-
1
-
-
2142697998
-
Metabolic and molecular basis of peroxisomal disorders: a review
-
Wanders RJ (2004) Metabolic and molecular basis of peroxisomal disorders: a review. Am J Med Genet A 126A: 355–375
-
(2004)
Am J Med Genet A
, vol.126A
, pp. 355-375
-
-
Wanders, R.J.1
-
2
-
-
84906491186
-
Peroxisome biogenesis in mammalian cells
-
Fujiki Y, Okumoto K, Mukai S, Honsho M, Tamura S (2014) Peroxisome biogenesis in mammalian cells. Front Physiol 5: 307
-
(2014)
Front Physiol
, vol.5
, pp. 307
-
-
Fujiki, Y.1
Okumoto, K.2
Mukai, S.3
Honsho, M.4
Tamura, S.5
-
3
-
-
84885105969
-
A tuberous sclerosis complex signalling node at the peroxisome regulates mTORC1 and autophagy in response to ROS
-
Zhang J, Kim J, Alexander A, Cai S, Tripathi DN, Dere R, Tee AR, Tait-Mulder J, Di Nardo A, Han JM et al (2013) A tuberous sclerosis complex signalling node at the peroxisome regulates mTORC1 and autophagy in response to ROS. Nat Cell Biol 15: 1186–1196
-
(2013)
Nat Cell Biol
, vol.15
, pp. 1186-1196
-
-
Zhang, J.1
Kim, J.2
Alexander, A.3
Cai, S.4
Tripathi, D.N.5
Dere, R.6
Tee, A.R.7
Tait-Mulder, J.8
Di Nardo, A.9
Han, J.M.10
-
4
-
-
77952503750
-
Peroxisomes are signaling platforms for antiviral innate immunity
-
Dixit E, Boulant S, Zhang Y, Lee AS, Odendall C, Shum B, Hacohen N, Chen ZJ, Whelan SP, Fransen M et al (2010) Peroxisomes are signaling platforms for antiviral innate immunity. Cell 141: 668–681
-
(2010)
Cell
, vol.141
, pp. 668-681
-
-
Dixit, E.1
Boulant, S.2
Zhang, Y.3
Lee, A.S.4
Odendall, C.5
Shum, B.6
Hacohen, N.7
Chen, Z.J.8
Whelan, S.P.9
Fransen, M.10
-
5
-
-
0029795686
-
Pex13p is an SH3 protein of the peroxisome membrane and a docking factor for the predominantly cytoplasmic PTs1 receptor
-
Gould SJ, Kalish JE, Morrell JC, Bjorkman J, Urquhart AJ, Crane DI (1996) Pex13p is an SH3 protein of the peroxisome membrane and a docking factor for the predominantly cytoplasmic PTs1 receptor. J Cell Biol 135: 85–95
-
(1996)
J Cell Biol
, vol.135
, pp. 85-95
-
-
Gould, S.J.1
Kalish, J.E.2
Morrell, J.C.3
Bjorkman, J.4
Urquhart, A.J.5
Crane, D.I.6
-
6
-
-
0033364728
-
PEX13 is mutated in complementation group 13 of the peroxisome-biogenesis disorders
-
Liu Y, Bjorkman J, Urquhart A, Wanders RJ, Crane DI, Gould SJ (1999) PEX13 is mutated in complementation group 13 of the peroxisome-biogenesis disorders. Am J Hum Genet 65: 621–634
-
(1999)
Am J Hum Genet
, vol.65
, pp. 621-634
-
-
Liu, Y.1
Bjorkman, J.2
Urquhart, A.3
Wanders, R.J.4
Crane, D.I.5
Gould, S.J.6
-
7
-
-
33746366462
-
Biochemistry of mammalian peroxisomes revisited
-
Wanders RJ, Waterham HR (2006) Biochemistry of mammalian peroxisomes revisited. Annu Rev Biochem 75: 295–332
-
(2006)
Annu Rev Biochem
, vol.75
, pp. 295-332
-
-
Wanders, R.J.1
Waterham, H.R.2
-
8
-
-
14244267510
-
Peroxisomal disorders I: biochemistry and genetics of peroxisome biogenesis disorders
-
Wanders RJ, Waterham HR (2005) Peroxisomal disorders I: biochemistry and genetics of peroxisome biogenesis disorders. Clin Genet 67: 107–133
