
-
Yoshikawa Y, Ogawa M, Hain T, Yoshida M, Fukumatsu M, et al. (2009) Listeria monocytogenes ActA-mediated escape from autophagic recognition. Nat Cell Biol 11: 1233–1240.
-
(2009)
Nat Cell Biol
, vol.11
, pp. 1233-1240
-
-
Yoshikawa, Y.1
Ogawa, M.2
Hain, T.3
Yoshida, M.4
Fukumatsu, M.5
-
13
-
-
79960670161
-
p62 and NDP52 proteins target intracytosolic Shigella and Listeria to different autophagy pathways
-
Mostowy S, Sancho-Shimizu V, Hamon MA, Simeone R, Brosch R, et al. (2011) p62 and NDP52 proteins target intracytosolic Shigella and Listeria to different autophagy pathways. J Biol Chem 286: 26987–26995.
-
(2011)
J Biol Chem
, vol.286
, pp. 26987-26995
-
-
Mostowy, S.1
Sancho-Shimizu, V.2
Hamon, M.A.3
Simeone, R.4
Brosch, R.5
-
14
-
-
78349239252
-
Entrapment of intracytosolic bacteria by septin cage-like structures
-
Mostowy S, Bonazzi M, Hamon MA, Tham TN, Mallet A, et al. (2010) Entrapment of intracytosolic bacteria by septin cage-like structures. Cell Host Microbe 8: 433–444.
-
(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
-
15
-
-
13244256806
-
Escape of intracellular Shigella from autophagy
-
Ogawa M, Yoshimori T, Suzuki T, Sagara H, Mizushima N, et al. (2005) Escape of intracellular Shigella from autophagy. Science 307: 727–731.
-
(2005)
Science
, vol.307
, pp. 727-731
-
-
Ogawa, M.1
Yoshimori, T.2
Suzuki, T.3
Sagara, H.4
Mizushima, N.5
-
16
-
-
79956147302
-
A Tecpr1-dependent selective autophagy pathway targets bacterial pathogens
-
Ogawa M, Yoshikawa Y, Kobayashi T, Mimuro H, Fukumatsu M, et al. (2011) A Tecpr1-dependent selective autophagy pathway targets bacterial pathogens. Cell Host Microbe 9: 376–389.
-
(2011)
Cell Host Microbe
, vol.9
, pp. 376-389
-
-
Ogawa, M.1
Yoshikawa, Y.2
Kobayashi, T.3
Mimuro, H.4
Fukumatsu, M.5
-
17
-
-
84862777210
-
A mammalian autophagosome maturation mechanism mediated by TECPR1 and the Atg12-Atg5 conjugate
-
Chen D, Fan W, Lu Y, Ding X, Chen S, et al. (2012) A mammalian autophagosome maturation mechanism mediated by TECPR1 and the Atg12-Atg5 conjugate. Mol Cell 45: 629–641.
-
(2012)
Mol Cell
, vol.45
, pp. 629-641
-
-
Chen, D.1
Fan, W.2
Lu, Y.3
Ding, X.4
Chen, S.5
-
18
-
-
67749124111
-
Multiple roles of the cytoskeleton in autophagy
-
Monastyrska I, Rieter E, Klionsky DJ, Reggiori F, (2009) Multiple roles of the cytoskeleton in autophagy. Biol Rev 84: 431–448.
-
(2009)
Biol Rev
, vol.84
, pp. 431-448
-
-
Monastyrska, I.1
Rieter, E.2
Klionsky, D.J.3
Reggiori, F.4
-
19
-
-
79953316595
-
Lysosomal positioning coordinates cellular nutrient responses
-
Korolchuk VI, Saiki S, Lichtenberg M, Siddiqi FH, Roberts EA, et al. (2011) Lysosomal positioning coordinates cellular nutrient responses. Nat Cell Biol 13: 453–460.
-
(2011)
Nat Cell Biol
, vol.13
, pp. 453-460
-
-
Korolchuk, V.I.1
Saiki, S.2
Lichtenberg, M.3
Siddiqi, F.H.4
Roberts, E.A.5
-
20
-
-
84883051560
-
Modulation of host microtubule dynamics by pathogenic bacteria
-
Radhakrishnan GK, Splitter GA, (2012) Modulation of host microtubule dynamics by pathogenic bacteria. Biomol Concepts 3: 571–580.
