-
1
-
-
0021318441
-
Catalase in vitro
-
New York: Academic
-
Aebi H. Catalase in vitro. In: Methods in Enzymology. New York: Academic, 1984, p. 121-126.
-
(1984)
Methods in Enzymology
, pp. 121-126
-
-
Aebi, H.1
-
2
-
-
84959453936
-
Distinct requirements for intra-ER sorting and budding of peroxisomal membrane proteins from the ER
-
Agrawal G, Fassas SN, Xia ZJ, Subramani S. Distinct requirements for intra-ER sorting and budding of peroxisomal membrane proteins from the ER. J Cell Biol 212: 335-348, 2016. doi:10.1083/jcb.201506141.
-
(2016)
J Cell Biol
, vol.212
, pp. 335-348
-
-
Agrawal, G.1
Fassas, S.N.2
Xia, Z.J.3
Subramani, S.4
-
3
-
-
53049103994
-
Absence of the peroxiredoxin Pmp20 causes peroxisomal protein leakage and necrotic cell death
-
Aksam EB, Jungwirth H, Kohlwein SD, Ring J, Madeo F, Veenhuis M, van der Klei IJ. Absence of the peroxiredoxin Pmp20 causes peroxisomal protein leakage and necrotic cell death. Free Radic Biol Med 45: 1115-1124, 2008. doi:10.1016/j. freeradbiomed.2008.07.010.
-
(2008)
Free Radic Biol Med
, vol.45
, pp. 1115-1124
-
-
Aksam, E.B.1
Jungwirth, H.2
Kohlwein, S.D.3
Ring, J.4
Madeo, F.5
Veenhuis, M.6
van der Klei, I.J.7
-
4
-
-
33947374361
-
A peroxisomal lon protease and peroxisome degradation by autophagy play key roles in vitality of Hansenula polymorpha cells
-
Aksam EB, Koek A, Kiel JA, Jourdan S, Veenhuis M, van der Klei IJ. A peroxisomal lon protease and peroxisome degradation by autophagy play key roles in vitality of Hansenula polymorpha cells. Autophagy 3: 96-105, 2007. doi:10.4161/auto.3534.
-
(2007)
Autophagy
, vol.3
, pp. 96-105
-
-
Aksam, E.B.1
Koek, A.2
Kiel, J.A.3
Jourdan, S.4
Veenhuis, M.5
van der Klei, I.J.6
-
5
-
-
77749233738
-
ATM signals to TSC2 in the cytoplasm to regulate mTORC1 in response to ROS
-
Alexander A, Cai SL, Kim J, Nanez A, Sahin M, MacLean KH, Inoki K, Guan KL, Shen J, Person MD, Kusewitt D, Mills GB, Kastan MB, Walker CL. ATM signals to TSC2 in the cytoplasm to regulate mTORC1 in response to ROS. Proc Natl Acad Sci USA 107: 4153-4158, 2010. doi: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
Inoki, K.7
Guan, K.L.8
Shen, J.9
Person, M.D.10
Kusewitt, D.11
Mills, G.B.12
Kastan, M.B.13
Walker, C.L.14
-
6
-
-
77954484645
-
Peroxisomes are oxidative organelles
-
Antonenkov VD, Grunau S, Ohlmeier S, Hiltunen JK. Peroxisomes are oxidative organelles. Antioxid Redox Signal 13: 525-537, 2010. doi:10.1089/ars.2009.2996.
-
(2010)
Antioxid Redox Signal
, vol.13
, pp. 525-537
-
-
Antonenkov, V.D.1
Grunau, S.2
Ohlmeier, S.3
Hiltunen, J.K.4
-
7
-
-
0028172089
-
Mechanistically-based human hazard assessment of peroxisome proliferator-induced hepatocarcinogenesis
-
Ashby J, Brady A, Elcombe CR, Elliott BM, Ishmael J, Odum J, Tugwood JD, Kettle S, Purchase IF. Mechanistically-based human hazard assessment of peroxisome proliferator-induced hepatocarcinogenesis. Hum Exp Toxicol 13, Suppl 2: S1-S117, 1994. doi:10.1177/096032719401300201.
-
(1994)
Hum Exp Toxicol
, vol.13
, pp. S1-S117
-
-
Ashby, J.1
Brady, A.2
Elcombe, C.R.3
Elliott, B.M.4
Ishmael, J.5
Odum, J.6
Tugwood, J.D.7
Kettle, S.8
Purchase, I.F.9
-
8
-
-
84961183335
-
Hepatic dysfunction in peroxisomal disorders
-
Baes M, Van Veldhoven PP. Hepatic dysfunction in peroxisomal disorders. Biochim Biophys Acta 1863: 956-970, 2016. doi:10.1016/j.bbamcr.2015.09.035.
-
(2016)
Biochim Biophys Acta
, vol.1863
, pp. 956-970
-
-
Baes, M.1
Van Veldhoven, P.P.2
-
9
-
-
84864992299
-
Peroxisomal proteostasis involves a Lon family protein that functions as protease and chaperone
-
Bartoszewska M, Williams C, Kikhney A, Opaliński Ł, van Roermund CWT, de Boer R, Veenhuis M, van der Klei IJ. Peroxisomal proteostasis involves a Lon family protein that functions as protease and chaperone. J Biol Chem 287: 27380-27395, 2012. doi:10.1074/jbc.M112.381566.
-
(2012)
J Biol Chem
, vol.287
, pp. 27380-27395
-
-
Bartoszewska, M.1
Williams, C.2
Kikhney, A.3
Opaliński, Ł.4
van Roermund, C.W.T.5
de Boer, R.6
Veenhuis, M.7
van der Klei, I.J.8
-
10
-
-
0030462605
-
Molecular characterization of the human peroxisomal branched-chain acyl-CoA oxidase: CDNA cloning, chromosomal assignment, tissue distribution, and evidence for the absence of the protein in Zellweger syndrome
-
Baumgart E, Vanhooren JC, Fransen M, Marynen P, Puype M, Vandekerckhove J, Leunissen JA, Fahimi HD, Mannaerts GP, van Veldhoven PP. Molecular characterization of the human peroxisomal branched-chain acyl-CoA oxidase: cDNA cloning, chromosomal assignment, tissue distribution, and evidence for the absence of the protein in Zellweger syndrome. Proc Natl Acad Sci USA 93: 13748-13753, 1996. doi:10.1073/pnas.93.24.13748.
-
(1996)
Proc Natl Acad Sci USA
, vol.93
, pp. 13748-13753
-
-
Baumgart, E.1
Vanhooren, J.C.2
Fransen, M.3
Marynen, P.4
Puype, M.5
Vandekerckhove, J.6
Leunissen, J.A.7
Fahimi, H.D.8
Mannaerts, G.P.9
van Veldhoven, P.P.10
-
11
-
-
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. Mitochondrial alterations caused by defective peroxisomal biogenesis in a mouse model for Zellweger syndrome (PEX5 knockout mouse). Am J Pathol 159: 1477-1494, 2001. doi:10.1016/S0002-9440(10)62534-5.
-
(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
-
12
-
-
84859748606
-
Receptor proteins in selective autophagy
-
Behrends C, Fulda S. Receptor proteins in selective autophagy. Int J Cell Biol 2012: 673290, 2012. doi:10.1155/2012/673290.
-
(2012)
Int J Cell Biol
, vol.2012
, pp. 673290
-
-
Behrends, C.1
Fulda, S.2
-
13
-
-
0027340413
-
The impact of aging on enzyme proteins of rat liver peroxisomes: Quantitative analysis by immunoblotting and immunoelectron microscopy
-
Beier K, Völkl A, Fahimi HD. The impact of aging on enzyme proteins of rat liver peroxisomes: quantitative analysis by immunoblotting and immunoelectron microscopy. Virchows Arch B Cell Pathol Incl Mol Pathol 63: 139-146, 1993. doi:10.1007/ BF02899254.
-
(1993)
Virchows Arch B Cell Pathol Incl Mol Pathol
, vol.63
, pp. 139-146
-
-
Beier, K.1
Völkl, A.2
Fahimi, H.D.3
-
14
-
-
79957547966
-
Beyond ATM: The protein kinase landscape of the DNA damage response
-
Bensimon A, Aebersold R, Shiloh Y. Beyond ATM: the protein kinase landscape of the DNA damage response. FEBS Lett 585: 1625-1639, 2011. doi:10.1016/j.febslet.2011. 05.013.
-
(2011)
FEBS Lett
, vol.585
, pp. 1625-1639
-
-
Bensimon, A.1
Aebersold, R.2
Shiloh, Y.3
-
15
-
-
70449715463
-
Reactive oxygen species and peroxisomes: Struggling for balance
-
Bonekamp NA, Völkl A, Fahimi HD, Schrader M. Reactive oxygen species and peroxisomes: struggling for balance. Biofactors 35: 346-355, 2009. doi:10.1002/biof.48.
-
(2009)
Biofactors
, vol.35
, pp. 346-355
-
-
Bonekamp, N.A.1
Völkl, A.2
Fahimi, H.D.3
Schrader, M.4
-
16
-
-
0000964583
-
Catalase activity
-
Bonnichsen RK, Chance B, Theorell H, Linnasalmi A, Laukkanen P. Catalase activity. Acta Chem Scand 1: 685-709, 1947. doi:10.3891/acta.chem.scand.01-0685.
-
(1947)
Acta Chem Scand
, vol.1
, pp. 685-709
-
-
Bonnichsen, R.K.1
Chance, B.2
Theorell, H.3
Linnasalmi, A.4
Laukkanen, P.5
-
17
-
-
0036713692
-
Lon protease preferentially degrades oxidized mitochondrial aconitase by an ATP-stimulated mechanism
-
Bota DA, Davies KJA. Lon protease preferentially degrades oxidized mitochondrial aconitase by an ATP-stimulated mechanism. Nat Cell Biol 4: 674-680, 2002. doi:10. 1038/ncb836.
-
(2002)
Nat Cell Biol
, vol.4
, pp. 674-680
-
-
Bota, D.A.1
Davies, K.J.A.2
-
18
-
-
0003097634
-
Protein degradation in mitochondria: Implications for oxidative stress, aging and disease: A novel etiological classification of mitochondrial proteolytic disorders
-
Bota DA, Davies KJA. Protein degradation in mitochondria: implications for oxidative stress, aging and disease: a novel etiological classification of mitochondrial proteolytic disorders. Mitochondrion 1: 33-49, 2001. doi:10.1016/S1567-7249(01)00005-8.
-
(2001)
Mitochondrion
, vol.1
, pp. 33-49
-
-
Bota, D.A.1
Davies, K.J.A.2
-
19
-
-
0037021453
-
Modulation of Lon protease activity and aconitase turnover during aging and oxidative stress
-
Bota DA, Van Remmen H, Davies KJA. Modulation of Lon protease activity and aconitase turnover during aging and oxidative stress. FEBS Lett 532: 103-106, 2002. doi:10.1016/S0014-5793(02)03638-4.
-
(2002)
FEBS Lett
, vol.532
, pp. 103-106
-
-
Bota, D.A.1
Van Remmen, H.2
Davies, K.J.A.3
-
20
-
-
0015363173
-
The cellular production of hydrogen peroxide
-
Boveris A, Oshino N, Chance B. The cellular production of hydrogen peroxide. Biochem J 128: 617-630, 1972. doi:10.1042/bj1280617.
-
(1972)
Biochem J
, vol.128
, pp. 617-630
-
-
Boveris, A.1
Oshino, N.2
Chance, B.3
-
21
-
-
0030946632
-
Human PEX7 encodes the peroxisomal PTS2 receptor and is responsible for rhizomelic chondrodysplasia punctata
-
Braverman N, Steel G, Obie C, Moser A, Moser H, Gould SJ, Valle D. Human PEX7 encodes the peroxisomal PTS2 receptor and is responsible for rhizomelic chondrodysplasia punctata. Nat Genet 15: 369-376, 1997. doi:10.1038/ng0497-369.
-
(1997)
Nat Genet
, vol.15
, pp. 369-376
-
-
Braverman, N.1
Steel, G.2
Obie, C.3
Moser, A.4
Moser, H.5
Gould, S.J.6
Valle, D.7
-
22
-
-
84856556021
-
There is no evidence that mitochondria are the main source of reactive oxygen species in mammalian cells
-
Brown GC, Borutaite V. There is no evidence that mitochondria are the main source of reactive oxygen species in mammalian cells. Mitochondrion 12: 1-4, 2012. doi:10. 1016/j.mito.2011.02.001.
-
(2012)
Mitochondrion
, vol.12
, pp. 1-4
-
-
Brown, G.C.1
Borutaite, V.2
-
23
-
-
84949035617
-
Conserved targeting information in mammalian and fungal peroxisomal tail-anchored proteins
-
Buentzel J, Vilardi F, Lotz-Havla A, Gärtner J, Thoms S. Conserved targeting information in mammalian and fungal peroxisomal tail-anchored proteins. Sci Rep 5: 17420, 2015. doi:10.1038/srep17420.
-
(2015)
Sci Rep
, vol.5
, pp. 17420
-
-
Buentzel, J.1
Vilardi, F.2
Lotz-Havla, A.3
Gärtner, J.4
Thoms, S.5
-
24
-
-
84925776380
-
Peroxisomal Pex3 activates selective autophagy of peroxisomes via interaction with the pexophagy receptor Atg30
-
Burnett SF, Farré JC, Nazarko TY, Subramani S. Peroxisomal Pex3 activates selective autophagy of peroxisomes via interaction with the pexophagy receptor Atg30. J Biol Chem 290: 8623-8631, 2015. doi:10.1074/jbc.M114.619338.
-
(2015)
J Biol Chem
, vol.290
, pp. 8623-8631
-
-
Burnett, S.F.1
Farré, J.C.2
Nazarko, T.Y.3
Subramani, S.4
-
25
-
-
0033796250
-
Mitochondrial free radical generation, oxidative stress, and aging
-
Cadenas E, Davies KJA. Mitochondrial free radical generation, oxidative stress, and aging. Free Radic Biol Med 29: 222-230, 2000. doi:10.1016/S0891-5849(00)00317-8.
-
(2000)
Free Radic Biol Med
, vol.29
, pp. 222-230
-
-
Cadenas, E.1
Davies, K.J.A.2
-
26
-
-
33646111903
-
Activity of TSC2 is inhibited by AKT-mediated phosphorylation and membrane partitioning
-
Cai SL, Tee AR, Short JD, Bergeron JM, Kim J, Shen J, Guo R, Johnson CL, Kiguchi K, Walker CL. Activity of TSC2 is inhibited by AKT-mediated phosphorylation and membrane partitioning. J Cell Biol 173: 279-289, 2006. doi:10.1083/jcb.200507119.
-
(2006)
J Cell Biol
, vol.173
, pp. 279-289
-
-
Cai, S.L.1
Tee, A.R.2
Short, J.D.3
Bergeron, J.M.4
Kim, J.5
Shen, J.6
Guo, R.7
Johnson, C.L.8
Kiguchi, K.9
Walker, C.L.10
-
27
-
-
64449084971
-
Organelle dynamics and dysfunction: A closer link between peroxisomes and mitochondria
-
Camões F, Bonekamp NA, Delille HK, Schrader M. Organelle dynamics and dysfunction: a closer link between peroxisomes and mitochondria. J Inherit Metab Dis 32: 163-180, 2009. doi:10.1007/s10545-008-1018-3.
-
(2009)
J Inherit Metab Dis
, vol.32
, pp. 163-180
-
-
Camões, F.1
Bonekamp, N.A.2
Delille, H.K.3
Schrader, M.4
-
28
-
-
0001332716
-
An intermediate compound in the catalase-hydrogen peroxide reaction
-
Chance B, Rosted CO, Sillén LG, Linnasalmi A, Laukkanen P. An intermediate compound in the catalase-hydrogen peroxide reaction. Acta Chem Scand 1: 236-267, 1947. doi:10.3891/acta.chem.scand.01-0236.
-
(1947)
Acta Chem Scand
, vol.1
, pp. 236-267
-
-
Chance, B.1
Rosted, C.O.2
Sillén, L.G.3
Linnasalmi, A.4
Laukkanen, P.5
-
29
-
-
0018776894
-
Hydroperoxide metabolism in mammalian organs
-
Chance B, Sies H, Boveris A. Hydroperoxide metabolism in mammalian organs. Physiol Rev 59: 527-605, 1979.
-
(1979)
Physiol Rev
, vol.59
, pp. 527-605
-
-
Chance, B.1
Sies, H.2
Boveris, A.3
-
30
-
-
0029051043
-
RTG genes in yeast that function in communication between mitochondria and the nucleus are also required for expression of genes encoding peroxisomal proteins
-
Chelstowska A, Butow RA. RTG genes in yeast that function in communication between mitochondria and the nucleus are also required for expression of genes encoding peroxisomal proteins. J Biol Chem 270: 18141-18146, 1995. doi:10.1074/jbc.270. 30.18141.
-
(1995)
J Biol Chem
, vol.270
, pp. 18141-18146
-
-
Chelstowska, A.1
Butow, R.A.2
-
31
-
-
0842283380
-
Catalase transgenic mice: Characterization and sensitivity to oxidative stress
-
Chen X, Liang H, Van Remmen H, Vijg J, Richardson A. Catalase transgenic mice: characterization and sensitivity to oxidative stress. Arch Biochem Biophys 422: 197-210, 2004. doi:10.1016/j.abb.2003.12.023.
-
(2004)
Arch Biochem Biophys
, vol.422
, pp. 197-210
-
-
Chen, X.1
Liang, H.2
Van Remmen, H.3
Vijg, J.4
Richardson, A.5
-
32
-
-
67549084381
-
Superoxide is the major reactive oxygen species regulating autophagy
-
Chen Y, Azad MB, Gibson SB. Superoxide is the major reactive oxygen species regulating autophagy. Cell Death Differ 16: 1040-1052, 2009. doi:10.1038/cdd.2009.49.
-
(2009)
Cell Death Differ
, vol.16
, pp. 1040-1052
-
-
Chen, Y.1
Azad, M.B.2
Gibson, S.B.3
-
33
-
-
76049083966
-
Reactive oxygen species, cellular redox systems, and apoptosis
-
Circu ML, Aw TY. Reactive oxygen species, cellular redox systems, and apoptosis. Free Radic Biol Med 48: 749-762, 2010. doi:10.1016/j.freeradbiomed.2009.12.022.
-
(2010)
Free Radic Biol Med
, vol.48
, pp. 749-762
-
-
Circu, M.L.1
Aw, T.Y.2
-
34
-
-
0033061268
-
Identification of a common PEX1 mutation in Zellweger syndrome
-
Collins CS, Gould SJ. Identification of a common PEX1 mutation in Zellweger syndrome. Hum Mutat 14: 45-53, 1999. doi:10.1002/(SICI)1098-1004(1999)14:1<45::AID-HUMU6>3.0.CO;2-J.