-
(2005)
Clin Genet
, vol.67
, pp. 107-133
-
-
Wanders, R.J.1
Waterham, H.R.2
-
9
-
-
34347360691
-
A novel PEX12 mutation identified as the cause of a peroxisomal biogenesis disorder with mild clinical phenotype, mild biochemical abnormalities in fibroblasts and a mosaic catalase immunofluorescence pattern, even at 40 degrees C
-
Zeharia A, Ebberink MS, Wanders RJ, Waterham HR, Gutman A, Nissenkorn A, Korman SH (2007) A novel PEX12 mutation identified as the cause of a peroxisomal biogenesis disorder with mild clinical phenotype, mild biochemical abnormalities in fibroblasts and a mosaic catalase immunofluorescence pattern, even at 40 degrees C. J Hum Genet 52: 599–606
-
(2007)
J Hum Genet
, vol.52
, pp. 599-606
-
-
Zeharia, A.1
Ebberink, M.S.2
Wanders, R.J.3
Waterham, H.R.4
Gutman, A.5
Nissenkorn, A.6
Korman, S.H.7
-
10
-
-
33745538998
-
Pitfall in metabolic screening in a patient with fatal peroxisomal beta-oxidation defect
-
Rosewich H, Waterham HR, Wanders RJ, Ferdinandusse S, Henneke M, Hunneman D, Gartner J (2006) Pitfall in metabolic screening in a patient with fatal peroxisomal beta-oxidation defect. Neuropediatrics 37: 95–98
-
(2006)
Neuropediatrics
, vol.37
, pp. 95-98
-
-
Rosewich, H.1
Waterham, H.R.2
Wanders, R.J.3
Ferdinandusse, S.4
Henneke, M.5
Hunneman, D.6
Gartner, J.7
-
11
-
-
37649005234
-
Autophagy in the pathogenesis of disease
-
Levine B, Kroemer G (2008) Autophagy in the pathogenesis of disease. Cell 132: 27–42
-
(2008)
Cell
, vol.132
, pp. 27-42
-
-
Levine, B.1
Kroemer, G.2
-
12
-
-
84880376355
-
Emerging regulation and functions of autophagy
-
Boya P, Reggiori F, Codogno P (2013) Emerging regulation and functions of autophagy. Nat Cell Biol 15: 713–720
-
(2013)
Nat Cell Biol
, vol.15
, pp. 713-720
-
-
Boya, P.1
Reggiori, F.2
Codogno, P.3
-
13
-
-
84901815187
-
Cargo recognition and trafficking in selective autophagy
-
Stolz A, Ernst A, Dikic I (2014) Cargo recognition and trafficking in selective autophagy. Nat Cell Biol 16: 495–501
-
(2014)
Nat Cell Biol
, vol.16
, pp. 495-501
-
-
Stolz, A.1
Ernst, A.2
Dikic, I.3
-
14
-
-
84892859905
-
Interactions between autophagy receptors and ubiquitin-like proteins form the molecular basis for selective autophagy
-
Rogov V, Dotsch 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
Dotsch, V.2
Johansen, T.3
Kirkin, V.4
-
15
-
-
84877628647
-
Autophagy in human health and disease
-
Choi AM, Ryter SW, Levine B (2013) Autophagy in human health and disease. N Engl J Med 368: 1845–1846
-
(2013)
N Engl J Med
, vol.368
, pp. 1845-1846
-
-
Choi, A.M.1
Ryter, S.W.2
Levine, B.3
-
16
-
-
82555187810
-
Image-based genome-wide siRNA screen identifies selective autophagy factors
-
Orvedahl A, Sumpter R Jr, Xiao G, Ng A, Zou Z, Tang Y, Narimatsu M, Gilpin C, Sun Q, Roth M et al (2011) Image-based genome-wide siRNA screen identifies selective autophagy factors. Nature 480: 113–117
-
(2011)
Nature
, vol.480
, pp. 113-117
-
-
Orvedahl, A.1
Sumpter, R.2
Xiao, G.3
Ng, A.4