-
(2012)
Biomol Concepts
, vol.3
, pp. 571-580
-
-
Radhakrishnan, G.K.1
Splitter, G.A.2
-
21
-
-
0034115055
-
LaXp180, a mammalian ActA-binding protein, identified with the yeast two-hybrid system, co-localizes with intracellular Listeria monocytogenes
-
Pfeuffer T, Goebel W, Laubinger J, Bachmann M, Kuhn M, (2000) LaXp180, a mammalian ActA-binding protein, identified with the yeast two-hybrid system, co-localizes with intracellular Listeria monocytogenes. Cell Microbiol 2: 101–114.
-
(2000)
Cell Microbiol
, vol.2
, pp. 101-114
-
-
Pfeuffer, T.1
Goebel, W.2
Laubinger, J.3
Bachmann, M.4
Kuhn, M.5
-
22
-
-
33750969058
-
Microtubule-severing activity of Shigella is pivotal for intercellular spreading
-
Yoshida S, Handa Y, Suzuki T, Ogawa M, Suzuki M, et al. (2006) Microtubule-severing activity of Shigella is pivotal for intercellular spreading. Science 314: 985–989.
-
(2006)
Science
, vol.314
, pp. 985-989
-
-
Yoshida, S.1
Handa, Y.2
Suzuki, T.3
Ogawa, M.4
Suzuki, M.5
-
23
-
-
78650812302
-
Antibacterial autophagy occurs at PI(3)P-enriched domains of the endoplasmic reticulum and requires Rab1 GTPase
-
Huang J, Birmingham C, Shahnazari S, Shiu J, Zheng Y, et al. (2011) Antibacterial autophagy occurs at PI(3)P-enriched domains of the endoplasmic reticulum and requires Rab1 GTPase. Autophagy 7: 17–26.
-
(2011)
Autophagy
, vol.7
, pp. 17-26
-
-
Huang, J.1
Birmingham, C.2
Shahnazari, S.3
Shiu, J.4
Zheng, Y.5
-
24
-
-
84865693202
-
Structurally distinct bacterial TBC-like GAPs link Arf GTPase to Rab1 inactivation to counteract host defenses
-
Dong N, Zhu Y, Lu Q, Hu L, Zheng Y, et al. (2012) Structurally distinct bacterial TBC-like GAPs link Arf GTPase to Rab1 inactivation to counteract host defenses. Cell 150: 1029–1041.
-
(2012)
Cell
, vol.150
, pp. 1029-1041
-
-
Dong, N.1
Zhu, Y.2
Lu, Q.3
Hu, L.4
Zheng, Y.5
-
25
-
-
0036300862
-
SifA, a type III secreted effector of Salmonella typhimurium, directs Salmonella-induced filament (Sif) formation along microtubules
-
Brumell JH, Goosney DL, Finlay BB, (2002) SifA, a type III secreted effector of Salmonella typhimurium, directs Salmonella-induced filament (Sif) formation along microtubules. Traffic 3: 407–415.
-
(2002)
Traffic
, vol.3
, pp. 407-415
-
-
Brumell, J.H.1
Goosney, D.L.2
Finlay, B.B.3
-
26
-
-
74049126112
-
The adaptor protein p62/SQSTM1 targets invading bacteria to the autophagy pathway
-
Zheng YT, Shahnazari S, Brech A, Lamark T, Johansen T, et al. (2009) The adaptor protein p62/SQSTM1 targets invading bacteria to the autophagy pathway. J Immunol 183: 5909–5916.
-
(2009)
J Immunol
, vol.183
, pp. 5909-5916
-
-
Zheng, Y.T.1
Shahnazari, S.2
Brech, A.3
Lamark, T.4
Johansen, T.5
-
27
-
-
70350450808
-
The TBK1 adaptor and autophagy receptor NDP52 restricts the proliferation of ubiquitin-coated bacteria
-
Thurston TLM, Ryzhakov G, Bloor S, von Muhlinen N, Randow F, (2009) The TBK1 adaptor and autophagy receptor NDP52 restricts the proliferation of ubiquitin-coated bacteria. Nat Immunol 10: 1215–1221.