-
(1999)
Hum Mutat
, vol.14
, pp. 45-53
-
-
Collins, C.S.1
Gould, S.J.2
-
35
-
-
84901431290
-
Peroxisomal plant nitric oxide synthase (NOS) protein is imported by peroxisomal targeting signal type 2 (PTS2) in a process that depends on the cytosolic receptor PEX7 and calmodulin
-
Corpas FJ, Barroso JB. Peroxisomal plant nitric oxide synthase (NOS) protein is imported by peroxisomal targeting signal type 2 (PTS2) in a process that depends on the cytosolic receptor PEX7 and calmodulin. FEBS Lett 588: 2049-2054, 2014. doi: 10.1016/j.febslet.2014.04.034.
-
(2014)
FEBS Lett
, vol.588
, pp. 2049-2054
-
-
Corpas, F.J.1
Barroso, J.B.2
-
36
-
-
84905811014
-
Peroxisomes as cell generators of reactive nitrogen species (RNS) signal molecules
-
Corpas FJ, Barroso JB, Palma JM, del Río LA. Peroxisomes as cell generators of reactive nitrogen species (RNS) signal molecules. Subcell Biochem 69: 283-298, 2013. doi:10.1007/978-94-007-6889-5_15.
-
(2013)
Subcell Biochem
, vol.69
, pp. 283-298
-
-
Corpas, F.J.1
Barroso, J.B.2
Palma, J.M.3
del Río, L.A.4
-
37
-
-
0023912614
-
Molecular defect in human acatalasia fibroblasts
-
Crawford DR, Mirault ME, Moret R, Zbinden I, Cerutti PA. Molecular defect in human acatalasia fibroblasts. Biochem Biophys Res Commun 153: 59-66, 1988. doi:10.1016/ S0006-291X(88)81189-6.
-
(1988)
Biochem Biophys Res Commun
, vol.153
, pp. 59-66
-
-
Crawford, D.R.1
Mirault, M.E.2
Moret, R.3
Zbinden, I.4
Cerutti, P.A.5
-
38
-
-
0023655449
-
Protein damage and degradation by oxygen radicals. IV. Degradation of denatured protein
-
Davies KJA, Lin SW, Pacifici RE. Protein damage and degradation by oxygen radicals. IV. Degradation of denatured protein. J Biol Chem 262: 9914-9920, 1987.
-
(1987)
J Biol Chem
, vol.262
, pp. 9914-9920
-
-
Davies, K.J.A.1
Lin, S.W.2
Pacifici, R.E.3
-
39
-
-
84964621692
-
Adaptive homeostasis
-
Davies KJA. Adaptive homeostasis. Mol Aspects Med 49: 1-7, 2016. doi:10.1016/j. mam.2016.04.007.
-
(2016)
Mol Aspects Med
, vol.49
, pp. 1-7
-
-
Davies, K.J.A.1
-
40
-
-
0035072229
-
Degradation of oxidized proteins by the 20S proteasome
-
Davies KJA. Degradation of oxidized proteins by the 20S proteasome. Biochimie 83: 301-310, 2001. doi:10.1016/S0300-9084(01)01250-0.
-
(2001)
Biochimie
, vol.83
, pp. 301-310
-
-
Davies, K.J.A.1
-
41
-
-
0034456719
-
An overview of oxidative stress
-
Davies KJA. An overview of oxidative stress. IUBMB Life 50: 241-244, 2000. doi:10. 1080/15216540051080895.
-
(2000)
IUBMB Life
, vol.50
, pp. 241-244
-
-
Davies, K.J.A.1
-
42
-
-
0034456207
-
Oxidative stress, antioxidant defenses, and damage removal, repair, and replacement systems
-
Davies KJA. Oxidative stress, antioxidant defenses, and damage removal, repair, and replacement systems. IUBMB Life 50: 279-289, 2000. doi:10.1080/15216540051081010.
-
(2000)
IUBMB Life
, vol.50
, pp. 279-289
-
-
Davies, K.J.A.1
-
43
-
-
0002730169
-
Functions of microbodies (peroxisomes)
-
De Duve C. Functions of microbodies (peroxisomes). J Cell Biol 27: A25, 1965.
-
(1965)
J Cell Biol
, vol.27
, pp. 25
-
-
De Duve, C.1
-
44
-
-
0013897667
-
Peroxisomes (microbodies and related particles)
-
De Duve C, Baudhuin P. Peroxisomes (microbodies and related particles). Physiol Rev 46: 323-357, 1966.
-
(1966)
Physiol Rev
, vol.46
, pp. 323-357
-
-
De Duve, C.1
Baudhuin, P.2
-
45
-
-
84876345355
-
NBR1 acts as an autophagy receptor for peroxisomes
-
Deosaran E, Larsen KB, Hua R, Sargent G, Wang Y, Kim S, Lamark T, Jauregui M, Law K, Lippincott-Schwartz J, Brech A, Johansen T, Kim PK. NBR1 acts as an autophagy receptor for peroxisomes. J Cell Sci 126: 939-952, 2013. doi:10.1242/jcs.114819.
-
(2013)
J Cell Sci
, vol.126
, pp. 939-952
-
-
Deosaran, E.1
Larsen, K.B.2
Hua, R.3
Sargent, G.4
Wang, Y.5
Kim, S.6
Lamark, T.7
Jauregui, M.8
Law, K.9
Lippincott-Schwartz, J.10
Brech, A.11
Johansen, T.12
Kim, P.K.13
-
46
-
-
0027381965
-
Peroxisomal participation in the cellular response to the oxidative stress of endotoxin
-
Dhaunsi GS, Singh I, Hanevold CD. Peroxisomal participation in the cellular response to the oxidative stress of endotoxin. Mol Cell Biochem 126: 25-35, 1993. doi:10.1007/ BF01772205.
-
(1993)
Mol Cell Biochem
, vol.126
, pp. 25-35
-
-
Dhaunsi, G.S.1
Singh, I.2
Hanevold, C.D.3
-
47
-
-
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, Nibert ML, Superti-Furga G, Kagan JC. Peroxisomes are signaling platforms for antiviral innate immunity. Cell 141: 668-681, 2010. doi:10. 1016/j.cell.2010.04.018.
-
(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
Nibert, M.L.11
Superti-Furga, G.12
Kagan, J.C.13
-
48
-
-
0037219071
-
Long-chain polyunsaturated fatty acids essential for brain growth and development
-
Do Nascimento CM, Oyama LM. Long-chain polyunsaturated fatty acids essential for brain growth and development. Nutrition 19: 66, 2003. doi:10.1016/S0899-9007(02)00955-3.
-
(2003)
Nutrition
, vol.19
, pp. 66
-
-
Do Nascimento, C.M.1
Oyama, L.M.2
-
49
-
-
0030909622
-
Modulation of endogenous antioxidant enzymes by nitric oxide in rat C6 glial cells
-
Dobashi K, Pahan K, Chahal A, Singh I. Modulation of endogenous antioxidant enzymes by nitric oxide in rat C6 glial cells. J Neurochem 68: 1896-1903, 1997. doi:10. 1046/j.1471-4159.1997.68051896.x.
-
(1997)
J Neurochem
, vol.68
, pp. 1896-1903
-
-
Dobashi, K.1
Pahan, K.2
Chahal, A.3
Singh, I.4
-
50
-
-
0030459304
-
Multiple PEX genes are required for proper subcellular distribution and stability of Pex5p, the PTS1 receptor: Evidence that PTS1 protein import is mediated by a cycling receptor
-
Dodt G, Gould SJ. Multiple PEX genes are required for proper subcellular distribution and stability of Pex5p, the PTS1 receptor: evidence that PTS1 protein import is mediated by a cycling receptor. J Cell Biol 135: 1763-1774, 1996. doi:10.1083/jcb. 135.6.1763.
-
(1996)
J Cell Biol
, vol.135
, pp. 1763-1774
-
-
Dodt, G.1
Gould, S.J.2
-
51
-
-
66249107439
-
Reactive oxygen species as universal constraints in life-history evolution
-
Dowling DK, Simmons LW. Reactive oxygen species as universal constraints in life-history evolution. Proc Biol Sci 276: 1737-1745, 2009. doi:10.1098/rspb.2008. 1791.
-
(2009)
Proc Biol Sci
, vol.276
, pp. 1737-1745
-
-
Dowling, D.K.1
Simmons, L.W.2
-
52
-
-
78650546151
-
Genetic classification and mutational spectrum of more than 600 patients with a Zellweger syndrome spectrum disorder
-
Ebberink MS, Mooijer PA, Gootjes J, Koster J, Wanders RJ, Waterham HR. Genetic classification and mutational spectrum of more than 600 patients with a Zellweger syndrome spectrum disorder. Hum Mutat 32: 59-69, 2011. doi:10.1002/humu. 21388.
-
(2011)
Hum Mutat
, vol.32
, pp. 59-69
-
-
Ebberink, M.S.1
Mooijer, P.A.2
Gootjes, J.3
Koster, J.4
Wanders, R.J.5
Waterham, H.R.6
-
53
-
-
58349115204
-
Genotype-phenotype correlation in PEX5- deficient peroxisome biogenesis defective cell lines
-
Ebberink MS, Mooyer PA, Koster J, Dekker CJ, Eyskens FJ, Dionisi-Vici C, Clayton PT, Barth PG, Wanders RJ, Waterham HR. Genotype-phenotype correlation in PEX5- deficient peroxisome biogenesis defective cell lines. Hum Mutat 30: 93-98, 2009. doi:10.1002/humu.20833.
-
(2009)
Hum Mutat
, vol.30
, pp. 93-98
-
-
Ebberink, M.S.1
Mooyer, P.A.2
Koster, J.3
Dekker, C.J.4
Eyskens, F.J.5
Dionisi-Vici, C.6
Clayton, P.T.7
Barth, P.G.8
Wanders, R.J.9
Waterham, H.R.10
-
56
-
-
78751513443
-
Peroxisome-generated hydrogen peroxide as important mediator of lipotoxicity in insulin-producing cells
-
Elsner M, Gehrmann W, Lenzen S. Peroxisome-generated hydrogen peroxide as important mediator of lipotoxicity in insulin-producing cells. Diabetes 60: 200-208, 2011. doi:10.2337/db09-1401.
-
(2011)
Diabetes
, vol.60
, pp. 200-208
-
-
Elsner, M.1
Gehrmann, W.2
Lenzen, S.3
-
57
-
-
0023256645
-
Conversion of xanthine dehydrogenase to oxidase in ischemic rat tissues
-
Engerson TD, McKelvey TG, Rhyne DB, Boggio EB, Snyder SJ, Jones HP. Conversion of xanthine dehydrogenase to oxidase in ischemic rat tissues. J Clin Invest 79: 1564-1570, 1987. doi:10.1172/JCI112990.
-
(1987)
J Clin Invest
, vol.79
, pp. 1564-1570
-
-
Engerson, T.D.1
McKelvey, T.G.2
Rhyne, D.B.3
Boggio, E.B.4
Snyder, S.J.5
Jones, H.P.6
-
58
-
-
0035157544
-
Genome-wide responses to mitochondrial dysfunction
-
Epstein CB, Waddle JA, Hale W IV, Davé V, Thornton J, Macatee TL, Garner HR, Butow RA. Genome-wide responses to mitochondrial dysfunction. Mol Biol Cell 12: 297-308, 2001. doi:10.1091/mbc.12.2.297.
-
(2001)
Mol Biol Cell
, vol.12
, pp. 297-308
-
-
Epstein, C.B.1
Waddle, J.A.2
Hale, W.I.V.3
Davé, V.4
Thornton, J.5
Macatee, T.L.6
Garner, H.R.7
Butow, R.A.8
-
59
-
-
0345036072
-
DNA damage related to increased hydrogen peroxide generation by hypolipidemic drug-induced liver peroxisomes
-
Fahl WE, Lalwani ND, Watanabe T, Goel SK, Reddy JK. DNA damage related to increased hydrogen peroxide generation by hypolipidemic drug-induced liver peroxisomes. Proc Natl Acad Sci USA 81: 7827-7830, 1984. doi:10.1073/pnas.81.24.7827.
-
(1984)
Proc Natl Acad Sci USA
, vol.81
, pp. 7827-7830
-
-
Fahl, W.E.1
Lalwani, N.D.2
Watanabe, T.3
Goel, S.K.4
Reddy, J.K.5
-
60
-
-
0032546929
-
Steatohepatitis, spontaneous peroxisome proliferation and liver tumors in mice lacking peroxisomal fatty acyl-CoA oxidase. Implications for peroxisome proliferator-activated receptor a natural ligand metabolism
-
Fan CY, Pan J, Usuda N, Yeldandi AV, Rao MS, Reddy JK. Steatohepatitis, spontaneous peroxisome proliferation and liver tumors in mice lacking peroxisomal fatty acyl-CoA oxidase. Implications for peroxisome proliferator-activated receptor a natural ligand metabolism. J Biol Chem 273: 15639-15645, 1998. doi:10.1074/jbc.273.25.15639.
-
(1998)
J Biol Chem
, vol.273
, pp. 15639-15645
-
-
Fan, C.Y.1
Pan, J.2
Usuda, N.3
Yeldandi, A.V.4
Rao, M.S.5
Reddy, J.K.6
-
61
-
-
42049094041
-
PpAtg30 tags peroxisomes for turnover by selective autophagy
-
Farré JC, Manjithaya R, Mathewson RD, Subramani S. PpAtg30 tags peroxisomes for turnover by selective autophagy. Dev Cell 14: 365-376, 2008. doi: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
-
62
-
-
78649938051
-
Hunting for alternative disulfide bond formation pathways: Endoplasmic reticulum janitor turns professor and teaches a lesson
-
Fass D. Hunting for alternative disulfide bond formation pathways: endoplasmic reticulum janitor turns professor and teaches a lesson. Mol Cell 40: 685-686, 2010. doi:10.1016/j.molcel.2010.11.034.
-
(2010)
Mol Cell
, vol.40
, pp. 685-686
-
-
Fass, D.1
-
63
-
-
0037333084
-
DHA-enriched phospholipid diets modulate age-related alterations in rat hippocampus
-
Favrelière S, Perault MC, Huguet F, De Javel D, Bertrand N, Piriou A, Durand G. DHA-enriched phospholipid diets modulate age-related alterations in rat hippocampus. Neurobiol Aging 24: 233-243, 2003. doi:10.1016/S0197-4580(02)00064-7.
-
(2003)
Neurobiol Aging
, vol.24
, pp. 233-243
-
-
Favrelière, S.1
Perault, M.C.2
Huguet, F.3
De Javel, D.4
Bertrand, N.5
Piriou, A.6
Durand, G.7
-
64
-
-
2442543417
-
Respiratory metabolism: Glycolysis, the TCA cycle and mitochondrial electron transport
-
Fernie AR, Carrari F, Sweetlove LJ. Respiratory metabolism: glycolysis, the TCA cycle and mitochondrial electron transport. Curr Opin Plant Biol 7: 254-261, 2004. doi:10. 1016/j.pbi.2004.03.007.
-
(2004)
Curr Opin Plant Biol
, vol.7
, pp. 254-261
-
-
Fernie, A.R.1
Carrari, F.2
Sweetlove, L.J.3
-
65
-
-
84922489435
-
Oxidative stress and autophagy: The clash between damage and metabolic needs
-
Filomeni G, De Zio D, Cecconi F. Oxidative stress and autophagy: the clash between damage and metabolic needs. Cell Death Differ 22: 377-388, 2015. doi:10.1038/cdd. 2014.150.
-
(2015)
Cell Death Differ
, vol.22
, pp. 377-388
-
-
Filomeni, G.1
De Zio, D.2
Cecconi, F.3
-
66
-
-
79960286223
-
Signal transduction by reactive oxygen species
-
Finkel T. Signal transduction by reactive oxygen species. J Cell Biol 194: 7-15, 2011. doi:10.1083/jcb.201102095.
-
(2011)
J Cell Biol
, vol.194
, pp. 7-15
-
-
Finkel, T.1
-
67
-
-
0347916885
-
Peroxiredoxins in antioxidant defense and redox regulation
-
Flohé L, Budde H, Hofmann B. Peroxiredoxins in antioxidant defense and redox regulation. Biofactors 19: 3-10, 2003. doi:10.1002/biof.5520190102.
-
(2003)
Biofactors
, vol.19
, pp. 3-10
-
-
Flohé, L.1
Budde, H.2
Hofmann, B.3
-
68
-
-
84860004858
-
Molecular requirements for peroxisomal targeting of alanine-glyoxylate aminotransferase as an essential determinant in primary hyperoxaluria type 1
-
Fodor K, Wolf J, Erdmann R, Schliebs W, Wilmanns M. Molecular requirements for peroxisomal targeting of alanine-glyoxylate aminotransferase as an essential determinant in primary hyperoxaluria type 1. PLoS Biol 10: e1001309, 2012. doi:10.1371/journal.pbio.1001309.
-
(2012)
PLoS Biol
, vol.10
-
-
Fodor, K.1
Wolf, J.2
Erdmann, R.3
Schliebs, W.4
Wilmanns, M.5
-
69
-
-
75749136883
-
Signaling functions of reactive oxygen species
-
Forman HJ, Maiorino M, Ursini F. Signaling functions of reactive oxygen species. Biochemistry 49: 835-842, 2010. doi:10.1021/bi9020378.
-
(2010)
Biochemistry
, vol.49
, pp. 835-842
-
-
Forman, H.J.1
Maiorino, M.2
Ursini, F.3
-
70
-
-
84864050485
-
Role of peroxisomes in ROS/RNS- metabolism: Implications for human disease
-
Fransen M, Nordgren M, Wang B, Apanasets O. Role of peroxisomes in ROS/RNS- metabolism: implications for human disease. Biochim Biophys Acta 1822: 1363-1373, 2012. doi:10.1016/j.bbadis.2011.12.001.
-
(2012)
Biochim Biophys Acta
, vol.1822
, pp. 1363-1373
-
-
Fransen, M.1
Nordgren, M.2
Wang, B.3
Apanasets, O.4
-
71
-
-
0036219276
-
Ultrastructural localization of xanthine oxidoreductase activity in isolated rat liver cells
-
Frederiks WM, Vreeling-Sindelárová H. Ultrastructural localization of xanthine oxidoreductase activity in isolated rat liver cells. Acta Histochem 104: 29-37, 2002. doi:10.1078/0065-1281-00629.
-
(2002)
Acta Histochem
, vol.104
, pp. 29-37
-
-
Frederiks, W.M.1
Vreeling-Sindelárová, H.2
-
72
-
-
77349092837
-
Peroxisome diversity and evolution
-
Gabaldón T. Peroxisome diversity and evolution. Philos Trans R Soc Lond B Biol Sci 365: 765-773, 2010. doi:10.1098/rstb.2009.0240.