Zou, Z.5
Tang, Y.6
Narimatsu, M.7
Gilpin, C.8
Sun, Q.9
Roth, M.10
-
17
-
-
76249112828
-
Autophagy protects against Sindbis virus infection of the central nervous system
-
Orvedahl A, MacPherson S, Sumpter R Jr, Talloczy Z, Zou Z, Levine B (2010) Autophagy protects against Sindbis virus infection of the central nervous system. Cell Host Microbe 7: 115–127
-
(2010)
Cell Host Microbe
, vol.7
, pp. 115-127
-
-
Orvedahl, A.1
MacPherson, S.2
Sumpter, R.3
Talloczy, Z.4
Zou, Z.5
Levine, B.6
-
18
-
-
84964587158
-
Fanconi anemia proteins function in mitophagy and immunity
-
Sumpter R Jr, Sirasanagandla S, Fernandez AF, Wei Y, Dong X, Franco L, Zou Z, Marchal C, Lee MY, Clapp DW et al (2016) Fanconi anemia proteins function in mitophagy and immunity. Cell 165: 867–881
-
(2016)
Cell
, vol.165
, pp. 867-881
-
-
Sumpter, R.1
Sirasanagandla, S.2
Fernandez, A.F.3
Wei, Y.4
Dong, X.5
Franco, L.6
Zou, Z.7
Marchal, C.8
Lee, M.Y.9
Clapp, D.W.10
-
19
-
-
84887466109
-
The protonophore CCCP interferes with lysosomal degradation of autophagic cargo in yeast and mammalian cells
-
Padman BS, Bach M, Lucarelli G, Prescott M, Ramm G (2013) The protonophore CCCP interferes with lysosomal degradation of autophagic cargo in yeast and mammalian cells. Autophagy 9: 1862–1875
-
(2013)
Autophagy
, vol.9
, pp. 1862-1875
-
-
Padman, B.S.1
Bach, M.2
Lucarelli, G.3
Prescott, M.4
Ramm, G.5
-
20
-
-
79957472437
-
Parkin mediates proteasome-dependent protein degradation and rupture of the outer mitochondrial membrane
-
Yoshii SR, Kishi C, Ishihara N, Mizushima N (2011) Parkin mediates proteasome-dependent protein degradation and rupture of the outer mitochondrial membrane. J Biol Chem 286: 19630–19640
-
(2011)
J Biol Chem
, vol.286
, pp. 19630-19640
-
-
Yoshii, S.R.1
Kishi, C.2
Ishihara, N.3
Mizushima, N.4
-
21
-
-
0042632799
-
Pex13 inactivation in the mouse disrupts peroxisome biogenesis and leads to a Zellweger syndrome phenotype
-
Maxwell M, Bjorkman J, Nguyen T, Sharp P, Finnie J, Paterson C, Tonks I, Paton BC, Kay GF, Crane DI (2003) Pex13 inactivation in the mouse disrupts peroxisome biogenesis and leads to a Zellweger syndrome phenotype. Mol Cell Biol 23: 5947–5957
-
(2003)
Mol Cell Biol
, vol.23
, pp. 5947-5957
-
-
Maxwell, M.1
Bjorkman, J.2
Nguyen, T.3
Sharp, P.4
Finnie, J.5
Paterson, C.6
Tonks, I.7
Paton, B.C.8
Kay, G.F.9
Crane, D.I.10
-
22
-
-
0033014751
-
Nonsense and temperature-sensitive mutations in PEX13 are the cause of complementation group H of peroxisome biogenesis disorders
-
Shimozawa N, Suzuki Y, Zhang Z, Imamura A, Toyama R, Mukai S, Fujiki Y, Tsukamoto T, Osumi T, Orii T et al (1999) Nonsense and temperature-sensitive mutations in PEX13 are the cause of complementation group H of peroxisome biogenesis disorders. Hum Mol Genet 8: 1077–1083
-
(1999)
Hum Mol Genet
, vol.8
, pp. 1077-1083
-
-
Shimozawa, N.1
Suzuki, Y.2
Zhang, Z.3
Imamura, A.4
Toyama, R.5
Mukai, S.6
Fujiki, Y.7
Tsukamoto, T.8
Osumi, T.9
Orii, T.10
-
23
-
-
84884552619
-