-
(2009)
Nat Immunol
, vol.10
, pp. 1215-1221
-
-
Thurston, T.L.M.1
Ryzhakov, G.2
Bloor, S.3
von Muhlinen, N.4
Randow, F.5
-
28
-
-
84899765817
-
Autophagy facilitates Salmonella replication in HeLa cells
-
Yu HB, Croxen MA, Marchiando AM, Ferreira RBR, Cadwell K, et al. (2014) Autophagy facilitates Salmonella replication in HeLa cells. mBio 5: e00865–14.
-
(2014)
mBio
, vol.5
-
-
Yu, H.B.1
Croxen, M.A.2
Marchiando, A.M.3
Ferreira, R.B.R.4
Cadwell, K.5
-
29
-
-
65249185812
-
A novel hybrid yeast-human network analysis reveals an essential role for FNBP1L in antibacterial autophagy
-
Huett A, Ng A, Cao Z, Kuballa P, Komatsu M, et al. (2009) A novel hybrid yeast-human network analysis reveals an essential role for FNBP1L in antibacterial autophagy. J Immunol 182: 4917–4930.
-
(2009)
J Immunol
, vol.182
, pp. 4917-4930
-
-
Huett, A.1
Ng, A.2
Cao, Z.3
Kuballa, P.4
Komatsu, M.5
-
30
-
-
84899553358
-
Host and bacterial proteins that repress recruitment of LC3 to Shigella early during infection
-
Baxt LA, Goldberg MB, (2014) Host and bacterial proteins that repress recruitment of LC3 to Shigella early during infection. PLoS ONE 9: e94653.
-
(2014)
PLoS ONE
, vol.9
, pp. e94653
-
-
Baxt, L.A.1
Goldberg, M.B.2
-
31
-
-
38049043442
-
Bacterial actin assembly requires Toca-1 to relieve N-WASP autoinhibition
-
Leung Y, Ally S, Goldberg MB, (2008) Bacterial actin assembly requires Toca-1 to relieve N-WASP autoinhibition. Cell Host Microbe 3: 39–47.
-
(2008)
Cell Host Microbe
, vol.3
, pp. 39-47
-
-
Leung, Y.1
Ally, S.2
Goldberg, M.B.3
-
32
-
-
84869147050
-
Akt-mediated regulation of autophagy and tumorigenesis through Beclin 1 phosphorylation
-
Wang RC, Wei Y, An Z, Zou Z, Xiao G, et al. (2012) Akt-mediated regulation of autophagy and tumorigenesis through Beclin 1 phosphorylation. Science 338: 956–959.
-
(2012)
Science
, vol.338
, pp. 956-959
-
-
Wang, R.C.1
Wei, Y.2
An, Z.3
Zou, Z.4
Xiao, G.5
-
33
-
-
0035065113
-
Mammalian 14-3-3β associates with the Chlamydia trachomatis inclusion membrane via its interaction with IncG
-
Scidmore MA, Hackstadt T, (2001) Mammalian 14-3-3β associates with the Chlamydia trachomatis inclusion membrane via its interaction with IncG. Mol Microbiol 39: 1638–1650.
-
(2001)
Mol Microbiol
, vol.39
, pp. 1638-1650
-
-
Scidmore, M.A.1
Hackstadt, T.2
-
34
-
-
48649108402
-
Actin and intermediate filaments stabilize the Chlamydia trachomatis vacuole by forming dynamic structural scaffolds
-
Kumar Y, Valdivia RH, (2008) Actin and intermediate filaments stabilize the Chlamydia trachomatis vacuole by forming dynamic structural scaffolds. Cell Host Microbe 4: 159–169.
-
(2008)
Cell Host Microbe
, vol.4
, pp. 159-169
-
-
Kumar, Y.1
Valdivia, R.H.2
-
35
-
-
84883655855
-
Hidden behind autophagy: the unconventional roles of ATG proteins
-
Bestebroer J, V'Kovski P, Mauthe M, Reggiori F, (2013) Hidden behind autophagy: the unconventional roles of ATG proteins. Traffic 14: 1029–1041.
-
(2013)
Traffic
, vol.14
, pp. 1029-1041
-
-
Bestebroer, J.1
V'Kovski, P.2
Mauthe, M.3
Reggiori, F.4
-
36
-
-
84872194128
-
Autophagy restricts Chlamydia trachomatis growth in human macrophages via IFNG-inducible guanylate binding proteins
-
Al-Zeer M, Al-Younes H, Lauster D, Abu Lubad M, Meyer T, (2013) Autophagy restricts Chlamydia trachomatis growth in human macrophages via IFNG-inducible guanylate binding proteins. Autophagy 9: 50–62.