-
(2010)
Philos Trans R Soc Lond B Biol Sci
, vol.365
, pp. 765-773
-
-
Gabaldón, T.1
-
73
-
-
0035089248
-
Chronic administration of docosahexaenoic acid improves the performance of radial arm maze task in aged rats
-
Gamoh S, Hashimoto M, Hossain S, Masumura S. Chronic administration of docosahexaenoic acid improves the performance of radial arm maze task in aged rats. Clin Exp Pharmacol Physiol 28: 266-270, 2001. doi:10.1046/j.1440-1681.2001.03437.x.
-
(2001)
Clin Exp Pharmacol Physiol
, vol.28
, pp. 266-270
-
-
Gamoh, S.1
Hashimoto, M.2
Hossain, S.3
Masumura, S.4
-
74
-
-
66449083078
-
ULK1.ATG13.FIP200 complex mediates mTOR signaling and is essential for autophagy
-
Ganley IG, Lam H, Wang J, Ding X, Chen S, Jiang X. ULK1.ATG13.FIP200 complex mediates mTOR signaling and is essential for autophagy. J Biol Chem 284: 12297-12305, 2009. doi:10.1074/jbc.M900573200.
-
(2009)
J Biol Chem
, vol.284
, pp. 12297-12305
-
-
Ganley, I.G.1
Lam, H.2
Wang, J.3
Ding, X.4
Chen, S.5
Jiang, X.6
-
75
-
-
75949130828
-
PINK1/Parkin-mediated mitophagy is dependent on VDAC1 and p62/SQSTM1
-
Geisler S, Holmström KM, Skujat D, Fiesel FC, Rothfuss OC, Kahle PJ, Springer W. PINK1/Parkin-mediated mitophagy is dependent on VDAC1 and p62/SQSTM1. Nat Cell Biol 12: 119-131, 2010. doi:10.1038/ncb2012.
-
(2010)
Nat Cell Biol
, vol.12
, pp. 119-131
-
-
Geisler, S.1
Holmström, K.M.2
Skujat, D.3
Fiesel, F.C.4
Rothfuss, O.C.5
Kahle, P.J.6
Springer, W.7
-
76
-
-
0038107461
-
Involvement of the endoplasmic reticulum in peroxisome formation
-
Geuze HJ, Murk JL, Stroobants AK, Griffith JM, Kleijmeer MJ, Koster AJ, Verkleij AJ, Distel B, Tabak HF. Involvement of the endoplasmic reticulum in peroxisome formation. Mol Biol Cell 14: 2900-2907, 2003. doi:10.1091/mbc.E02-11-0734.
-
(2003)
Mol Biol Cell
, vol.14
, pp. 2900-2907
-
-
Geuze, H.J.1
Murk, J.L.2
Stroobants, A.K.3
Griffith, J.M.4
Kleijmeer, M.J.5
Koster, A.J.6
Verkleij, A.J.7
Distel, B.8
Tabak, H.F.9
-
77
-
-
0033615544
-
Mitochondrial nitric-oxide synthase stimulation causes cytochrome c release from isolated mitochondria. Evidence for intramitochondrial peroxynitrite formation
-
Ghafourifar P, Schenk U, Klein SD, Richter C. Mitochondrial nitric-oxide synthase stimulation causes cytochrome c release from isolated mitochondria. Evidence for intramitochondrial peroxynitrite formation. J Biol Chem 274: 31185-31188, 1999. doi:10.1074/jbc.274.44.31185.
-
(1999)
J Biol Chem
, vol.274
, pp. 31185-31188
-
-
Ghafourifar, P.1
Schenk, U.2
Klein, S.D.3
Richter, C.4
-
78
-
-
84880302287
-
Investigating the role of reactive oxygen species in regulating autophagy
-
Gibson SB. Investigating the role of reactive oxygen species in regulating autophagy. Methods Enzymol 528: 217-235, 2013. doi:10.1016/B978-0-12-405881-1.00013-6.
-
(2013)
Methods Enzymol
, vol.528
, pp. 217-235
-
-
Gibson, S.B.1
-
79
-
-
0032545018
-
Mechanism of action of the nongenotoxic peroxisome proliferators: Role of the peroxisome proliferator-activator receptor a
-
Gonzalez FJ, Peters JM, Cattley RC. Mechanism of action of the nongenotoxic peroxisome proliferators: role of the peroxisome proliferator-activator receptor a. J Natl Cancer Inst 90: 1702-1709, 1998. doi:10.1093/jnci/90.22.1702.
-
(1998)
J Natl Cancer Inst
, vol.90
, pp. 1702-1709
-
-
Gonzalez, F.J.1
Peters, J.M.2
Cattley, R.C.3
-
80
-
-
40049088000
-
PPARalpha: Mechanism of species differences and hepatocarcinogenesis of peroxisome proliferators
-
Gonzalez FJ, Shah YM. PPARalpha: mechanism of species differences and hepatocarcinogenesis of peroxisome proliferators. Toxicology 246: 2-8, 2008. doi:10.1016/j. tox.2007.09.030.
-
(2008)
Toxicology
, vol.246
, pp. 2-8
-
-
Gonzalez, F.J.1
Shah, Y.M.2
-
81
-
-
16344389174
-
Catalase enzyme mutations and their association with diseases
-
Góth L, Rass P, Páy A. Catalase enzyme mutations and their association with diseases. Mol Diagn 8: 141-149, 2004. doi:10.1007/BF03260057.
-
(2004)
Mol Diagn
, vol.8
, pp. 141-149
-
-
Góth, L.1
Rass, P.2
Páy, A.3
-
82
-
-
0023548002
-
Identification of a peroxisomal targeting signal at the carboxy terminus of firefly luciferase
-
Gould SG, Keller GA, Subramani S. Identification of a peroxisomal targeting signal at the carboxy terminus of firefly luciferase. J Cell Biol 105: 2923-2931, 1987. doi:10. 1083/jcb.105.6.2923.
-
(1987)
J Cell Biol
, vol.105
, pp. 2923-2931
-
-
Gould, S.G.1
Keller, G.A.2
Subramani, S.3
-
83
-
-
59149083150
-
The peroxisomal protein import machinery-a case report of transient ubiquitination with a new flavor
-
Grou CP, Carvalho AF, Pinto MP, Alencastre IS, Rodrigues TA, Freitas MO, Francisco T, Sá-Miranda C, Azevedo JE. The peroxisomal protein import machinery-a case report of transient ubiquitination with a new flavor. Cell Mol Life Sci 66: 254-262, 2009. doi:10.1007/s00018-008-8415-5.
-
(2009)
Cell Mol Life Sci
, vol.66
, pp. 254-262
-
-
Grou, C.P.1
Carvalho, A.F.2
Pinto, M.P.3
Alencastre, I.S.4
Rodrigues, T.A.5
Freitas, M.O.6
Francisco, T.7
Sá-Miranda, C.8
Azevedo, J.E.9
-
84
-
-
4344677922
-
Decreased proteolysis caused by protein aggregates, inclusion bodies, plaques, lipofuscin, ceroid, and ‘aggresomes’ during oxidative stress, aging, and disease
-
Grune T, Jung T, Merker K, Davies KJA. Decreased proteolysis caused by protein aggregates, inclusion bodies, plaques, lipofuscin, ceroid, and ‘aggresomes’ during oxidative stress, aging, and disease. Int J Biochem Cell Biol 36: 2519-2530, 2004. doi:10. 1016/j.biocel.2004.04.020.
-
(2004)
Int J Biochem Cell Biol
, vol.36
, pp. 2519-2530
-
-
Grune, T.1
Jung, T.2
Merker, K.3
Davies, K.J.A.4
-
85
-
-
78650378982
-
ATM activation in the presence of oxidative stress
-
Guo Z, Deshpande R, Paull TT. ATM activation in the presence of oxidative stress. Cell Cycle 9: 4805-4811, 2010. doi:10.4161/cc.9.24.14323.
-
(2010)
Cell Cycle
, vol.9
, pp. 4805-4811
-
-
Guo, Z.1
Deshpande, R.2
Paull, T.T.3
-
86
-
-
77958191599
-
ATM activation by oxidative stress
-
Guo Z, Kozlov S, Lavin MF, Person MD, Paull TT. ATM activation by oxidative stress. Science 330: 517-521, 2010. doi:10.1126/science.1192912.
-
(2010)
Science
, vol.330
, pp. 517-521
-
-
Guo, Z.1
Kozlov, S.2
Lavin, M.F.3
Person, M.D.4
Paull, T.T.5
-
88
-
-
84884553260
-
Import of proteins into the peroxisomal matrix
-
Hasan S, Platta HW, Erdmann R. Import of proteins into the peroxisomal matrix. Front Physiol 4: 261, 2013. doi:10.3389/fphys.2013.00261.
-
(2013)
Front Physiol
, vol.4
, pp. 261
-
-
Hasan, S.1
Platta, H.W.2
Erdmann, R.3
-
89
-
-
0036319034
-
Docosahexaenoic acid provides protection from impairment of learning ability in Alzheimer’s disease model rats
-
Hashimoto M, Hossain S, Shimada T, Sugioka K, Yamasaki H, Fujii Y, Ishibashi Y, Oka J, Shido O. Docosahexaenoic acid provides protection from impairment of learning ability in Alzheimer’s disease model rats. J Neurochem 81: 1084-1091, 2002. doi:10. 1046/j.1471-4159.2002.00905.x.
-
(2002)
J Neurochem
, vol.81
, pp. 1084-1091
-
-
Hashimoto, M.1
Hossain, S.2
Shimada, T.3
Sugioka, K.4
Yamasaki, H.5
Fujii, Y.6
Ishibashi, Y.7
Oka, J.8
Shido, O.9
-
90
-
-
0034574725
-
Functional transformation of plant peroxisomes
-
Hayashi M, Toriyama K, Kondo M, Kato A, Mano S, De Bellis L, Hayashi-Ishimaru Y, Yamaguchi K, Hayashi H, Nishimura M. Functional transformation of plant peroxisomes. Cell Biochem Biophys 32: 295-304, 2000. doi:10.1385/CBB:32:1-3:295.
-
(2000)
Cell Biochem Biophys
, vol.32
, pp. 295-304
-
-
Hayashi, M.1
Toriyama, K.2
Kondo, M.3
Kato, A.4
Mano, S.5
De Bellis, L.6
Hayashi-Ishimaru, Y.7
Yamaguchi, K.8
Hayashi, H.9
Nishimura, M.10
-
91
-
-
22144465170
-
Contribution of the endoplasmic reticulum to peroxisome formation
-
Hoepfner D, Schildknegt D, Braakman I, Philippsen P, Tabak HF. Contribution of the endoplasmic reticulum to peroxisome formation. Cell 122: 85-95, 2005. doi:10.1016/j.cell.2005.04.025.
-
(2005)
Cell
, vol.122
, pp. 85-95
-
-
Hoepfner, D.1
Schildknegt, D.2
Braakman, I.3
Philippsen, P.4
Tabak, H.F.5
-
92
-
-
78651298893
-
The Autophagy Database: An all-inclusive information resource on autophagy that provides nourishment for research
-
Homma K, Suzuki K, Sugawara H. The Autophagy Database: an all-inclusive information resource on autophagy that provides nourishment for research. Nucleic Acids Res 39: D986-D990, 2011. doi:10.1093/nar/gkq995.
-
(2011)
Nucleic Acids Res
, vol.39
, pp. D986-D990
-
-
Homma, K.1
Suzuki, K.2
Sugawara, H.3
-
93
-
-
0035958005
-
Antioxidant system within yeast peroxisome. Biochemical and physiological characterization of CbPmp20 in the methylotrophic yeast Candida boidinii
-
Horiguchi H, Yurimoto H, Kato N, Sakai Y. Antioxidant system within yeast peroxisome. Biochemical and physiological characterization of CbPmp20 in the methylotrophic yeast Candida boidinii. J Biol Chem 276: 14279-14288, 2001. doi:10.1074/jbc.M011661200.
-
(2001)
J Biol Chem
, vol.276
, pp. 14279-14288
-
-
Horiguchi, H.1
Yurimoto, H.2
Kato, N.3
Sakai, Y.4
-
94
-
-
1842453667
-
Docosahexaenoic acid in the diet: Its importance in maintenance and restoration of neural membrane function
-
Horrocks LA, Farooqui AA. Docosahexaenoic acid in the diet: its importance in maintenance and restoration of neural membrane function. Prostaglandins Leukot Essent Fatty Acids 70: 361-372, 2004. doi:10.1016/j.plefa.2003.12.011.
-
(2004)
Prostaglandins Leukot Essent Fatty Acids
, vol.70
, pp. 361-372
-
-
Horrocks, L.A.1
Farooqui, A.A.2
-
95
-
-
70350674903
-
Peroxisome dynamics in cultured mammalian cells
-
Huybrechts SJ, Van Veldhoven PP, Brees C, Mannaerts GP, Los GV, Fransen M. Peroxisome dynamics in cultured mammalian cells. Traffic 10: 1722-1733, 2009. doi:10.1111/j.1600-0854.2009.00970.x.
-
(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
-
96
-
-
84863115387
-
Catalase deficiency accelerates diabetic renal injury through peroxisomal dysfunction
-
Hwang I, Lee J, Huh JY, Park J, Lee HB, Ho Y-S, Ha H. Catalase deficiency accelerates diabetic renal injury through peroxisomal dysfunction. Diabetes 61: 728-738, 2012. doi:10.2337/db11-0584.
-
(2012)
Diabetes
, vol.61
, pp. 728-738
-
-
Hwang, I.1
Lee, J.2
Huh, J.Y.3
Park, J.4
Lee, H.B.5
Ho, Y.-S.6
Ha, H.7
-
97
-
-
7844239443
-
Temperature-sensitive mutation in PEX1 moderates the phenotypes of peroxisome deficiency disorders
-
Imamura A, Tamura S, Shimozawa N, Suzuki Y, Zhang Z, Tsukamoto T, Orii T, Kondo N, Osumi T, Fujiki Y. Temperature-sensitive mutation in PEX1 moderates the phenotypes of peroxisome deficiency disorders. Hum Mol Genet 7: 2089-2094, 1998. doi:10.1093/hmg/7.13.2089.
-
(1998)
Hum Mol Genet
, vol.7
, pp. 2089-2094
-
-
Imamura, A.1
Tamura, S.2
Shimozawa, N.3
Suzuki, Y.4
Zhang, Z.5
Tsukamoto, T.6
Orii, T.7
Kondo, N.8
Osumi, T.9
Fujiki, Y.10
-
98
-
-
17544402925
-
Temperature-sensitive phenotypes of peroxisome-assembly processes represent the milder forms of human peroxisome-biogenesis disorders
-
Imamura A, Tsukamoto T, Shimozawa N, Suzuki Y, Zhang Z, Imanaka T, Fujiki Y, Orii T, Kondo N, Osumi T. Temperature-sensitive phenotypes of peroxisome-assembly processes represent the milder forms of human peroxisome-biogenesis disorders. Am J Hum Genet 62: 1539-1543, 1998. doi:10.1086/301881.
-
(1998)
Am J Hum Genet
, vol.62
, pp. 1539-1543
-
-
Imamura, A.1
Tsukamoto, T.2
Shimozawa, N.3
Suzuki, Y.4
Zhang, Z.5
Imanaka, T.6
Fujiki, Y.7
Orii, T.8
Kondo, N.9
Osumi, T.10
-
99
-
-
84890828812
-
TRAF6 mediates ubiquitination of KIF23/MKLP1 and is required for midbody ring degradation by selective autophagy
-
Isakson P, Lystad AH, Breen K, Koster G, Stenmark H, Simonsen A. TRAF6 mediates ubiquitination of KIF23/MKLP1 and is required for midbody ring degradation by selective autophagy. Autophagy 9: 1955-1964, 2013. doi:10.4161/auto.26085.
-
(2013)
Autophagy
, vol.9
, pp. 1955-1964
-
-
Isakson, P.1
Lystad, A.H.2
Breen, K.3
Koster, G.4
Stenmark, H.5
Simonsen, A.6
-
100
-
-
84896714242
-
Dissection of the role of p62/Sqstm1 in activation of Nrf2 during xenophagy
-
Ishimura R, Tanaka K, Komatsu M. Dissection of the role of p62/Sqstm1 in activation of Nrf2 during xenophagy. FEBS Lett 588: 822-828, 2014. doi:10.1016/j.febslet.2014. 01.045.
-
(2014)
FEBS Lett
, vol.588
, pp. 822-828
-
-
Ishimura, R.1
Tanaka, K.2
Komatsu, M.3
-
101
-
-
23644443813
-
The retrograde response links metabolism with stress responses, chromatin-dependent gene activation, and genome stability in yeast aging
-
Jazwinski SM. The retrograde response links metabolism with stress responses, chromatin-dependent gene activation, and genome stability in yeast aging. Gene 354: 22-27, 2005. doi:10.1016/j.gene.2005.03.040.
-
(2005)
Gene
, vol.354
, pp. 22-27
-
-
Jazwinski, S.M.1
-
102
-
-
79952355107
-
Selective autophagy mediated by autophagic adapter proteins
-
Johansen T, Lamark T. Selective autophagy mediated by autophagic adapter proteins. Autophagy 7: 279-296, 2011. doi:10.4161/auto.7.3.14487.
-
(2011)
Autophagy
, vol.7
, pp. 279-296
-
-
Johansen, T.1
Lamark, T.2
-
103
-
-
84859416429
-
Phosphorylation-dependent Pex11p and Fis1p interaction regulates peroxisome division
-
Joshi S, Agrawal G, Subramani S. Phosphorylation-dependent Pex11p and Fis1p interaction regulates peroxisome division. Mol Biol Cell 23: 1307-1315, 2012. doi:10.1091/mbc.E11-09-0782.
-
(2012)
Mol Biol Cell
, vol.23
, pp. 1307-1315
-
-
Joshi, S.1
Agrawal, G.2
Subramani, S.3
-
104
-
-
0023896998
-
Cytochemical changes in hepatocytes of rats with endotoxemia or sepsis: Localization of fibronectin, calcium, and enzymes
-
Kang Y-H, McKenna T, Watson LP, Williams R, Holt M. Cytochemical changes in hepatocytes of rats with endotoxemia or sepsis: localization of fibronectin, calcium, and enzymes. J Histochem Cytochem 36: 665-678, 1988. doi:10.1177/36.6.2835411.
-
(1988)
J Histochem Cytochem
, vol.36
, pp. 665-678
-
-
Kang, Y.-H.1
McKenna, T.2
Watson, L.P.3
Williams, R.4
Holt, M.5
-
105
-
-
0034437671
-
Multiple signaling pathways involving ATM
-
Kastan MB, Lim DS, Kim ST, Xu B, Canman C. Multiple signaling pathways involving ATM. Cold Spring Harb Symp Quant Biol 65: 521-526, 2000. doi:10.1101/sqb.2000.65. 521.