Functional analysis of PEX13 mutation in a Zellweger syndrome spectrum patient reveals novel homooligomerization of PEX13 and its role in human peroxisome biogenesis
-
Krause C, Rosewich H, Woehler A, Gartner J (2013) Functional analysis of PEX13 mutation in a Zellweger syndrome spectrum patient reveals novel homooligomerization of PEX13 and its role in human peroxisome biogenesis. Hum Mol Genet 22: 3844–3857
-
(2013)
Hum Mol Genet
, vol.22
, pp. 3844-3857
-
-
Krause, C.1
Rosewich, H.2
Woehler, A.3
Gartner, J.4
-
24
-
-
77953726483
-
Mammalian Atg18 (WIPI2) localizes to omegasome-anchored phagophores and positively regulates LC3 lipidation
-
Polson HE, de Lartique J, Rigden DJ, Reedijk M, Urbe S, Claque MJ, Tooze SA (2010) Mammalian Atg18 (WIPI2) localizes to omegasome-anchored phagophores and positively regulates LC3 lipidation. Autophagy 6: 506–522
-
(2010)
Autophagy
, vol.6
, pp. 506-522
-
-
Polson, H.E.1
de Lartique, J.2
Rigden, D.J.3
Reedijk, M.4
Urbe, S.5
Claque, M.J.6
Tooze, S.A.7
-
25
-
-
70350674903
-
Peroxisome dynamics in cultured mammalian cells
-
Huybrechts SJ, Van Veldhoven PP, Brees C, Mannaerts GP, Los GV, Fransen M (2009) Peroxisome dynamics in cultured mammalian cells. Traffic 10: 1722–1733
-
(2009)
Traffic
, vol.10
, pp. 1722-1733
-
-
Huybrechts, S.J.1
Van Veldhoven, P.P.2
Brees, C.3
Mannaerts, G.P.4
Los, G.V.5
Fransen, M.6
-
26
-
-
84925776380
-
Peroxisomal Pex3 activates selective autophagy of peroxisomes via interaction with the pexophagy receptor Atg30
-
Burnett SF, Farre JC, Nazarko TY, Subramani S (2015) Peroxisomal Pex3 activates selective autophagy of peroxisomes via interaction with the pexophagy receptor Atg30. J Biol Chem 290: 8623–8631
-
(2015)
J Biol Chem
, vol.290
, pp. 8623-8631
-
-
Burnett, S.F.1
Farre, J.C.2
Nazarko, T.Y.3
Subramani, S.4
-
27
-
-
84925775785
-
The membrane peroxin PEX3 induces peroxisome-ubiquitination-linked pexophagy
-
Yamashita S, Abe K, Tatemichi Y, Fujiki Y (2014) The membrane peroxin PEX3 induces peroxisome-ubiquitination-linked pexophagy. Autophagy 10: 1549–1564
-
(2014)
Autophagy
, vol.10
, pp. 1549-1564
-
-
Yamashita, S.1
Abe, K.2
Tatemichi, Y.3
Fujiki, Y.4
-
29
-
-
79960804104
-
Phosphorylation of the autophagy receptor optineurin restricts Salmonella growth
-
Wild P, Farhan H, McEwan DG, Wagner S, Rogov VV, Brady NR, Richter B, Korac J, Waidmann O, Choudhary C et al (2011) Phosphorylation of the autophagy receptor optineurin restricts Salmonella growth. Science 333: 228–233
-
(2011)
Science
, vol.333
, pp. 228-233
-
-
Wild, P.1
Farhan, H.2
McEwan, D.G.3
Wagner, S.4
Rogov, V.V.5
Brady, N.R.6
Richter, B.7
Korac, J.8
Waidmann, O.9
Choudhary, C.10
-
30
-
-
82455172117
-
Serine 403 phosphorylation of p62/SQSTM1 regulates selective autophagic clearance of ubiquitinated proteins
-
Matsumoto G, Wada K, Okuno M, Kurosawa M, Nukina N (2011) Serine 403 phosphorylation of p62/SQSTM1 regulates selective autophagic clearance of ubiquitinated proteins. Mol Cell 44: 279–289
-
(2011)
Mol Cell
, vol.44