-
(2013)
Autophagy
, vol.9
, pp. 50-62
-
-
Al-Zeer, M.1
Al-Younes, H.2
Lauster, D.3
Abu Lubad, M.4
Meyer, T.5
-
37
-
-
84857457272
-
Septins: the fourth component of the cytoskeleton
-
Mostowy S, Cossart P, (2012) Septins: the fourth component of the cytoskeleton. Nat Rev Mol Cell Biol 13: 183–194.
-
(2012)
Nat Rev Mol Cell Biol
, vol.13
, pp. 183-194
-
-
Mostowy, S.1
Cossart, P.2
-
38
-
-
84885720661
-
The immune system GTPase GIMAP6 interacts with the Atg8 homologue GABARAPL2 and is recruited to autophagosomes
-
Pascall JC, Rotondo S, Mukadam AS, Oxley D, Webster J, et al. (2013) The immune system GTPase GIMAP6 interacts with the Atg8 homologue GABARAPL2 and is recruited to autophagosomes. PLoS ONE 8: e77782.
-
(2013)
PLoS ONE
, vol.8
, pp. e77782
-
-
Pascall, J.C.1
Rotondo, S.2
Mukadam, A.S.3
Oxley, D.4
Webster, J.5
-
39
-
-
84869080400
-
LC3C, bound selectively by a noncanonical LIR motif in NDP52, is required for antibacterial autophagy
-
von Muhlinen N, Akutsu M, Ravenhill BJ, Foeglein Á, Bloor S, et al. (2012) LC3C, bound selectively by a noncanonical LIR motif in NDP52, is required for antibacterial autophagy. Mol Cell 48: 329–342.
-
(2012)
Mol Cell
, vol.48
, pp. 329-342
-
-
von Muhlinen, N.1
Akutsu, M.2
Ravenhill, B.J.3
Foeglein, Á.4
Bloor, S.5
-
40
-
-
58349115398
-
Septin-mediated uniform bracing of phospholipid membranes
-
Tanaka-Takiguchi Y, Kinoshita M, Takiguchi K, (2009) Septin-mediated uniform bracing of phospholipid membranes. Curr Biol 19: 140–145.
-
(2009)
Curr Biol
, vol.19
, pp. 140-145
-
-
Tanaka-Takiguchi, Y.1
Kinoshita, M.2
Takiguchi, K.3
-
41
-
-
84857389419
-
Actin filament curvature biases branching direction
-
Prisca VI, Wang EB, Chaudhuri O, Chia JJ, Geissler PL, et al. (2012) Actin filament curvature biases branching direction. Proc Natl Acad Sci U S A 109: 2913–2918.
-
(2012)
Proc Natl Acad Sci U S A
, vol.109
, pp. 2913-2918
-
-
Prisca, V.I.1
Wang, E.B.2
Chaudhuri, O.3
Chia, J.J.4
Geissler, P.L.5
-
42
-
-
84897580676
-
Septins promote F-actin ring formation by crosslinking actin filaments into curved bundles
-
Mavrakis M, Azou-Gros Y, Tsai F-C, Alvarado J, Bertin A, et al. (2014) Septins promote F-actin ring formation by crosslinking actin filaments into curved bundles. Nat Cell Biol 16: 322–334.
-
(2014)
Nat Cell Biol
, vol.16
, pp. 322-334
-
-
Mavrakis, M.1
Azou-Gros, Y.2
Tsai, F.-C.3
Alvarado, J.4
Bertin, A.5
-
43
-
-
84884683427
-
The zebrafish as a new model for the in vivo study of Shigella flexneri interaction with phagocytes and bacterial autophagy
-
Mostowy S, Boucontet L, Mazon Moya MJ, Sirianni A, Boudinot P, et al. (2013) The zebrafish as a new model for the in vivo study of Shigella flexneri interaction with phagocytes and bacterial autophagy. PLoS Pathog 9: e1003588.
-
(2013)
PLoS Pathog
, vol.9
, pp. e1003588
-
-
Mostowy, S.1
Boucontet, L.2
Mazon Moya, M.J.3
Sirianni, A.4
Boudinot, P.5
|