-
(2000)
Cold Spring Harb Symp Quant Biol
, vol.65
, pp. 521-526
-
-
Kastan, M.B.1
Lim, D.S.2
Kim, S.T.3
Xu, B.4
Canman, C.5
-
106
-
-
0025915727
-
Cu, Zn superoxide dismutase is a peroxisomal enzyme in human fibroblasts and hepatoma cells
-
Keller G-A, Warner TG, Steimer KS, Hallewell RA. Cu, Zn superoxide dismutase is a peroxisomal enzyme in human fibroblasts and hepatoma cells. Proc Natl Acad Sci USA 88: 7381-7385, 1991. doi:10.1073/pnas.88.16.7381.
-
(1991)
Proc Natl Acad Sci USA
, vol.88
, pp. 7381-7385
-
-
Keller, G.-A.1
Warner, T.G.2
Steimer, K.S.3
Hallewell, R.A.4
-
107
-
-
0034713444
-
Roles of PPARs in health and disease
-
Kersten S, Desvergne B, Wahli W. Roles of PPARs in health and disease. Nature 405: 421-424, 2000. doi:10.1038/35013000.
-
(2000)
Nature
, vol.405
, pp. 421-424
-
-
Kersten, S.1
Desvergne, B.2
Wahli, W.3
-
108
-
-
0032699670
-
Peroxisome proliferator-activated receptor alpha mediates the adaptive response to fasting
-
Kersten S, Seydoux J, Peters JM, Gonzalez FJ, Desvergne B, Wahli W. Peroxisome proliferator-activated receptor alpha mediates the adaptive response to fasting. J Clin Invest 103: 1489-1498, 1999. doi:10.1172/JCI6223.
-
(1999)
J Clin Invest
, vol.103
, pp. 1489-1498
-
-
Kersten, S.1
Seydoux, J.2
Peters, J.M.3
Gonzalez, F.J.4
Desvergne, B.5
Wahli, W.6
-
109
-
-
0345791524
-
Proteomic analysis of rat liver peroxisome: Presence of peroxisome-specific isozyme of Lon protease
-
Kikuchi M, Hatano N, Yokota S, Shimozawa N, Imanaka T, Taniguchi H. Proteomic analysis of rat liver peroxisome: presence of peroxisome-specific isozyme of Lon protease. J Biol Chem 279: 421-428, 2004. doi:10.1074/jbc.M305623200.
-
(2004)
J Biol Chem
, vol.279
, pp. 421-428
-
-
Kikuchi, M.1
Hatano, N.2
Yokota, S.3
Shimozawa, N.4
Imanaka, T.5
Taniguchi, H.6
-
110
-
-
79551598347
-
AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1
-
Kim J, Kundu M, Viollet B, Guan KL. AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1. Nat Cell Biol 13: 132-141, 2011. doi: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
-
111
-
-
58549084167
-
Ubiquitin signals autophagic degradation of cytosolic proteins and peroxisomes
-
Kim PK, Hailey DW, Mullen RT, Lippincott-Schwartz J. Ubiquitin signals autophagic degradation of cytosolic proteins and peroxisomes. Proc Natl Acad Sci USA 105: 20567-20574, 2008. doi:10.1073/pnas.0810611105.
-
(2008)
Proc Natl Acad Sci USA
, vol.105
, pp. 20567-20574
-
-
Kim, P.K.1
Hailey, D.W.2
Mullen, R.T.3
Lippincott-Schwartz, J.4
-
112
-
-
60849099049
-
A role for NBR1 in autophagosomal degradation of ubiquitinated substrates
-
Kirkin V, Lamark T, Sou YS, Bjørkøy G, Nunn JL, Bruun JA, Shvets E, McEwan DG, Clausen TH, Wild P, Bilusic I, Theurillat JP, Øvervatn A, Ishii T, Elazar Z, Komatsu M, Dikic I, Johansen T. A role for NBR1 in autophagosomal degradation of ubiquitinated substrates. Mol Cell 33: 505-516, 2009. doi: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
Shvets, E.7
McEwan, D.G.8
Clausen, T.H.9
Wild, P.10
Bilusic, I.11
Theurillat, J.P.12
Øvervatn, A.13
Ishii, T.14
Elazar, Z.15
Komatsu, M.16
Dikic, I.17
Johansen, T.18
-
113
-
-
0006132932
-
Fatty acids and eicosanoids regulate gene expression through direct interactions with peroxisome proliferator-activated receptors a and ‘Y
-
Kliewer SA, Sundseth SS, Jones SA, Brown PJ, Wisely GB, Koble CS, Devchand P, Wahli W, Willson TM, Lenhard JM, Lehmann JM. Fatty acids and eicosanoids regulate gene expression through direct interactions with peroxisome proliferator-activated receptors a and ‘Y. Proc Natl Acad Sci USA 94: 4318-4323, 1997. doi:10.1073/pnas. 94.9.4318.
-
(1997)
Proc Natl Acad Sci USA
, vol.94
, pp. 4318-4323
-
-
Kliewer, S.A.1
Sundseth, S.S.2
Jones, S.A.3
Brown, P.J.4
Wisely, G.B.5
Koble, C.S.6
Devchand, P.7
Wahli, W.8
Willson, T.M.9
Lenhard, J.M.10
Lehmann, J.M.11
-
114
-
-
10744225487
-
A unified nomenclature for yeast autophagy-related genes
-
Klionsky DJ, Cregg JM, Dunn WA, Jr, Emr SD, Sakai Y, Sandoval IV, Sibirny A, Subramani S, Thumm M, Veenhuis M, Ohsumi Y. A unified nomenclature for yeast autophagy-related genes. Dev Cell 5: 539-545, 2003. doi:10.1016/S1534-5807(03)00296-X.
-
(2003)
Dev Cell
, vol.5
, pp. 539-545
-
-
Klionsky, D.J.1
Cregg, J.M.2
Dunn, W.A.3
Emr, S.D.4
Sakai, Y.5
Sandoval, I.V.6
Sibirny, A.7
Subramani, S.8
Thumm, M.9
Veenhuis, M.10
Ohsumi, Y.11
-
115
-
-
77949876577
-
Phosphorylation-dependent activation of peroxisome proliferator protein PEX11 controls peroxisome abundance
-
Knoblach B, Rachubinski RA. Phosphorylation-dependent activation of peroxisome proliferator protein PEX11 controls peroxisome abundance. J Biol Chem 285: 6670-6680, 2010. doi:10.1074/jbc.M109.094805.
-
(2010)
J Biol Chem
, vol.285
, pp. 6670-6680
-
-
Knoblach, B.1
Rachubinski, R.A.2
-
116
-
-
79960017554
-
Peroxiredoxin 5: Structure, mechanism, and function of the mammalian atypical 2-Cys peroxiredoxin
-
Knoops B, Goemaere J, Van der Eecken V, Declercq J-P. Peroxiredoxin 5: structure, mechanism, and function of the mammalian atypical 2-Cys peroxiredoxin. Antioxid Redox Signal 15: 817-829, 2011. doi:10.1089/ars.2010.3584.
-
(2011)
Antioxid Redox Signal
, vol.15
, pp. 817-829
-
-
Knoops, B.1
Goemaere, J.2
Van der Eecken, V.3
Declercq, J.-P.4
-
117
-
-
0028349156
-
Nitric oxide synthases in mammals
-
Knowles RG, Moncada S. Nitric oxide synthases in mammals. Biochem J 298: 249-258, 1994. doi:10.1042/bj2980249.
-
(1994)
Biochem J
, vol.298
, pp. 249-258
-
-
Knowles, R.G.1
Moncada, S.2
-
118
-
-
35348821858
-
Restoration of peroxisomal catalase import in a model of human cellular aging
-
Koepke JI, Nakrieko KA, Wood CS, Boucher KK, Terlecky LJ, Walton PA, Terlecky SR. Restoration of peroxisomal catalase import in a model of human cellular aging. Traffic 8: 1590-1600, 2007. doi:10.1111/j.1600-0854.2007.00633.x.
-
(2007)
Traffic
, vol.8
, pp. 1590-1600
-
-
Koepke, J.I.1
Nakrieko, K.A.2
Wood, C.S.3
Boucher, K.K.4
Terlecky, L.J.5
Walton, P.A.6
Terlecky, S.R.7
-
119
-
-
36849089101
-
Homeostatic levels of p62 control cytoplasmic inclusion body formation in autophagy-deficient mice
-
Komatsu M, Waguri S, Koike M, Sou YS, Ueno T, Hara T, Mizushima N, Iwata J, Ezaki J, Murata S, Hamazaki J, Nishito Y, Iemura S, Natsume T, Yanagawa T, Uwayama J, Warabi E, Yoshida H, Ishii T, Kobayashi A, Yamamoto M, Yue Z, Uchiyama Y, Kominami E, Tanaka K. Homeostatic levels of p62 control cytoplasmic inclusion body formation in autophagy-deficient mice. Cell 131: 1149-1163, 2007. doi:10.1016/j.cell. 2007.10.035.
-
(2007)
Cell
, vol.131
, pp. 1149-1163
-
-
Komatsu, M.1
Waguri, S.2
Koike, M.3
Sou, Y.S.4
Ueno, T.5
Hara, T.6
Mizushima, N.7
Iwata, J.8
Ezaki, J.9
Murata, S.10
Hamazaki, J.11
Nishito, Y.12
Iemura, S.13
Natsume, T.14
Yanagawa, T.15
Uwayama, J.16
Warabi, E.17
Yoshida, H.18
Ishii, T.19
Kobayashi, A.20
Yamamoto, M.21
Yue, Z.22
Uchiyama, Y.23
Kominami, E.24
Tanaka, K.25
more..
-
121
-
-
24944520856
-
Peroxisome biogenesis: End of the debate
-
Kunau WH. Peroxisome biogenesis: end of the debate. Curr Biol 15: R774-R776, 2005. doi:10.1016/j.cub.2005.08.056.
-
(2005)
Curr Biol
, vol.15
, pp. R774-R776
-
-
Kunau, W.H.1
-
122
-
-
33846949331
-
Novel peroxisomal protease Tysnd1 processes PTS1- and PTS2-containing enzymes involved in beta-oxidation of fatty acids
-
Kurochkin IV, Mizuno Y, Konagaya A, Sakaki Y, Schönbach C, Okazaki Y. Novel peroxisomal protease Tysnd1 processes PTS1- and PTS2-containing enzymes involved in beta-oxidation of fatty acids. EMBO J 26: 835-845, 2007. doi:10.1038/sj. emboj.7601525.
-
(2007)
EMBO J
, vol.26
, pp. 835-845
-
-
Kurochkin, I.V.1
Mizuno, Y.2
Konagaya, A.3
Sakaki, Y.4
Schönbach, C.5
Okazaki, Y.6
-
123
-
-
67650517556
-
NBR1 and p62 as cargo receptors for selective autophagy of ubiquitinated targets
-
Lamark T, Kirkin V, Dikic I, Johansen T. NBR1 and p62 as cargo receptors for selective autophagy of ubiquitinated targets. Cell Cycle 8: 1986-1990, 2009. doi:10.4161/cc.8. 13.8892.
-
(2009)
Cell Cycle
, vol.8
, pp. 1986-1990
-
-
Lamark, T.1
Kirkin, V.2
Dikic, I.3
Johansen, T.4
-
124
-
-
21444451990
-
Nitric oxide protects sunflower leaves against Cd-induced oxidative stress
-
Laspina N, Groppa M, Tomaro M, Benavides M. Nitric oxide protects sunflower leaves against Cd-induced oxidative stress. Plant Sci 169: 323-330, 2005. doi:10.1016/j.plantsci.2005.02.007.
-
(2005)
Plant Sci
, vol.169
, pp. 323-330
-
-
Laspina, N.1
Groppa, M.2
Tomaro, M.3
Benavides, M.4
-
125
-
-
0030841936
-
Peroxisome proliferators and peroxisome proliferator activated receptors (PPARs) as regulators of lipid metabolism
-
Latruffe N, Vamecq J. Peroxisome proliferators and peroxisome proliferator activated receptors (PPARs) as regulators of lipid metabolism. Biochimie 79: 81-94, 1997. doi:10.1016/S0300-9084(97)81496-4.
-
(1997)
Biochimie
, vol.79
, pp. 81-94
-
-
Latruffe, N.1
Vamecq, J.2
-
126
-
-
0035183230
-
The essentiality of long chain n-3 fatty acids in relation to development and function of the brain and retina
-
Lauritzen L, Hansen HS, Jørgensen MH, Michaelsen KF. The essentiality of long chain n-3 fatty acids in relation to development and function of the brain and retina. Prog Lipid Res 40: 1-94, 2001. doi:10.1016/S0163-7827(00)00017-5.
-
(2001)
Prog Lipid Res
, vol.40
, pp. 1-94
-
-
Lauritzen, L.1
Hansen, H.S.2
Jørgensen, M.H.3
Michaelsen, K.F.4
-
127
-
-
85035341932
-
Peroxisomes
-
Waltham, MA: Academic
-
Lazarow PB. Peroxisomes. In: Encyclopedia of Cell Biology. Waltham, MA: Academic, 2016, p. 248-272. doi:10.1016/B978-0-12-394447-4.20022-9.
-
(2016)
Encyclopedia of Cell Biology
, pp. 248-272
-
-
Lazarow, P.B.1
-
128
-
-
0035685590
-
Mitochondrial alterations, cellular response to oxidative stress and defective degradation of proteins in aging
-
Lee H-C, Wei Y-H. Mitochondrial alterations, cellular response to oxidative stress and defective degradation of proteins in aging. Biogerontology 2: 231-244, 2001. doi:10. 1023/A:1013270512172.
-
(2001)
Biogerontology
, vol.2
, pp. 231-244
-
-
Lee, H.-C.1
Wei, Y.-H.2
-
129
-
-
0036906759
-
Peroxisome senescence in human fibroblasts
-
Legakis JE, Koepke JI, Jedeszko C, Barlaskar F, Terlecky LJ, Edwards HJ, Walton PA, Terlecky SR. Peroxisome senescence in human fibroblasts. Mol Biol Cell 13: 4243-4255, 2002. doi:10.1091/mbc.E02-06-0322.
-
(2002)
Mol Biol Cell
, vol.13
, pp. 4243-4255
-
-
Legakis, J.E.1
Koepke, J.I.2
Jedeszko, C.3
Barlaskar, F.4
Terlecky, L.J.5
Edwards, H.J.6
Walton, P.A.7
Terlecky, S.R.8
-
130
-
-
0036906759
-
Peroxisome senescence in human fibroblasts
-
Legakis JE, Koepke JI, Jedeszko C, Barlaskar F, Terlecky LJ, Edwards HJ, Walton PA, Terlecky SR. Peroxisome senescence in human fibroblasts. Mol Biol Cell 13: 4243-4255, 2002. doi:10.1091/mbc.E02-06-0322.
-
(2002)
Mol Biol Cell
, vol.13
, pp. 4243-4255
-
-
Legakis, J.E.1
Koepke, J.I.2
Jedeszko, C.3
Barlaskar, F.4
Terlecky, L.J.5
Edwards, H.J.6
Walton, P.A.7
Terlecky, S.R.8
-
131
-
-
0014512427
-
The synthesis and turnover of rat liver peroxisomes. I. Fractionation of peroxisome proteins
-
Leighton F, Poole B, Lazarow PB, De Duve C. The synthesis and turnover of rat liver peroxisomes. I. Fractionation of peroxisome proteins. J Cell Biol 41: 521-535, 1969. doi:10.1083/jcb.41.2.521.
-
(1969)
J Cell Biol
, vol.41
, pp. 521-535
-
-
Leighton, F.1
Poole, B.2
Lazarow, P.B.3
De Duve, C.4
-
132
-
-
0033594980
-
A critical role for the peroxisome proliferatoractivated receptor alpha (PPARalpha) in the cellular fasting response: The PPARalphanull mouse as a model of fatty acid oxidation disorders
-
Leone TC, Weinheimer CJ, Kelly DP. A critical role for the peroxisome proliferatoractivated receptor alpha (PPARalpha) in the cellular fasting response: the PPARalphanull mouse as a model of fatty acid oxidation disorders. Proc Natl Acad Sci USA 96: 7473-7478, 1999. doi:10.1073/pnas.96.13.7473.
-
(1999)
Proc Natl Acad Sci USA
, vol.96
, pp. 7473-7478
-
-
Leone, T.C.1
Weinheimer, C.J.2
Kelly, D.P.3
-
133
-
-
37649005234
-
Autophagy in the pathogenesis of disease
-
Levine B, Kroemer G. Autophagy in the pathogenesis of disease. Cell 132: 27-42, 2008. doi:10.1016/j.cell.2007.12.018.
-
(2008)
Cell
, vol.132
, pp. 27-42
-
-
Levine, B.1
Kroemer, G.2
-
134
-
-
37649017409
-
SnapShot: Macroautophagy
-
Levine B, Kroemer G. SnapShot: macroautophagy. Cell 132: 162.e127-162.e3, 2008. doi:10.1016/j.cell.2007.12.026.
-
(2008)
Cell
, vol.132
, pp. 162
-
-
Levine, B.1
Kroemer, G.2
-
135
-
-
44949231368
-
Genome-wide and functional annotation of human E3 ubiquitin ligases identifies MULAN, a mitochondrial E3 that regulates the organelle’s dynamics and signaling
-
Li W, Bengtson MH, Ulbrich A, Matsuda A, Reddy VA, Orth A, Chanda SK, Batalov S, Joazeiro CA. Genome-wide and functional annotation of human E3 ubiquitin ligases identifies MULAN, a mitochondrial E3 that regulates the organelle’s dynamics and signaling. PLoS One 3: e1487, 2008. doi:10.1371/journal.pone.0001487.
-
(2008)
PLoS One
, vol.3
-
-
Li, W.1
Bengtson, M.H.2
Ulbrich, A.3
Matsuda, A.4
Reddy, V.A.5
Orth, A.6
Chanda, S.K.7
Batalov, S.8
Joazeiro, C.A.9
-
136
-
-
16244416174
-
A diet enriched with the omega-3 fatty acid docosahexaenoic acid reduces amyloid burden in an aged Alzheimer mouse model
-
Lim GP, Calon F, Morihara T, Yang F, Teter B, Ubeda O, Salem N, Jr, Frautschy SA, Cole GM. A diet enriched with the omega-3 fatty acid docosahexaenoic acid reduces amyloid burden in an aged Alzheimer mouse model. J Neurosci 25: 3032-3040, 2005. doi:10.1523/JNEUROSCI.4225-04.2005.
-
(2005)
J Neurosci
, vol.25
, pp. 3032-3040
-
-
Lim, G.P.1
Calon, F.2
Morihara, T.3
Yang, F.4
Teter, B.5
Ubeda, O.6
Salem, N.7
Frautschy, S.A.8
Cole, G.M.9
-
137
-
-
84865279926
-
Recent advances in peroxisomal matrix protein import
-
Liu X, Ma C, Subramani S. Recent advances in peroxisomal matrix protein import. Curr Opin Cell Biol 24: 484-489, 2012. doi:10.1016/j.ceb.2012.05.003.