, pp. 279-289
-
-
Matsumoto, G.1
Wada, K.2
Okuno, M.3
Kurosawa, M.4
Nukina, N.5
-
31
-
-
0034799180
-
Mitochondrial alterations caused by defective peroxisomal biogenesis in a mouse model for Zellweger syndrome (PEX5 knockout mouse)
-
Baumgart E, Vanhorebeek I, Grabenbauer M, Borgers M, Declercq PE, Fahimi HD, Baes M (2001) Mitochondrial alterations caused by defective peroxisomal biogenesis in a mouse model for Zellweger syndrome (PEX5 knockout mouse). Am J Pathol 159: 1477–1494
-
(2001)
Am J Pathol
, vol.159
, pp. 1477-1494
-
-
Baumgart, E.1
Vanhorebeek, I.2
Grabenbauer, M.3
Borgers, M.4
Declercq, P.E.5
Fahimi, H.D.6
Baes, M.7
-
32
-
-
84925467256
-
Zellweger syndrome and secondary mitochondrial myopathy
-
Salpietro V et al (2015) Zellweger syndrome and secondary mitochondrial myopathy. Eur J Pediatr 174: 557–563
-
(2015)
Eur J Pediatr
, vol.174
, pp. 557-563
-
-
Salpietro, V.1
-
33
-
-
84867773087
-
Mitophagy: mechanisms, pathophysiological roles, and analysis
-
Ding WX, Yin XM (2012) Mitophagy: mechanisms, pathophysiological roles, and analysis. Biol Chem 393: 547–564
-
(2012)
Biol Chem
, vol.393
, pp. 547-564
-
-
Ding, W.X.1
Yin, X.M.2
-
34
-
-
0031579223
-
Complementation of and interference with Sindbis virus replication by full-length and deleted forms of the nonstructural protein, nsP1, expressed in stable transfectants of Hela cells
-
Li ML, Wang HL, Stollar V (1997) Complementation of and interference with Sindbis virus replication by full-length and deleted forms of the nonstructural protein, nsP1, expressed in stable transfectants of Hela cells. Virology 227: 361–369
-
(1997)
Virology
, vol.227
, pp. 361-369
-
-
Li, M.L.1
Wang, H.L.2
Stollar, V.3
-
35
-
-
0037934419
-
Deletion of histidine triad nucleotide-binding protein 1/PKC-interacting protein in mice enhances cell growth and carcinogenesis
-
Su T, Suzui M, Wang L, Lin CS, Xing WQ, Weinstein IB (2003) Deletion of histidine triad nucleotide-binding protein 1/PKC-interacting protein in mice enhances cell growth and carcinogenesis. Proc Natl Acad Sci USA 100: 7824–7829
-
(2003)
Proc Natl Acad Sci USA
, vol.100
, pp. 7824-7829
-
-
Su, T.1
Suzui, M.2
Wang, L.3
Lin, C.S.4
Xing, W.Q.5
Weinstein, I.B.6
-
36
-
-
1542283812
-
In vivo analysis of autophagy in response to nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker
-
Mizushima N, Yamamoto A, Matsui M, Yoshimori T, Ohsumi Y (2004) In vivo analysis of autophagy in response to nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker. Mol Biol Cell 15: 1101–1111
-
(2004)
Mol Biol Cell
, vol.15
, pp. 1101-1111
-
-
Mizushima, N.1
Yamamoto, A.2
Matsui, M.3
Yoshimori, T.4
Ohsumi, Y.5
-
37
-
-
0001488499
-
Protection against fatal Sindbis virus encephalitis by Beclin, a novel Bcl-2-interacting protein
-
Liang XH, Kleeman LK, Jiang HH, Gordon G, Goldman JE, Berry G, Herman B, Levine B (1998) Protection against fatal Sindbis virus encephalitis by Beclin, a novel Bcl-2-interacting protein. J Virol 72: 8586–8596
-
(1998)
J Virol