-
(2012)
Curr Opin Cell Biol
, vol.24
, pp. 484-489
-
-
Liu, X.1
Ma, C.2
Subramani, S.3
-
138
-
-
33845656956
-
Mitochondrial retrograde signaling
-
Liu Z, Butow RA. Mitochondrial retrograde signaling. Annu Rev Genet 40: 159-185, 2006. doi:10.1146/annurev.genet.40.110405.090613.
-
(2006)
Annu Rev Genet
, vol.40
, pp. 159-185
-
-
Liu, Z.1
Butow, R.A.2
-
139
-
-
1542283630
-
Peroxisome proliferator-activated receptor a. target genes
-
Mandard S, Müller M, Kersten S. Peroxisome proliferator-activated receptor a. target genes. Cell Mol Life Sci 61: 393-416, 2004. doi:10.1007/s00018-003-3216-3.
-
(2004)
Cell Mol Life Sci
, vol.61
, pp. 393-416
-
-
Mandard, S.1
Müller, M.2
Kersten, S.3
-
140
-
-
77951168347
-
A yeast MAPK cascade regulates pexophagy but not other autophagy pathways
-
Manjithaya R, Jain S, Farré JC, Subramani S. A yeast MAPK cascade regulates pexophagy but not other autophagy pathways. J Cell Biol 189: 303-310, 2010. doi:10. 1083/jcb.200909154.
-
(2010)
J Cell Biol
, vol.189
, pp. 303-310
-
-
Manjithaya, R.1
Jain, S.2
Farré, J.C.3
Subramani, S.4
-
141
-
-
80053405720
-
Nbr1 is a novel inhibitor of ligand-mediated receptor tyrosine kinase degradation
-
Mardakheh FK, Auciello G, Dafforn TR, Rappoport JZ, Heath JK. Nbr1 is a novel inhibitor of ligand-mediated receptor tyrosine kinase degradation. Mol Cell Biol 30: 5672-5685, 2010. doi:10.1128/MCB.00878-10.
-
(2010)
Mol Cell Biol
, vol.30
, pp. 5672-5685
-
-
Mardakheh, F.K.1
Auciello, G.2
Dafforn, T.R.3
Rappoport, J.Z.4
Heath, J.K.5
-
142
-
-
70449728467
-
Spred2 interaction with the late endosomal protein NBR1 down-regulates fibroblast growth factor receptor signaling
-
Mardakheh FK, Yekezare M, Machesky LM, Heath JK. Spred2 interaction with the late endosomal protein NBR1 down-regulates fibroblast growth factor receptor signaling. J Cell Biol 187: 265-277, 2009. doi:10.1083/jcb.200905118.
-
(2009)
J Cell Biol
, vol.187
, pp. 265-277
-
-
Mardakheh, F.K.1
Yekezare, M.2
Machesky, L.M.3
Heath, J.K.4
-
143
-
-
0029792856
-
Redox-sensitive homodimerization of Pex11p: A proposed mechanism to regulate peroxisomal division
-
Marshall PA, Dyer JM, Quick ME, Goodman JM. Redox-sensitive homodimerization of Pex11p: a proposed mechanism to regulate peroxisomal division. J Cell Biol 135: 123-137, 1996. doi:10.1083/jcb.135.1.123.
-
(1996)
J Cell Biol
, vol.135
, pp. 123-137
-
-
Marshall, P.A.1
Dyer, J.M.2
Quick, M.E.3
Goodman, J.M.4
-
144
-
-
77955888015
-
Photorespiration: Current status and approaches for metabolic engineering
-
Maurino VG, Peterhansel C. Photorespiration: current status and approaches for metabolic engineering. Curr Opin Plant Biol 13: 249-256, 2010. doi:10.1016/j.pbi. 2010.01.006.
-
(2010)
Curr Opin Plant Biol
, vol.13
, pp. 249-256
-
-
Maurino, V.G.1
Peterhansel, C.2
-
145
-
-
84956586141
-
Human peroxin PEX3 is co-translationally integrated into the ER and exits the ER in budding vesicles
-
Mayerhofer PU, Bañó-Polo M, Mingarro I, Johnson AE. Human peroxin PEX3 is co-translationally integrated into the ER and exits the ER in budding vesicles. Traffic 17: 117-130, 2016. doi:10.1111/tra.12350.
-
(2016)
Traffic
, vol.17
, pp. 117-130
-
-
Mayerhofer, P.U.1
Bañó-Polo, M.2
Mingarro, I.3
Johnson, A.E.4
-
146
-
-
0031407013
-
Dietary docosahexaenoic acid increases cerebral acetylcholine levels and improves passive avoidance performance in stroke-prone spontaneously hypertensive rats
-
Minami M, Kimura S, Endo T, Hamaue N, Hirafuji M, Togashi H, Matsumoto M, Yoshioka M, Saito H, Watanabe S, Kobayashi T, Okuyama H. Dietary docosahexaenoic acid increases cerebral acetylcholine levels and improves passive avoidance performance in stroke-prone spontaneously hypertensive rats. Pharmacol Biochem Behav 58: 1123-1129, 1997. doi:10.1016/S0091-3057(97)00300-6.
-
(1997)
Pharmacol Biochem Behav
, vol.58
, pp. 1123-1129
-
-
Minami, M.1
Kimura, S.2
Endo, T.3
Hamaue, N.4
Hirafuji, M.5
Togashi, H.6
Matsumoto, M.7
Yoshioka, M.8
Saito, H.9
Watanabe, S.10
Kobayashi, T.11
Okuyama, H.12
-
148
-
-
77956416339
-
Autophagy in mammalian development and differentiation
-
Mizushima N, Levine B. Autophagy in mammalian development and differentiation. Nat Cell Biol 12: 823-830, 2010. doi:10.1038/ncb0910-823.
-
(2010)
Nat Cell Biol
, vol.12
, pp. 823-830
-
-
Mizushima, N.1
Levine, B.2
-
149
-
-
0038115068
-
Consumption of fish and n-3 fatty acids and risk of incident Alzheimer disease
-
Morris MC, Evans DA, Bienias JL, Tangney CC, Bennett DA, Wilson RS, Aggarwal N, Schneider J. Consumption of fish and n-3 fatty acids and risk of incident Alzheimer disease. Arch Neurol 60: 940-946, 2003. doi:10.1001/archneur.60.7.940.
-
(2003)
Arch Neurol
, vol.60
, pp. 940-946
-
-
Morris, M.C.1
Evans, D.A.2
Bienias, J.L.3
Tangney, C.C.4
Bennett, D.A.5
Wilson, R.S.6
Aggarwal, N.7
Schneider, J.8
-
150
-
-
0032729864
-
Genotype-phenotype correlations in disorders of peroxisome biogenesis
-
Moser HW. Genotype-phenotype correlations in disorders of peroxisome biogenesis. Mol Genet Metab 68: 316-327, 1999. doi:10.1006/mgme.1999.2926.
-
(1999)
Mol Genet Metab
, vol.68
, pp. 316-327
-
-
Moser, H.W.1
-
151
-
-
0029866770
-
Very long-chain fatty acids in diagnosis, pathogenesis, and therapy of peroxisomal disorders
-
Moser HW, Moser AB. Very long-chain fatty acids in diagnosis, pathogenesis, and therapy of peroxisomal disorders. Lipids 31, Suppl: S141-S144, 1996. doi:10.1007/ BF02637066.
-
(1996)
Lipids
, vol.31
, pp. S141-S144
-
-
Moser, H.W.1
Moser, A.B.2
-
152
-
-
34547595860
-
Yeast peroxisomes multiply by growth and division
-
Motley AM, Hettema EH. Yeast peroxisomes multiply by growth and division. J Cell Biol 178: 399-410, 2007. doi:10.1083/jcb.200702167.
-
(2007)
J Cell Biol
, vol.178
, pp. 399-410
-
-
Motley, A.M.1
Hettema, E.H.2
-
153
-
-
84869464808
-
Atg36: The Saccharomyces cerevisiae receptor for pexophagy
-
Motley AM, Nuttall JM, Hettema EH. Atg36: the Saccharomyces cerevisiae receptor for pexophagy. Autophagy 8: 1680-1681, 2012. doi:10.4161/auto.21485.
-
(2012)
Autophagy
, vol.8
, pp. 1680-1681
-
-
Motley, A.M.1
Nuttall, J.M.2
Hettema, E.H.3
-
154
-
-
84863843241
-
Pex3-anchored Atg36 tags peroxisomes for degradation in Saccharomyces cerevisiae
-
Motley AM, Nuttall JM, Hettema EH. Pex3-anchored Atg36 tags peroxisomes for degradation in Saccharomyces cerevisiae. EMBO J 31: 2852-2868, 2012. doi:10.1038/emboj.2012.151.
-
(2012)
EMBO J
, vol.31
, pp. 2852-2868
-
-
Motley, A.M.1
Nuttall, J.M.2
Hettema, E.H.3
-
155
-
-
84864063407
-
Molecular basis of peroxisomal biogenesis disorders caused by defects in peroxisomal matrix protein import
-
Nagotu S, Kalel VC, Erdmann R, Platta HW. Molecular basis of peroxisomal biogenesis disorders caused by defects in peroxisomal matrix protein import. Biochim Biophys Acta 1822: 1326-1336, 2012. doi:10.1016/j.bbadis.2012.05.010.
-
(2012)
Biochim Biophys Acta
, vol.1822
, pp. 1326-1336
-
-
Nagotu, S.1
Kalel, V.C.2
Erdmann, R.3
Platta, H.W.4
-
156
-
-
84903780037
-
Atg37 regulates the assembly of the pexophagic receptor protein complex
-
Nazarko TY. Atg37 regulates the assembly of the pexophagic receptor protein complex. Autophagy 10: 1348-1349, 2014. doi:10.4161/auto.29073.
-
(2014)
Autophagy
, vol.10
, pp. 1348-1349
-
-
Nazarko, T.Y.1
-
157
-
-
84894030921
-
Peroxisomal Atg37 binds Atg30 or palmitoyl-CoA to regulate phagophore formation during pexophagy
-
Nazarko TY, Ozeki K, Till A, Ramakrishnan G, Lotfi P, Yan M, Subramani S. Peroxisomal Atg37 binds Atg30 or palmitoyl-CoA to regulate phagophore formation during pexophagy. J Cell Biol 204: 541-557, 2014. doi:10.1083/jcb.201307050.
-
(2014)
J Cell Biol
, vol.204
, pp. 541-557
-
-
Nazarko, T.Y.1
Ozeki, K.2
Till, A.3
Ramakrishnan, G.4
Lotfi, P.5
Yan, M.6
Subramani, S.7
-
158
-
-
38349023008
-
Cargo-selected transport from the mitochondria to peroxisomes is mediated by vesicular carriers
-
Neuspiel M, Schauss AC, Braschi E, Zunino R, Rippstein P, Rachubinski RA, Andrade-Navarro MA, McBride HM. Cargo-selected transport from the mitochondria to peroxisomes is mediated by vesicular carriers. Curr Biol 18: 102-108, 2008. doi:10.1016/j.cub.2007.12.038.
-
(2008)
Curr Biol
, vol.18
, pp. 102-108
-
-
Neuspiel, M.1
Schauss, A.C.2
Braschi, E.3
Zunino, R.4
Rippstein, P.5
Rachubinski, R.A.6
Andrade-Navarro, M.A.7
McBride, H.M.8
-
159
-
-
41549151641
-
Ref(2)P, the Drosophila melanogaster homologue of mammalian p62, is required for the formation of protein aggregates in adult brain
-
Nezis IP, Simonsen A, Sagona AP, Finley K, Gaumer S, Contamine D, Rusten TE, Stenmark H, Brech A. Ref(2)P, the Drosophila melanogaster homologue of mammalian p62, is required for the formation of protein aggregates in adult brain. J Cell Biol 180: 1065-1071, 2008. doi:10.1083/jcb.200711108.
-
(2008)
J Cell Biol
, vol.180
, pp. 1065-1071
-
-
Nezis, I.P.1
Simonsen, A.2
Sagona, A.P.3
Finley, K.4
Gaumer, S.5
Contamine, D.6
Rusten, T.E.7
Stenmark, H.8
Brech, A.9
-
160
-
-
80054933045
-
Impairment of lon-induced protection against the accumulation of oxidized proteins in senescent wi-38 fibroblasts
-
Ngo JK, Pomatto LC, Bota DA, Koop AL, Davies KJA. Impairment of lon-induced protection against the accumulation of oxidized proteins in senescent wi-38 fibroblasts. J Gerontol A Biol Sci Med Sci 66: 1178-1185, 2011. doi:10.1093/gerona/glr145.
-
(2011)
J Gerontol A Biol Sci Med Sci
, vol.66
, pp. 1178-1185
-
-
Ngo, J.K.1
Pomatto, L.C.2
Bota, D.A.3
Koop, A.L.4
Davies, K.J.A.5
-
161
-
-
84878771657
-
Upregulation of the mitochondrial Lon Protease allows adaptation to acute oxidative stress but dysregulation is associated with chronic stress, disease, and aging
-
Ngo JK, Pomatto LC, Davies KJA. Upregulation of the mitochondrial Lon Protease allows adaptation to acute oxidative stress but dysregulation is associated with chronic stress, disease, and aging. Redox Biol 1: 258-264, 2013. doi:10.1016/j.redox. 2013.01.015.
-
(2013)
Redox Biol
, vol.1
, pp. 258-264
-
-
Ngo, J.K.1
Pomatto, L.C.2
Davies, K.J.A.3
-
162
-
-
0030447672
-
Functional transformation of microbodies in higher plant cells
-
Nishimura M, Hayashi M, Kato A, Yamaguchi K, Mano S. Functional transformation of microbodies in higher plant cells. Cell Struct Funct 21: 387-393, 1996. doi:10.1247/csf.21.387.
-
(1996)
Cell Struct Funct
, vol.21
, pp. 387-393
-
-
Nishimura, M.1
Hayashi, M.2
Kato, A.3
Yamaguchi, K.4
Mano, S.5
-
163
-
-
84943775216
-
Export-deficient monoubiquitinated PEX5 triggers peroxisome removal in SV40 large T antigen-transformed mouse embryonic fibroblasts
-
Nordgren M, Francisco T, Lismont C, Hennebel L, Brees C, Wang B, Van Veldhoven PP, Azevedo JE, Fransen M. Export-deficient monoubiquitinated PEX5 triggers peroxisome removal in SV40 large T antigen-transformed mouse embryonic fibroblasts. Autophagy 11: 1326-1340, 2015. doi:10.1080/15548627.2015.1061846.
-
(2015)
Autophagy
, vol.11
, pp. 1326-1340
-
-
Nordgren, M.1
Francisco, T.2
Lismont, C.3
Hennebel, L.4
Brees, C.5
Wang, B.6
Van Veldhoven, P.P.7
Azevedo, J.E.8
Fransen, M.9
-
164
-
-
84895098727
-
Peroxisomal metabolism and oxidative stress
-
Nordgren M, Fransen M. Peroxisomal metabolism and oxidative stress. Biochimie 98: 56-62, 2014. doi:10.1016/j.biochi.2013.07.026.
-
(2014)
Biochimie
, vol.98
, pp. 56-62
-
-
Nordgren, M.1
Fransen, M.2
-
165
-
-
84904680881
-
Diverse intracellular pathogens activate type III interferon expression from peroxisomes
-
Odendall C, Dixit E, Stavru F, Bierne H, Franz KM, Durbin AF, Boulant S, Gehrke L, Cossart P, Kagan JC. Diverse intracellular pathogens activate type III interferon expression from peroxisomes. Nat Immunol 15: 717-726, 2014. doi:10.1038/ni.2915.
-
(2014)
Nat Immunol
, vol.15
, pp. 717-726
-
-
Odendall, C.1
Dixit, E.2
Stavru, F.3
Bierne, H.4
Franz, K.M.5
Durbin, A.F.6
Boulant, S.7
Gehrke, L.8
Cossart, P.9
Kagan, J.C.10
-
166
-
-
84455173253
-
Two proteases, trypsin domain-containing 1 (Tysnd1) and peroxisomal lon protease (PsLon), cooperatively regulate fatty acid β-oxidation in peroxisomal matrix
-
Okumoto K, Kametani Y, Fujiki Y. Two proteases, trypsin domain-containing 1 (Tysnd1) and peroxisomal lon protease (PsLon), cooperatively regulate fatty acid β-oxidation in peroxisomal matrix. J Biol Chem 286: 44367-44379, 2011. doi:10. 1074/jbc.M111.285197.
-
(2011)
J Biol Chem
, vol.286
, pp. 44367-44379
-
-
Okumoto, K.1
Kametani, Y.2
Fujiki, Y.3
-
167
-
-
84455173253
-
Two proteases, trypsin domain-containing 1 (Tysnd1) and peroxisomal lon protease (PsLon), cooperatively regulate fatty acid β-oxidation in peroxisomal matrix
-
Okumoto K, Kametani Y, Fujiki Y. Two proteases, trypsin domain-containing 1 (Tysnd1) and peroxisomal lon protease (PsLon), cooperatively regulate fatty acid β-oxidation in peroxisomal matrix. J Biol Chem 286: 44367-44379, 2011. doi:10. 1074/jbc.M111.285197.
-
(2011)
J Biol Chem
, vol.286
, pp. 44367-44379
-
-
Okumoto, K.1
Kametani, Y.2
Fujiki, Y.3
-
168
-
-
84901044873
-
Distinct modes of ubiquitination of peroxisometargeting signal type 1 (PTS1) receptor Pex5p regulate PTS1 protein import
-
Okumoto K, Noda H, Fujiki Y. Distinct modes of ubiquitination of peroxisometargeting signal type 1 (PTS1) receptor Pex5p regulate PTS1 protein import. J Biol Chem 289: 14089-14108, 2014. doi:10.1074/jbc.M113.527937.
-
(2014)
J Biol Chem
, vol.289
, pp. 14089-14108
-
-
Okumoto, K.1
Noda, H.2
Fujiki, Y.3
-
169
-
-
33846863589
-
Nitric oxide and peroxynitrite in health and disease
-
Pacher P, Beckman JS, Liaudet L. Nitric oxide and peroxynitrite in health and disease. Physiol Rev 87: 315-424, 2007. doi:10.1152/physrev.00029.2006.
-
(2007)
Physiol Rev
, vol.87
, pp. 315-424
-
-
Pacher, P.1
Beckman, J.S.2
Liaudet, L.3
-
170
-
-
41149138482
-
Lipopolysaccharide-induced peroxisomal dysfunction exacerbates cerebral white matter injury: Attenuation by N-acetyl cysteine
-
Paintlia MK, Paintlia AS, Contreras MA, Singh I, Singh AK. Lipopolysaccharide-induced peroxisomal dysfunction exacerbates cerebral white matter injury: attenuation by N-acetyl cysteine. Exp Neurol 210: 560-576, 2008. doi:10.1016/j.expneurol.2007.12. 011.
-
(2008)
Exp Neurol
, vol.210
, pp. 560-576
-
-
Paintlia, M.K.1
Paintlia, A.S.2
Contreras, M.A.3
Singh, I.4
Singh, A.K.5
-
171
-
-
0031952238
-
Peroxisome proliferator activated receptor-a expression in human liver
-
Palmer CN, Hsu M-H, Griffin KJ, Raucy JL, Johnson EF. Peroxisome proliferator activated receptor-a expression in human liver. Mol Pharmacol 53: 14-22, 1998.
-
(1998)
Mol Pharmacol
, vol.53
, pp. 14-22
-
-
Palmer, C.N.1
Hsu, M.-H.2
Griffin, K.J.3
Raucy, J.L.4
Johnson, E.F.5
-
172
-
-
0037453510
-
Assembly of cell regulatory systems through protein interaction domains
-
Pawson T, Nash P. Assembly of cell regulatory systems through protein interaction domains. Science 300: 445-452, 2003. doi:10.1126/science.1083653.
-
(2003)
Science
, vol.300
, pp. 445-452
-
-
Pawson, T.1
Nash, P.2
-
173
-
-
0031825628
-
The role of peroxisomes in aging
-
Périchon R, Bourre JM, Kelly JF, Roth GS. The role of peroxisomes in aging. Cell Mol Life Sci 54: 641-652, 1998. doi:10.1007/s000180050192.
-
(1998)
Cell Mol Life Sci
, vol.54
, pp. 641-652
-
-
Périchon, R.1
Bourre, J.M.2
Kelly, J.F.3
Roth, G.S.4
-
174
-
-
18344418461
-
Aging-related decrease in liver peroxisomal fatty acid oxidation in control and clofibrate-treated mice. A biochemical study and mechanistic approach
-
Périchon R, Bourre JM. Aging-related decrease in liver peroxisomal fatty acid oxidation in control and clofibrate-treated mice. A biochemical study and mechanistic approach. Mech Ageing Dev 87: 115-126, 1996. doi:10.1016/0047-6374(96)01705-8.
-
(1996)
Mech Ageing Dev
, vol.87
, pp. 115-126
-
-
Périchon, R.1
Bourre, J.M.2
-
175
-
-
26044475136
-
Peroxisome proliferator-activated receptor-a and liver cancer: Where do we stand?
-
Peters JM, Cheung C, Gonzalez FJ. Peroxisome proliferator-activated receptor-a and liver cancer: where do we stand? J Mol Med (Berl) 83: 774-785, 2005. doi:10.1007/s00109-005-0678-9.
-
(2005)
J Mol Med (Berl)
, vol.83
, pp. 774-785
-
-
Peters, J.M.1
Cheung, C.2
Gonzalez, F.J.3
-
176
-
-
78649848069
-
The immunoproteasome, the 20S proteasome and the PA28αβ proteasome regulator are oxidativestress-adaptive proteolytic complexes
-
Pickering AM, Koop AL, Teoh CY, Ermak G, Grune T, Davies KJA. The immunoproteasome, the 20S proteasome and the PA28αβ proteasome regulator are oxidativestress-adaptive proteolytic complexes. Biochem J 432: 585-594, 2010. doi:10.1042/ BJ20100878.
-
(2010)
Biochem J
, vol.432
, pp. 585-594
-
-
Pickering, A.M.1
Koop, A.L.2
Teoh, C.Y.3
Ermak, G.4
Grune, T.5
Davies, K.J.A.6
-
177
-
-
84858972249
-
Nrf2-dependent induction of proteasome and Pa28αβ regulator are required for adaptation to oxidative stress
-
Pickering AM, Linder RA, Zhang H, Forman HJ, Davies KJA. Nrf2-dependent induction of proteasome and Pa28αβ regulator are required for adaptation to oxidative stress. J Biol Chem 287: 10021-10031, 2012. doi:10.1074/jbc.M111.277145.
-
(2012)
J Biol Chem
, vol.287
, pp. 10021-10031
-
-
Pickering, A.M.1
Linder, R.A.2
Zhang, H.3
Forman, H.J.4
Davies, K.J.A.5
-
178
-
-
70350447348
-
Pex2 and pex12 function as protein-ubiquitin ligases in peroxisomal protein import
-
Platta HW, El Magraoui F, Bäumer BE, Schlee D, Girzalsky W, Erdmann R. Pex2 and pex12 function as protein-ubiquitin ligases in peroxisomal protein import. Mol Cell Biol 29: 5505-5516, 2009. doi:10.1128/MCB.00388-09.
-
(2009)
Mol Cell Biol
, vol.29
, pp. 5505-5516
-
-
Platta, H.W.1
El Magraoui, F.2
Bäumer, B.E.3
Schlee, D.4
Girzalsky, W.5
Erdmann, R.6
-
179
-
-
84895142640
-
The peroxisomal receptor dislocation pathway: To the exportomer and beyond
-
Platta HW, Hagen S, Reidick C, Erdmann R. The peroxisomal receptor dislocation pathway: to the exportomer and beyond. Biochimie 98: 16-28, 2014. doi:10.1016/j. biochi.2013.12.009.
-
(2014)
Biochimie
, vol.98
, pp. 16-28
-
-
Platta, H.W.1
Hagen, S.2
Reidick, C.3
Erdmann, R.4
-
180
-
-
58149344946
-
Midbody ring disposal by autophagy is a post-abscission event of cytokinesis
-
Pohl C, Jentsch S. Midbody ring disposal by autophagy is a post-abscission event of cytokinesis. Nat Cell Biol 11: 65-70, 2009. doi:10.1038/ncb1813.
-
(2009)
Nat Cell Biol
, vol.11
, pp. 65-70
-
-
Pohl, C.1
Jentsch, S.2
-
181
-
-
33845326985
-
Peroxisomal beta-oxidation-a metabolic pathway with multiple functions
-
Poirier Y, Antonenkov VD, Glumoff T, Hiltunen JK. Peroxisomal beta-oxidation-a metabolic pathway with multiple functions. Biochim Biophys Acta 1763: 1413-1426, 2006. doi:10.1016/j.bbamcr.2006.08.034.
-
(2006)
Biochim Biophys Acta
, vol.1763
, pp. 1413-1426
-
-
Poirier, Y.1
Antonenkov, V.D.2
Glumoff, T.3
Hiltunen, J.K.4
-
182
-
-
85055564814
-
The peroxisomal Lon protease LonP2 in aging and disease: Functions and comparisons with mitochondrial Lon protease LonP1
-
Pomatto LC, Raynes R, Davies KJA. The peroxisomal Lon protease LonP2 in aging and disease: functions and comparisons with mitochondrial Lon protease LonP1. Biol Rev Camb Philos Soc 92: 739-753, 2017. doi:10.1111/brv.12253.
-
(2017)
Biol Rev Camb Philos Soc
, vol.92
, pp. 739-753
-
-
Pomatto, L.C.1
Raynes, R.2
Davies, K.J.A.3
-
183
-
-
0014513586
-
The synthesis and turnover of rat liver peroxisomes. II. Turnover of peroxisome proteins
-
Poole B, Leighton F, De Duve C. The synthesis and turnover of rat liver peroxisomes. II. Turnover of peroxisome proteins. J Cell Biol 41: 536-546, 1969. doi:10.1083/jcb. 41.2.536.
-
(1969)
J Cell Biol
, vol.41
, pp. 536-546
-
-
Poole, B.1
Leighton, F.2
De Duve, C.3
-
184
-
-
0030720859
-
Human PEX1 is mutated in complementation group 1 of the peroxisome biogenesis disorders
-
Portsteffen H, Beyer A, Becker E, Epplen C, Pawlak A, Kunau W-H, Dodt G. Human PEX1 is mutated in complementation group 1 of the peroxisome biogenesis disorders. Nat Genet 17: 449-452, 1997. doi:10.1038/ng1297-449.
-
(1997)
Nat Genet
, vol.17
, pp. 449-452
-
-
Portsteffen, H.1
Beyer, A.2
Becker, E.3
Epplen, C.4
Pawlak, A.5
Kunau, W.-H.6
Dodt, G.7
-
185
-
-
33746833881
-
Free radical biology and medicine: It’s a gas, man!
-
Pryor WA, Houk KN, Foote CS, Fukuto JM, Ignarro LJ, Squadrito GL, Davies KJA. Free radical biology and medicine: it’s a gas, man! Am J Physiol Regul Integr Comp Physiol 291: R491-R511, 2006. doi:10.1152/ajpregu.00614.2005.
-
(2006)
Am J Physiol Regul Integr Comp Physiol
, vol.291
, pp. R491-R511
-
-
Pryor, W.A.1
Houk, K.N.2
Foote, C.S.3
Fukuto, J.M.4
Ignarro, L.J.5
Squadrito, G.L.6
Davies, K.J.A.7
-
186
-
-
0029849741
-
Targeting of human catalase to peroxisomes is dependent upon a novel COOH-terminal peroxisomal targeting sequence
-
Purdue PE, Lazarow PB. Targeting of human catalase to peroxisomes is dependent upon a novel COOH-terminal peroxisomal targeting sequence. J Cell Biol 134: 849-862, 1996. doi:10.1083/jcb.134.4.849.
-
(1996)
J Cell Biol
, vol.134
, pp. 849-862
-
-
Purdue, P.E.1
Lazarow, P.B.2
-
187
-
-
77954987061
-
PPARalpha: Energy combustion, hypolipidemia, inflammation and cancer
-
Pyper SR, Viswakarma N, Yu S, Reddy JK. PPARalpha: energy combustion, hypolipidemia, inflammation and cancer. Nucl Recept Signal 8: e002, 2010. doi:10.1621/nrs. 08002.
-
(2010)
Nucl Recept Signal
, vol.8
-
-
Pyper, S.R.1
Viswakarma, N.2
Yu, S.3
Reddy, J.K.4
-
188
-
-
0030478960
-
Hepatocarcinogenesis of peroxisome proliferators
-
Rao MS, Reddy JK. Hepatocarcinogenesis of peroxisome proliferators. Ann N Y Acad Sci 804: 573-587, 1996. doi:10.1111/j.1749-6632.1996.tb18646.x.
-
(1996)
Ann N Y Acad Sci
, vol.804
, pp. 573-587
-
-
Rao, M.S.1
Reddy, J.K.2
-
189
-
-
0018731008
-
Tumorigenicity of the hypolipidaemic peroxisome proliferator ethyl-alpha-p-chlorophenoxyisobutyrate (clofibrate) in rats
-
Reddy JK, Qureshi SA. Tumorigenicity of the hypolipidaemic peroxisome proliferator ethyl-alpha-p-chlorophenoxyisobutyrate (clofibrate) in rats. Br J Cancer 40: 476-482, 1979. doi:10.1038/bjc.1979.203.
-
(1979)
Br J Cancer
, vol.40
, pp. 476-482
-
-
Reddy, J.K.1
Qureshi, S.A.2
-
190
-
-
2442635417
-
Peroxisome proliferators and peroxisome proliferator-activated receptor a: Biotic and xenobiotic sensing
-
Reddy JK. Peroxisome proliferators and peroxisome proliferator-activated receptor a: biotic and xenobiotic sensing. Am J Pathol 164: 2305-2321, 2004. doi:10.1016/ S0002-9440(10)63787-X.
-
(2004)
Am J Pathol
, vol.164
, pp. 2305-2321
-
-
Reddy, J.K.1
-
191
-
-
0021051308
-
Carcinogenesis by hepatic peroxisome proliferators: Evaluation of the risk of hypolipidemic drugs and industrial plasticizers to humans
-
Reddy JK, Lalwai ND, Farber E. Carcinogenesis by hepatic peroxisome proliferators: evaluation of the risk of hypolipidemic drugs and industrial plasticizers to humans. Crit Rev Toxicol 12: 1-58, 1983. doi:10.3109/10408448309029317.
-
(1983)
Crit Rev Toxicol
, vol.12
, pp. 1-58
-
-
Reddy, J.K.1
Lalwai, N.D.2
Farber, E.3
-
192
-
-
0028068292
-
Peroxisomal lipid metabolism
-
Reddy JK, Mannaerts GP. Peroxisomal lipid metabolism. Annu Rev Nutr 14: 343-370, 1994. doi:10.1146/annurev.nu.14.070194.002015.
-
(1994)
Annu Rev Nutr
, vol.14
, pp. 343-370
-
-
Reddy, J.K.1
Mannaerts, G.P.2
-
193
-
-
0017284938
-
Hepatocellular carcinomas in acatalasemic mice treated with nafenopin, a hypolipidemic peroxisome proliferator
-
Reddy JK, Rao S, Moody DE. Hepatocellular carcinomas in acatalasemic mice treated with nafenopin, a hypolipidemic peroxisome proliferator. Cancer Res 36: 1211-1217, 1976.
-
(1976)
Cancer Res
, vol.36
, pp. 1211-1217
-
-
Reddy, J.K.1
Rao, S.2
Moody, D.E.3
-
194
-
-
0030667274
-
Mutations in PEX1 are the most common cause of peroxisome biogenesis disorders
-
Reuber BE, Germain-Lee E, Collins CS, Morrell JC, Ameritunga R, Moser HW, Valle D, Gould SJ. Mutations in PEX1 are the most common cause of peroxisome biogenesis disorders. Nat Genet 17: 445-448, 1997. doi:10.1038/ng1297-445.
-
(1997)
Nat Genet
, vol.17
, pp. 445-448
-
-
Reuber, B.E.1
Germain-Lee, E.2
Collins, C.S.3
Morrell, J.C.4
Ameritunga, R.5
Moser, H.W.6
Valle, D.7
Gould, S.J.8
-
195
-
-
33745631769
-
Cell signaling. H2O2, a necessary evil for cell signaling
-
Rhee SG. Cell signaling. H2O2, a necessary evil for cell signaling. Science 312: 1882-1883, 2006. doi:10.1126/science.1130481.
-
(2006)
Science
, vol.312
, pp. 1882-1883
-
-
Rhee, S.G.1
-
197
-
-
64549157197
-
Pxmp2 is a channel-forming protein in mammalian peroxisomal membrane
-
Rokka A, Antonenkov VD, Soininen R, Immonen HL, Pirilä PL, Bergmann U, Sormunen RT, Weckström M, Benz R, Hiltunen JK. Pxmp2 is a channel-forming protein in mammalian peroxisomal membrane. PLoS One 4: e5090, 2009. doi:10.1371/journal. pone.0005090.
-
(2009)
PLoS One
, vol.4
, pp. e5090
-
-
Rokka, A.1
Antonenkov, V.D.2
Soininen, R.3
Immonen, H.L.4
Pirilä, P.L.5
Bergmann, U.6
Sormunen, R.T.7
Weckström, M.8
Benz, R.9
Hiltunen, J.K.10
-
198
-
-
84880331368
-
ULK1 induces autophagy by phosphorylating Beclin-1 and activating VPS34 lipid kinase
-
Russell RC, Tian Y, Yuan H, Park HW, Chang YY, Kim J, Kim H, Neufeld TP, Dillin A, Guan KL. ULK1 induces autophagy by phosphorylating Beclin-1 and activating VPS34 lipid kinase. Nat Cell Biol 15: 741-750, 2013. doi:10.1038/ncb2757.
-
(2013)
Nat Cell Biol
, vol.15
, pp. 741-750
-
-
Russell, R.C.1
Tian, Y.2
Yuan, H.3
Park, H.W.4
Chang, Y.Y.5
Kim, J.6
Kim, H.7
Neufeld, T.P.8
Dillin, A.9
Guan, K.L.10
-
199
-
-
42449096382
-
Genome-wide analysis of signaling networks regulating fatty acid-induced gene expression and organelle biogenesis
-
Saleem RA, Knoblach B, Mast FD, Smith JJ, Boyle J, Dobson CM, Long-O’Donnell R, Rachubinski RA, Aitchison JD. Genome-wide analysis of signaling networks regulating fatty acid-induced gene expression and organelle biogenesis. J Cell Biol 181: 281-292, 2008. doi:10.1083/jcb.200710009.
-
(2008)
J Cell Biol
, vol.181
, pp. 281-292
-
-
Saleem, R.A.1
Knoblach, B.2
Mast, F.D.3
Smith, J.J.4
Boyle, J.5
Dobson, C.M.6
Long-O’Donnell, R.7
Rachubinski, R.A.8
Aitchison, J.D.9
-
200
-
-
75149165994
-
Update on the oxidative stress theory of aging: Does oxidative stress play a role in aging or healthy aging?
-
Salmon AB, Richardson A, Pérez VI. Update on the oxidative stress theory of aging: does oxidative stress play a role in aging or healthy aging? Free Radic Biol Med 48: 642-655, 2010. doi:10.1016/j.freeradbiomed.2009.12.015.
-
(2010)
Free Radic Biol Med
, vol.48
, pp. 642-655
-
-
Salmon, A.B.1
Richardson, A.2
Pérez, V.I.3
-
201
-
-
84938913588
-
Peroxisomes sense and respond to environmental cues by regulating ROS and RNS signalling networks
-
Sandalio LM, Romero-Puertas MC. Peroxisomes sense and respond to environmental cues by regulating ROS and RNS signalling networks. Ann Bot (Lond) 116: 475-485, 2015. doi:10.1093/aob/mcv074.
-
(2015)
Ann Bot (Lond)
, vol.116
, pp. 475-485
-
-
Sandalio, L.M.1
Romero-Puertas, M.C.2
-
202
-
-
28844467909
-
Peroxisomal proliferation protects from beta-amyloid neurodegeneration
-
Santos MJ, Quintanilla RA, Toro A, Grandy R, Dinamarca MC, Godoy JA, Inestrosa NC. Peroxisomal proliferation protects from beta-amyloid neurodegeneration. J Biol Chem 280: 41057-41068, 2005. doi:10.1074/jbc.M505160200.
-
(2005)
J Biol Chem
, vol.280
, pp. 41057-41068
-
-
Santos, M.J.1
Quintanilla, R.A.2
Toro, A.3
Grandy, R.4
Dinamarca, M.C.5
Godoy, J.A.6
Inestrosa, N.C.7
-
203
-
-
78650890352
-
Regulation of autophagy by ROS: Physiology and pathology
-
Scherz-Shouval R, Elazar Z. Regulation of autophagy by ROS: physiology and pathology. Trends Biochem Sci 36: 30-38, 2011. doi:10.1016/j.tibs.2010.07.007.
-
(2011)
Trends Biochem Sci
, vol.36
, pp. 30-38
-
-
Scherz-Shouval, R.1
Elazar, Z.2
-
204
-
-
34247186472
-
Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4
-
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 26: 1749-1760, 2007. doi: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
-
205
-
-
75549083436
-
PeroxisomeDB 2.0: An integrative view of the global peroxisomal metabolome
-
Schlüter A, Real-Chicharro A, Gabaldón T, Sánchez-Jiménez F, Pujol A. PeroxisomeDB 2.0: an integrative view of the global peroxisomal metabolome. Nucleic Acids Res 38, Suppl 1: D800-D805, 2010. doi:10.1093/nar/gkp935.