, vol.72
, pp. 8586-8596
-
-
Liang, X.H.1
Kleeman, L.K.2
Jiang, H.H.3
Gordon, G.4
Goldman, J.E.5
Berry, G.6
Herman, B.7
Levine, B.8
-
38
-
-
0033910989
-
Sindbis virus vector system for functional analysis of apoptosis regulators
-
Hardwick JM, Levine B (2000) Sindbis virus vector system for functional analysis of apoptosis regulators. Methods Enzymol 322: 492–508
-
(2000)
Methods Enzymol
, vol.322
, pp. 492-508
-
-
Hardwick, J.M.1
Levine, B.2
-
39
-
-
84873709314
-
Identification of a candidate therapeutic autophagy-inducing peptide
-
Shoji-Kawata S, Sumpter R, Leveno M, Campbell GR, Zou Z, Kinch L, Wilkins AD, Sun Q, Pallauf K, MacDuff D et al (2013) Identification of a candidate therapeutic autophagy-inducing peptide. Nature 494: 201–206
-
(2013)
Nature
, vol.494
, pp. 201-206
-
-
Shoji-Kawata, S.1
Sumpter, R.2
Leveno, M.3
Campbell, G.R.4
Zou, Z.5
Kinch, L.6
Wilkins, A.D.7
Sun, Q.8
Pallauf, K.9
MacDuff, D.10
-
40
-
-
0000906170
-
Induction of autophagy and inhibition of tumorigenesis by beclin 1
-
Liang XH, Jackson S, Seaman M, Brown K, Kempkes B, Hibshoosh H, Levine B (1999) Induction of autophagy and inhibition of tumorigenesis by beclin 1. Nature 402: 672–676
-
(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
Levine, B.7
-
41
-
-
84897538678
-
Proteolytic cleavage of Opa1 stimulates mitochondrial inner membrane fusion and couples fusion to oxidative phosphorylation
-
Mishra P, Carelli V, Manfredi G, Chan DC (2014) Proteolytic cleavage of Opa1 stimulates mitochondrial inner membrane fusion and couples fusion to oxidative phosphorylation. Cell Metab 19: 630–641
-
(2014)
Cell Metab
, vol.19
, pp. 630-641
-
-
Mishra, P.1
Carelli, V.2
Manfredi, G.3
Chan, D.C.4
-
42
-
-
0344375083
-
Lentivirus-delivered stable gene silencing by RNAi in primary cells
-
Stewart SA, Dykxhoorn DM, Palliser D, Mizuno H, Yu EY, An DS, Sabatini DM, Chen IS, Hahn WC, Sharp PA et al (2003) Lentivirus-delivered stable gene silencing by RNAi in primary cells. RNA 9: 493–501
-
(2003)
RNA
, vol.9
, pp. 493-501
-
-
Stewart, S.A.1
Dykxhoorn, D.M.2
Palliser, D.3
Mizuno, H.4
Yu, E.Y.5
An, D.S.6
Sabatini, D.M.7
Chen, I.S.8
Hahn, W.C.9
Sharp, P.A.10
-
43
-
-
0030819379
-
Multiply attenuated lentiviral vector achieves efficient gene delivery in vivo
-
Zufferey R, Nagy D, Mandel RJ, Naldini L, Trono D (1997) Multiply attenuated lentiviral vector achieves efficient gene delivery in vivo. Nat Biotechnol 15: 871–875
-
(1997)
Nat Biotechnol
, vol.15
, pp. 871-875
-
-
Zufferey, R.1
Nagy, D.2
Mandel, R.J.3
Naldini, L.4
Trono, D.5
-
44
-
-
0029996147
-
In vivo gene delivery and stable transduction of nondividing cells by a lentiviral vector
-
Naldini L, Blomer U, Gallay P, Ory D, Mulligan R, Gage FH, Verma IM, Trono D (1996) In vivo gene delivery and stable transduction of nondividing cells by a lentiviral vector. Science 272: 263–267
-
(1996)
Science
, vol.272
, pp. 263-267
-
-
Naldini, L.1
Blomer, U.2
Gallay, P.3
Ory, D.4
Mulligan, R.5
Gage, F.H.6
Verma, I.M.7
Trono, D.8
|