-
(2010)
Nucleic Acids Res
, vol.38
, pp. D800-D805
-
-
Schlüter, A.1
Real-Chicharro, A.2
Gabaldón, T.3
Sánchez-Jiménez, F.4
Pujol, A.5
-
206
-
-
0029994543
-
Role of the peroxisome proliferator-activated receptor (PPAR) in mediating the effects of fibrates and fatty acids on gene expression
-
Schoonjans K, Staels B, Auwerx J. Role of the peroxisome proliferator-activated receptor (PPAR) in mediating the effects of fibrates and fatty acids on gene expression. J Lipid Res 37: 907-925, 1996.
-
(1996)
J Lipid Res
, vol.37
, pp. 907-925
-
-
Schoonjans, K.1
Staels, B.2
Auwerx, J.3
-
207
-
-
0027982467
-
Heterogeneity of peroxisomes in human hepatoblastoma cell line HepG2. Evidence of distinct subpopulations
-
Schrader M, Baumgart E, Völkl A, Fahimi HD. Heterogeneity of peroxisomes in human hepatoblastoma cell line HepG2. Evidence of distinct subpopulations. Eur J Cell Biol 64: 281-294, 1994.
-
(1994)
Eur J Cell Biol
, vol.64
, pp. 281-294
-
-
Schrader, M.1
Baumgart, E.2
Völkl, A.3
Fahimi, H.D.4
-
208
-
-
84864067919
-
Fission and proliferation of peroxisomes
-
Schrader M, Bonekamp NA, Islinger M. Fission and proliferation of peroxisomes. Biochim Biophys Acta 1822: 1343-1357, 2012. doi:10.1016/j.bbadis.2011.12.014.
-
(2012)
Biochim Biophys Acta
, vol.1822
, pp. 1343-1357
-
-
Schrader, M.1
Bonekamp, N.A.2
Islinger, M.3
-
209
-
-
85040786734
-
The different facets of organelle interplay-an overview of organelle interactions
-
Schrader M, Godinho LF, Costello JL, Islinger M. The different facets of organelle interplay-an overview of organelle interactions. Front Cell Dev Biol 3: 56, 2015. doi: 10.3389/fcell.2015.00056.
-
(2015)
Front Cell Dev Biol
, vol.3
, pp. 56
-
-
Schrader, M.1
Godinho, L.F.2
Costello, J.L.3
Islinger, M.4
-
210
-
-
84885336706
-
Peroxisome interactions and cross-talk with other subcellular compartments in animal cells
-
edited by del Río LA. Dordrecht: Springer Netherlands
-
Schrader M, Grille S, Fahimi HD, Islinger M. Peroxisome interactions and cross-talk with other subcellular compartments in animal cells. In: Peroxisomes and Their Key Role in Cellular Signaling and Metabolism, edited by del Río LA. Dordrecht: Springer Netherlands, 2013, p. 1-22. doi:10.1007/978-94-007-6889-5_1.
-
(2013)
Peroxisomes and Their Key Role in Cellular Signaling and Metabolism
, pp. 1-22
-
-
Schrader, M.1
Grille, S.2
Fahimi, H.D.3
Islinger, M.4
-
211
-
-
0033739889
-
Real time imaging reveals a peroxisomal reticulum in living cells
-
Schrader M, King SJ, Stroh TA, Schroer TA. Real time imaging reveals a peroxisomal reticulum in living cells. J Cell Sci 113: 3663-3671, 2000.
-
(2000)
J Cell Sci
, vol.113
, pp. 3663-3671
-
-
Schrader, M.1
King, S.J.2
Stroh, T.A.3
Schroer, T.A.4
-
212
-
-
35848932285
-
Mitochondria and peroxisomes: Are the ‘big brother’ and the ‘little sister’ closer than assumed?
-
Schrader M, Yoon Y. Mitochondria and peroxisomes: are the ‘big brother’ and the ‘little sister’ closer than assumed? BioEssays 29: 1105-1114, 2007. doi:10.1002/bies.20659.
-
(2007)
BioEssays
, vol.29
, pp. 1105-1114
-
-
Schrader, M.1
Yoon, Y.2
-
213
-
-
57749091634
-
The DEG15 serine protease cleaves peroxisomal targeting signal 2-containing proteins in Arabidopsis
-
Schuhmann H, Huesgen PF, Gietl C, Adamska I. The DEG15 serine protease cleaves peroxisomal targeting signal 2-containing proteins in Arabidopsis. Plant Physiol 148: 1847-1856, 2008. doi:10.1104/pp.108.125377.
-
(2008)
Plant Physiol
, vol.148
, pp. 1847-1856
-
-
Schuhmann, H.1
Huesgen, P.F.2
Gietl, C.3
Adamska, I.4
-
214
-
-
49549086224
-
The GET complex mediates insertion of tail-anchored proteins into the ER membrane
-
Schuldiner M, Metz J, Schmid V, Denic V, Rakwalska M, Schmitt HD, Schwappach B, Weissman JS. The GET complex mediates insertion of tail-anchored proteins into the ER membrane. Cell 134: 634-645, 2008. doi:10.1016/j.cell.2008.06.025.
-
(2008)
Cell
, vol.134
, pp. 634-645
-
-
Schuldiner, M.1
Metz, J.2
Schmid, V.3
Denic, V.4
Rakwalska, M.5
Schmitt, H.D.6
Schwappach, B.7
Weissman, J.S.8
-
215
-
-
0039369595
-
Membrane docosahexaenoate is supplied to the developing brain and retina by the liver
-
Scott BL, Bazan NG. Membrane docosahexaenoate is supplied to the developing brain and retina by the liver. Proc Natl Acad Sci USA 86: 2903-2907, 1989. doi:10.1073/pnas.86.8.2903.
-
(1989)
Proc Natl Acad Sci USA
, vol.86
, pp. 2903-2907
-
-
Scott, B.L.1
Bazan, N.G.2
-
216
-
-
0001015125
-
Identification of a new type of mammalian peroxiredoxin that forms an intramolecular disulfide as a reaction intermediate
-
Seo MS, Kang SW, Kim K, Baines IC, Lee TH, Rhee SG. Identification of a new type of mammalian peroxiredoxin that forms an intramolecular disulfide as a reaction intermediate. J Biol Chem 275: 20346-20354, 2000. doi:10.1074/jbc.M001943200.
-
(2000)
J Biol Chem
, vol.275
, pp. 20346-20354
-
-
Seo, M.S.1
Kang, S.W.2
Kim, K.3
Baines, I.C.4
Lee, T.H.5
Rhee, S.G.6
-
217
-
-
67749111502
-
The LKB1-AMPK pathway: Metabolism and growth control in tumour suppression
-
Shackelford DB, Shaw RJ. The LKB1-AMPK pathway: metabolism and growth control in tumour suppression. Nat Rev Cancer 9: 563-575, 2009. doi:10.1038/nrc2676.
-
(2009)
Nat Rev Cancer
, vol.9
, pp. 563-575
-
-
Shackelford, D.B.1
Shaw, R.J.2
-
218
-
-
84975797352
-
No peroxisome is an island-peroxisome contact sites
-
Shai N, Schuldiner M, Zalckvar E. No peroxisome is an island-peroxisome contact sites. Biochim Biophys Acta 1863: 1061-1069, 2016. doi:10.1016/j.bbamcr.2015.09.016.
-
(2016)
Biochim Biophys Acta
, vol.1863
, pp. 1061-1069
-
-
Shai, N.1
Schuldiner, M.2
Zalckvar, E.3
-
219
-
-
63849149937
-
LKB1 and AMP-activated protein kinase control of mTOR signalling and growth
-
Shaw RJ. LKB1 and AMP-activated protein kinase control of mTOR signalling and growth. Acta Physiol (Oxf) 196: 65-80, 2009. doi:10.1111/j.1748-1716.2009.01972.x.
-
(2009)
Acta Physiol (Oxf)
, vol.196
, pp. 65-80
-
-
Shaw, R.J.1
-
220
-
-
84875423827
-
The ATM protein kinase: Regulating the cellular response to genotoxic stress, and more
-
Shiloh Y, Ziv Y. The ATM protein kinase: regulating the cellular response to genotoxic stress, and more. Nat Rev Mol Cell Biol 14: 197-210, 2013. doi:10.1038/nrm3546.
-
(2013)
Nat Rev Mol Cell Biol
, vol.14
, pp. 197-210
-
-
Shiloh, Y.1
Ziv, Y.2
-
221
-
-
0037414834
-
Ubiquitin conjugation is not required for the degradation of oxidized proteins by proteasome
-
Shringarpure R, Grune T, Mehlhase J, Davies KJA. Ubiquitin conjugation is not required for the degradation of oxidized proteins by proteasome. J Biol Chem 278: 311-318, 2003. doi:10.1074/jbc.M206279200.
-
(2003)
J Biol Chem
, vol.278
, pp. 311-318
-
-
Shringarpure, R.1
Grune, T.2
Mehlhase, J.3
Davies, K.J.A.4
-
222
-
-
0028130643
-
Demonstration of glutathione peroxidase in rat liver peroxisomes and its intraorganellar distribution
-
Singh AK, Dhaunsi GS, Gupta MP, Orak JK, Asayama K, Singh I. Demonstration of glutathione peroxidase in rat liver peroxisomes and its intraorganellar distribution. Arch Biochem Biophys 315: 331-338, 1994. doi:10.1006/abbi.1994.1508.
-
(1994)
Arch Biochem Biophys
, vol.315
, pp. 331-338
-
-
Singh, A.K.1
Dhaunsi, G.S.2
Gupta, M.P.3
Orak, J.K.4
Asayama, K.5
Singh, I.6
-
223
-
-
0032873020
-
Manganese superoxide dismutase in rat liver peroxisomes: Biochemical and immunochemical evidence
-
Singh AK, Dobashi K, Gupta MP, Asayama K, Singh I, Orak JK. Manganese superoxide dismutase in rat liver peroxisomes: biochemical and immunochemical evidence. Mol Cell Biochem 197: 7-12, 1999. doi:10.1023/A:1006848113499.
-
(1999)
Mol Cell Biochem
, vol.197
, pp. 7-12
-
-
Singh, A.K.1
Dobashi, K.2
Gupta, M.P.3
Asayama, K.4
Singh, I.5
Orak, J.K.6
-
224
-
-
0030477745
-
Mammalian peroxisomes: Metabolism of oxygen and reactive oxygen species
-
Singh I. Mammalian peroxisomes: metabolism of oxygen and reactive oxygen species. Ann N Y Acad Sci 804: 612-627, 1996. doi:10.1111/j.1749-6632.1996.tb18648.x.
-
(1996)
Ann N Y Acad Sci
, vol.804
, pp. 612-627
-
-
Singh, I.1
-
225
-
-
63449100325
-
Silencing of Abcd1 and Abcd2 genes sensitizes astrocytes for inflammation: Implication for X-adrenoleukodystrophy
-
Singh J, Khan M, Singh I. Silencing of Abcd1 and Abcd2 genes sensitizes astrocytes for inflammation: implication for X-adrenoleukodystrophy. J Lipid Res 50: 135-147, 2009. doi:10.1194/jlr.M800321-JLR200.
-
(2009)
J Lipid Res
, vol.50
, pp. 135-147
-
-
Singh, J.1
Khan, M.2
Singh, I.3
-
226
-
-
0033870001
-
Proteasome inhibition by lipofuscin/ceroid during postmitotic aging of fibroblasts
-
Sitte N, Huber M, Grune T, Ladhoff A, Doecke W-D, Von Zglinicki T, Davies KJA. Proteasome inhibition by lipofuscin/ceroid during postmitotic aging of fibroblasts. FASEB J 14: 1490-1498, 2000. doi:10.1096/fj.14.11.1490.
-
(2000)
FASEB J
, vol.14
, pp. 1490-1498
-
-
Sitte, N.1
Huber, M.2
Grune, T.3
Ladhoff, A.4
Doecke, W.-D.5
Von Zglinicki, T.6
Davies, K.J.A.7
-
227
-
-
0025913434
-
Fatty acid composition of brain phospholipids in aging and in Alzheimer’s disease
-
Söderberg M, Edlund C, Kristensson K, Dallner G. Fatty acid composition of brain phospholipids in aging and in Alzheimer’s disease. Lipids 26: 421-425, 1991. doi:10. 1007/BF02536067.
-
(1991)
Lipids
, vol.26
, pp. 421-425
-
-
Söderberg, M.1
Edlund, C.2
Kristensson, K.3
Dallner, G.4
-
228
-
-
33845336846
-
Peroxisome biogenesis disorders
-
Steinberg SJ, Dodt G, Raymond GV, Braverman NE, Moser AB, Moser HW. Peroxisome biogenesis disorders. Biochim Biophys Acta 1763: 1733-1748, 2006. doi:10. 1016/j.bbamcr.2006.09.010.
-
(2006)
Biochim Biophys Acta
, vol.1763
, pp. 1733-1748
-
-
Steinberg, S.J.1
Dodt, G.2
Raymond, G.V.3
Braverman, N.E.4
Moser, A.B.5
Moser, H.W.6
-
229
-
-
0035805555
-
Oxygen reduction by nitric-oxide synthases
-
Stuehr D, Pou S, Rosen GM. Oxygen reduction by nitric-oxide synthases. J Biol Chem 276: 14533-14536, 2001. doi:10.1074/jbc.R100011200.
-
(2001)
J Biol Chem
, vol.276
, pp. 14533-14536
-
-
Stuehr, D.1
Pou, S.2
Rosen, G.M.3
-
230
-
-
84908085343
-
A new pathway for mitochondrial quality control: Mitochondrial-derived vesicles
-
Sugiura A, McLelland GL, Fon EA, McBride HM. A new pathway for mitochondrial quality control: mitochondrial-derived vesicles. EMBO J 33: 2142-2156, 2014. doi:10. 15252/embj.201488104.
-
(2014)
EMBO J
, vol.33
, pp. 2142-2156
-
-
Sugiura, A.1
McLelland, G.L.2
Fon, E.A.3
McBride, H.M.4
-
231
-
-
0025941962
-
A novel, cleavable peroxisomal targeting signal at the amino-terminus of the rat 3-ketoacyl-CoA thiolase
-
Swinkels BW, Gould SJ, Bodnar AG, Rachubinski RA, Subramani S. A novel, cleavable peroxisomal targeting signal at the amino-terminus of the rat 3-ketoacyl-CoA thiolase. EMBO J 10: 3255-3262, 1991.
-
(1991)
EMBO J
, vol.10
, pp. 3255-3262
-
-
Swinkels, B.W.1
Gould, S.J.2
Bodnar, A.G.3
Rachubinski, R.A.4
Subramani, S.5
-
232
-
-
0041810193
-
Peroxisomes start their life in the endoplasmic reticulum
-
Tabak HF, Murk JL, Braakman I, Geuze HJ. Peroxisomes start their life in the endoplasmic reticulum. Traffic 4: 512-518, 2003. doi:10.1034/j.1600-0854.2003.00110.x.
-
(2003)
Traffic
, vol.4
, pp. 512-518
-
-
Tabak, H.F.1
Murk, J.L.2
Braakman, I.3
Geuze, H.J.4
-
233
-
-
27144457472
-
Pex3p initiates the formation of a preperoxisomal compartment from a subdomain of the endoplasmic reticulum in Saccharomyces cerevisiae
-
Tam YY, Fagarasanu A, Fagarasanu M, Rachubinski RA. Pex3p initiates the formation of a preperoxisomal compartment from a subdomain of the endoplasmic reticulum in Saccharomyces cerevisiae. J Biol Chem 280: 34933-34939, 2005. doi:10.1074/jbc. M506208200.
-
(2005)
J Biol Chem
, vol.280
, pp. 34933-34939
-
-
Tam, Y.Y.1
Fagarasanu, A.2
Fagarasanu, M.3
Rachubinski, R.A.4
-
234
-
-
84908361088
-
Hrr25 triggers selective autophagy-related pathways by phosphorylating receptor proteins
-
Tanaka C, Tan LJ, Mochida K, Kirisako H, Koizumi M, Asai E, Sakoh-Nakatogawa M, Ohsumi Y, Nakatogawa H. Hrr25 triggers selective autophagy-related pathways by phosphorylating receptor proteins. J Cell Biol 207: 91-105, 2014. doi:10.1083/jcb. 201402128.
-
(2014)
J Cell Biol
, vol.207
, pp. 91-105
-
-
Tanaka, C.1
Tan, L.J.2
Mochida, K.3
Kirisako, H.4
Koizumi, M.5
Asai, E.6
Sakoh-Nakatogawa, M.7
Ohsumi, Y.8
Nakatogawa, H.9
-
236
-
-
84873730644
-
Peroxisomes, oxidative stress, and inflammation
-
Terlecky SR, Terlecky LJ, Giordano CR. Peroxisomes, oxidative stress, and inflammation. World J Biol Chem 3: 93-97, 2012. doi:10.4331/wjbc.v3.i5.93.
-
(2012)
World J Biol Chem
, vol.3
, pp. 93-97
-
-
Terlecky, S.R.1
Terlecky, L.J.2
Giordano, C.R.3
-
237
-
-
0034627808
-
Fusion of small peroxisomal vesicles in vitro reconstructs an early step in the in vivo multistep peroxisome assembly pathway of Yarrowia lipolytica
-
Titorenko VI, Chan H, Rachubinski RA. Fusion of small peroxisomal vesicles in vitro reconstructs an early step in the in vivo multistep peroxisome assembly pathway of Yarrowia lipolytica. J Cell Biol 148: 29-44, 2000. doi:10.1083/jcb.148.1.29.
-
(2000)
J Cell Biol
, vol.148
, pp. 29-44
-
-
Titorenko, V.I.1
Chan, H.2
Rachubinski, R.A.3
-
238
-
-
0034698778
-
Peroxisomal membrane fusion requires two AAA family ATPases, Pex1p and Pex6p
-
Titorenko VI, Rachubinski RA. Peroxisomal membrane fusion requires two AAA family ATPases, Pex1p and Pex6p. J Cell Biol 150: 881-886, 2000. doi:10.1083/jcb.150.4.881.
-
(2000)
J Cell Biol
, vol.150
, pp. 881-886
-
-
Titorenko, V.I.1
Rachubinski, R.A.2
-
239
-
-
79751472085
-
Peroxisome metabolism and cellular aging
-
Titorenko VI, Terlecky SR. Peroxisome metabolism and cellular aging. Traffic 12: 252-259, 2011. doi:10.1111/j.1600-0854.2010.01144.x.
-
(2011)
Traffic
, vol.12
, pp. 252-259
-
-
Titorenko, V.I.1
Terlecky, S.R.2
-
240
-
-
84881413580
-
Reactive nitrogen species regulate autophagy through ATM-AMPK-TSC2-mediated suppression of mTORC1
-
Tripathi DN, Chowdhury R, Trudel LJ, Tee AR, Slack RS, Walker CL, Wogan GN. Reactive nitrogen species regulate autophagy through ATM-AMPK-TSC2-mediated suppression of mTORC1. Proc Natl Acad Sci USA 110: E2950-E2957, 2013. doi:10. 1073/pnas.1307736110.
-
(2013)
Proc Natl Acad Sci USA
, vol.110
, pp. E2950-E2957
-
-
Tripathi, D.N.1
Chowdhury, R.2
Trudel, L.J.3
Tee, A.R.4
Slack, R.S.5
Walker, C.L.6
Wogan, G.N.7
-
241
-
-
84960082750
-
The peroxisome as a cell signaling organelle
-
Tripathi DN, Walker CL. The peroxisome as a cell signaling organelle. Curr Opin Cell Biol 39: 109-112, 2016. doi:10.1016/j.ceb.2016.02.017.
-
(2016)
Curr Opin Cell Biol
, vol.39
, pp. 109-112
-
-
Tripathi, D.N.1
Walker, C.L.2
-
242
-
-
84964454410
-
A new role for ATM in selective autophagy of peroxisomes (pexophagy)
-
Tripathi DN, Zhang J, Jing J, Dere R, Walker CL. A new role for ATM in selective autophagy of peroxisomes (pexophagy). Autophagy 12: 711-712, 2016. doi:10.1080/15548627.2015.1123375.
-
(2016)
Autophagy
, vol.12
, pp. 711-712
-
-
Tripathi, D.N.1
Zhang, J.2
Jing, J.3
Dere, R.4
Walker, C.L.5
-
243
-
-
35448954324
-
Pre-steady state kinetic characterization of human peroxiredoxin 5: Taking advantage of Trp84 fluorescence increase upon oxidation
-
Trujillo M, Clippe A, Manta B, Ferrer-Sueta G, Smeets A, Declercq J-P, Knoops B, Radi R. Pre-steady state kinetic characterization of human peroxiredoxin 5: taking advantage of Trp84 fluorescence increase upon oxidation. Arch Biochem Biophys 467: 95-106, 2007. doi:10.1016/j.abb.2007.08.008.
-
(2007)
Arch Biochem Biophys
, vol.467
, pp. 95-106
-
-
Trujillo, M.1
Clippe, A.2
Manta, B.3
Ferrer-Sueta, G.4
Smeets, A.5
Declercq, J.-P.6
Knoops, B.7
Radi, R.8
-
244
-
-
0033033698
-
Poly-ADP ribose polymerase activates nuclear proteasome to degrade oxidatively damaged histones
-
Ullrich O, Reinheckel T, Sitte N, Hass R, Grune T, Davies KJ. Poly-ADP ribose polymerase activates nuclear proteasome to degrade oxidatively damaged histones. Proc Natl Acad Sci USA 96: 6223-6228, 1999. doi:10.1073/pnas.96.11.6223.
-
(1999)
Proc Natl Acad Sci USA
, vol.96
, pp. 6223-6228
-
-
Ullrich, O.1
Reinheckel, T.2
Sitte, N.3
Hass, R.4
Grune, T.5
Davies, K.J.6
-
245
-
-
84859745968
-
Biochemically distinct vesicles from the endoplasmic reticulum fuse to form peroxisomes
-
Van der Zand A, Gent J, Braakman I, Tabak HF. Biochemically distinct vesicles from the endoplasmic reticulum fuse to form peroxisomes. Cell 149: 397-409, 2012. doi: 10.1016/j.cell.2012.01.054.
-
(2012)
Cell
, vol.149
, pp. 397-409
-
-
Van der Zand, A.1
Gent, J.2
Braakman, I.3
Tabak, H.F.4
-
246
-
-
77956867734
-
Biochemistry and genetics of inherited disorders of peroxisomal fatty acid metabolism
-
Van Veldhoven PP. Biochemistry and genetics of inherited disorders of peroxisomal fatty acid metabolism. J Lipid Res 51: 2863-2895, 2010. doi:10.1194/jlr.R005959.
-
(2010)
J Lipid Res
, vol.51
, pp. 2863-2895
-
-
Van Veldhoven, P.P.1
-
247
-
-
0026329270
-
Identification and purification of a peroxisomal branched chain fatty acyl-CoA oxidase
-
Van Veldhoven PP, Vanhove G, Vanhoutte F, Dacremont G, Parmentier G, Eyssen HJ, Mannaerts GP. Identification and purification of a peroxisomal branched chain fatty acyl-CoA oxidase. J Biol Chem 266: 24676-24683, 1991.
-
(1991)
J Biol Chem
, vol.266
, pp. 24676-24683
-
-
Van Veldhoven, P.P.1
Vanhove, G.2
Vanhoutte, F.3
Dacremont, G.4
Parmentier, G.5
Eyssen, H.J.6
Mannaerts, G.P.7
-
248
-
-
84877324044
-
Dysfunctional lysosomal autophagy leads to peroxisomal oxidative burnout and damage during endotoxin-induced stress
-
Vasko R, Goligorsky MS. Dysfunctional lysosomal autophagy leads to peroxisomal oxidative burnout and damage during endotoxin-induced stress. Autophagy 9: 442-444, 2013. doi:10.4161/auto.23344.
-
(2013)
Autophagy
, vol.9
, pp. 442-444
-
-
Vasko, R.1
Goligorsky, M.S.2
-
249
-
-
84879537948
-
Endothelial peroxisomal dysfunction and impaired pexophagy promotes oxidative damage in lipopolysaccharide-induced acute kidney injury
-
Vasko R, Ratliff BB, Bohr S, Nadel E, Chen J, Xavier S, Chander P, Goligorsky MS. Endothelial peroxisomal dysfunction and impaired pexophagy promotes oxidative damage in lipopolysaccharide-induced acute kidney injury. Antioxid Redox Signal 19: 211-230, 2013. doi:10.1089/ars.2012.4768.
-
(2013)
Antioxid Redox Signal
, vol.19
, pp. 211-230
-
-
Vasko, R.1
Ratliff, B.B.2
Bohr, S.3
Nadel, E.4
Chen, J.5
Xavier, S.6
Chander, P.7
Goligorsky, M.S.8
-
250
-
-
34147210988
-
Hydrogen peroxide sensing and signaling
-
Veal EA, Day AM, Morgan BA. Hydrogen peroxide sensing and signaling. Mol Cell 26: 1-14, 2007. doi:10.1016/j.molcel.2007.03.016.
-
(2007)
Mol Cell
, vol.26
, pp. 1-14
-
-
Veal, E.A.1
Day, A.M.2
Morgan, B.A.3
-
251
-
-
84928951742
-
Antioxidant cytoprotection by peroxisomal peroxiredoxin-5
-
Walbrecq G, Wang B, Becker S, Hannotiau A, Fransen M, Knoops B. Antioxidant cytoprotection by peroxisomal peroxiredoxin-5. Free Radic Biol Med 84: 215-226, 2015. doi:10.1016/j.freeradbiomed.2015.02.032.
-
(2015)
Free Radic Biol Med
, vol.84
, pp. 215-226
-
-
Walbrecq, G.1
Wang, B.2
Becker, S.3
Hannotiau, A.4
Fransen, M.5
Knoops, B.6
-
252
-
-
0030469491
-
Import of stably-folded proteins into peroxisomes
-
Walton PA. Import of stably-folded proteins into peroxisomes. Ann N Y Acad Sci 804: 76-85, 1996. doi:10.1111/j.1749-6632.1996.tb18609.x.
-
(1996)
Ann N Y Acad Sci
, vol.804
, pp. 76-85
-
-
Walton, P.A.1
-
253
-
-
84866320015
-
Effects of peroxisomal catalase inhibition on mitochondrial function
-
Walton PA, Pizzitelli M. Effects of peroxisomal catalase inhibition on mitochondrial function. Front Physiol 3: 108, 2012. doi:10.3389/fphys.2012.00108.
-
(2012)
Front Physiol
, vol.3
, pp. 108
-
-
Walton, P.A.1
Pizzitelli, M.2
-
254
-
-
0028242601
-
Involvement of 70-kD heat-shock proteins in peroxisomal import
-
Walton PA, Wendland M, Subramani S, Rachubinski RA, Welch WJ. Involvement of 70-kD heat-shock proteins in peroxisomal import. J Cell Biol 125: 1037-1046, 1994. doi:10.1083/jcb.125.5.1037.
-
(1994)
J Cell Biol
, vol.125
, pp. 1037-1046
-
-
Walton, P.A.1
Wendland, M.2
Subramani, S.3
Rachubinski, R.A.4
Welch, W.J.5
-
255
-
-
4744371532
-
Peroxisomes, lipid metabolism, and peroxisomal disorders
-
Wanders RJ. Peroxisomes, lipid metabolism, and peroxisomal disorders. Mol Genet Metab 83: 16-27, 2004. doi:10.1016/j.ymgme.2004.08.016.
-
(2004)
Mol Genet Metab
, vol.83
, pp. 16-27
-
-
Wanders, R.J.1
-
257
-
-
33746366462
-
Biochemistry of mammalian peroxisomes revisited
-
Wanders RJ, Waterham HR. Biochemistry of mammalian peroxisomes revisited. Annu Rev Biochem 75: 295-332, 2006. doi:10.1146/annurev.biochem.74.082803.133329.
-
(2006)
Annu Rev Biochem
, vol.75
, pp. 295-332
-
-
Wanders, R.J.1
Waterham, H.R.2
-
258
-
-
0018908335
-
Properties of hypolipidemic peroxisome proliferators in the lymphocyte [3H]thymidine and Salmonella mutagenesis assays
-
Warren JR, Simmon VF, Reddy JK. Properties of hypolipidemic peroxisome proliferators in the lymphocyte [3H]thymidine and Salmonella mutagenesis assays. Cancer Res 40: 36-41, 1980.
-
(1980)
Cancer Res
, vol.40
, pp. 36-41
-
-
Warren, J.R.1
Simmon, V.F.2
Reddy, J.K.3
-
259
-
-
84864029381
-
Genetics and molecular basis of human peroxisome biogenesis disorders
-
Waterham HR, Ebberink MS. Genetics and molecular basis of human peroxisome biogenesis disorders. Biochim Biophys Acta 1822: 1430-1441, 2012. doi:10.1016/j. bbadis.2012.04.006.
-
(2012)
Biochim Biophys Acta
, vol.1822
, pp. 1430-1441
-
-
Waterham, H.R.1
Ebberink, M.S.2
-
260
-
-
34247525092
-
A lethal defect of mitochondrial and peroxisomal fission
-
Waterham HR, Koster J, van Roermund CW, Mooyer PA, Wanders RJ, Leonard JV. A lethal defect of mitochondrial and peroxisomal fission. N Engl J Med 356: 1736-1741, 2007. doi:10.1056/NEJMoa064436.
-
(2007)
N Engl J Med
, vol.356
, pp. 1736-1741
-
-
Waterham, H.R.1
Koster, J.2
van Roermund, C.W.3
Mooyer, P.A.4
Wanders, R.J.5
Leonard, J.V.6
-
261
-
-
0033607810
-
Localization of a portion of extranuclear ATM to peroxisomes
-
Watters D, Kedar P, Spring K, Bjorkman J, Chen P, Gatei M, Birrell G, Garrone B, Srinivasa P, Crane DI, Lavin MF. Localization of a portion of extranuclear ATM to peroxisomes. J Biol Chem 274: 34277-34282, 1999. doi:10.1074/jbc.274.48.34277.
-
(1999)
J Biol Chem
, vol.274
, pp. 34277-34282
-
-
Watters, D.1
Kedar, P.2
Spring, K.3
Bjorkman, J.4
Chen, P.5
Gatei, M.6
Birrell, G.7
Garrone, B.8
Srinivasa, P.9
Crane, D.I.10
Lavin, M.F.11
-
262
-
-
33645526302
-
Hypocatalasemic fibroblasts accumulate hydrogen peroxide and display age-associated pathologies
-
Wood CS, Koepke JI, Teng H, Boucher KK, Katz S, Chang P, Terlecky LJ, Papanayotou I, Walton PA, Terlecky SR. Hypocatalasemic fibroblasts accumulate hydrogen peroxide and display age-associated pathologies. Traffic 7: 97-107, 2006. doi:10.1111/j. 1600-0854.2005.00358.x.
-
(2006)
Traffic
, vol.7
, pp. 97-107
-
-
Wood, C.S.1
Koepke, J.I.2
Teng, H.3
Boucher, K.K.4
Katz, S.5
Chang, P.6
Terlecky, L.J.7
Papanayotou, I.8
Walton, P.A.9
Terlecky, S.R.10
-
263
-
-
0242668686
-
Peroxiredoxin evolution and the regulation of hydrogen peroxide signaling
-
Wood ZA, Poole LB, Karplus PA. Peroxiredoxin evolution and the regulation of hydrogen peroxide signaling. Science 300: 650-653, 2003. doi:10.1126/science. 1080405.
-
(2003)
Science
, vol.300
, pp. 650-653
-
-
Wood, Z.A.1
Poole, L.B.2
Karplus, P.A.3
-
264
-
-
0033538473
-
Mechanisms controlling mitochondrial biogenesis and respiration through the thermogenic coactivator PGC-1
-
Wu Z, Puigserver P, Andersson U, Zhang C, Adelmant G, Mootha V, Troy A, Cinti S, Lowell B, Scarpulla RC, Spiegelman BM. Mechanisms controlling mitochondrial biogenesis and respiration through the thermogenic coactivator PGC-1. Cell 98: 115-124, 1999. doi:10.1016/S0092-8674(00)80611-X.
-
(1999)
Cell
, vol.98
, pp. 115-124
-
-
Wu, Z.1
Puigserver, P.2
Andersson, U.3
Zhang, C.4
Adelmant, G.5
Mootha, V.6
Troy, A.7
Cinti, S.8
Lowell, B.9
Scarpulla, R.C.10
Spiegelman, B.M.11
-
265
-
-
77349112635
-
The Woronin body as a peroxisome with a function in the maintenance of cellular integrity
-
Canada: Research SignPost
-
Würtz C, Schliebs W, Erdmann R, Rottensteiner H. The Woronin body as a peroxisome with a function in the maintenance of cellular integrity. In: Emergent Functions of the Peroxisome. Canada: Research SignPost, 2009, p. 43-60.
-
(2009)
Emergent Functions of the Peroxisome
, pp. 43-60
-
-
Würtz, C.1
Schliebs, W.2
Erdmann, R.3
Rottensteiner, H.4
-
266
-
-
76549112206
-
Alpha-Synuclein abnormalities in mouse models of peroxisome biogenesis disorders
-
Yakunin E, Moser A, Loeb V, Saada A, Faust P, Crane DI, Baes M, Sharon R. alpha-Synuclein abnormalities in mouse models of peroxisome biogenesis disorders. J Neurosci Res 88: 866-876, 2010.
-
(2010)
J Neurosci Res
, vol.88
, pp. 866-876
-
-
Yakunin, E.1
Moser, A.2
Loeb, V.3
Saada, A.4
Faust, P.5
Crane, D.I.6
Baes, M.7
Sharon, R.8
-
267
-
-
0023571885
-
Three-dimensional reconstruction of a peroxisomal reticulum in regenerating rat liver: Evidence of interconnections between heterogeneous segments
-
Yamamoto K, Fahimi HD. Three-dimensional reconstruction of a peroxisomal reticulum in regenerating rat liver: evidence of interconnections between heterogeneous segments. J Cell Biol 105: 713-722, 1987. doi:10.1083/jcb.105.2.713.
-
(1987)
J Cell Biol
, vol.105
, pp. 713-722
-
-
Yamamoto, K.1
Fahimi, H.D.2
-
268
-
-
84925775785
-
The membrane peroxin PEX3 induces peroxisome-ubiquitination-linked pexophagy
-
Yamashita S, Abe K, Tatemichi Y, Fujiki Y. The membrane peroxin PEX3 induces peroxisome-ubiquitination-linked pexophagy. Autophagy 10: 1549-1564, 2014. doi: 10.4161/auto.29329.
-
(2014)
Autophagy
, vol.10
, pp. 1549-1564
-
-
Yamashita, S.1
Abe, K.2
Tatemichi, Y.3
Fujiki, Y.4
-
269
-
-
34547464082
-
Regulation of the protein disulfide proteome by mitochondria in mammalian cells
-
Yang Y, Song Y, Loscalzo J. Regulation of the protein disulfide proteome by mitochondria in mammalian cells. Proc Natl Acad Sci USA 104: 10813-10817, 2007. doi:10.1073/pnas.0702027104.
-
(2007)
Proc Natl Acad Sci USA
, vol.104
, pp. 10813-10817
-
-
Yang, Y.1
Song, Y.2
Loscalzo, J.3
-
270
-
-
0036752552
-
The role of polyunsaturated fatty acids in restoring the aging neuronal membrane
-
Yehuda S, Rabinovitz S, Carasso RL, Mostofsky DI. The role of polyunsaturated fatty acids in restoring the aging neuronal membrane. Neurobiol Aging 23: 843-853, 2002. doi:10.1016/S0197-4580(02)00074-X.
-
(2002)
Neurobiol Aging
, vol.23
, pp. 843-853
-
-
Yehuda, S.1
Rabinovitz, S.2
Carasso, R.L.3
Mostofsky, D.I.4
-
271
-
-
80054089650
-
Free radical lipid peroxidation: Mechanisms and analysis
-
Yin H, Xu L, Porter NA. Free radical lipid peroxidation: mechanisms and analysis. Chem Rev 111: 5944-5972, 2011. doi:10.1021/cr200084z.
-
(2011)
Chem Rev
, vol.111
, pp. 5944-5972
-
-
Yin, H.1
Xu, L.2
Porter, N.A.3
-
272
-
-
64649087881
-
Degradation of excess peroxisomes in mammalian liver cells by autophagy and other mechanisms
-
Yokota S, Dariush Fahimi H. Degradation of excess peroxisomes in mammalian liver cells by autophagy and other mechanisms. Histochem Cell Biol 131: 455-458, 2009. doi:10.1007/s00418-009-0564-6.
-
(2009)
Histochem Cell Biol
, vol.131
, pp. 455-458
-
-
Yokota, S.1
Dariush Fahimi, H.2
-
273
-
-
37249060384
-
Induction of peroxisomal Lon protease in rat liver after di-(2-ethylhexyl)phthalate treatment
-
Yokota S, Haraguchi CM, Oda T. Induction of peroxisomal Lon protease in rat liver after di-(2-ethylhexyl)phthalate treatment. Histochem Cell Biol 129: 73-83, 2008. doi:10.1007/s00418-007-0328-0.
-
(2008)
Histochem Cell Biol
, vol.129
, pp. 73-83
-
-
Yokota, S.1
Haraguchi, C.M.2
Oda, T.3
-
274
-
-
70349652310
-
Listeria monocytogenes ActA-mediated escape from autophagic recognition
-
Yoshikawa Y, Ogawa M, Hain T, Yoshida M, Fukumatsu M, Kim M, Mimuro H, Nakagawa I, Yanagawa T, Ishii T, Kakizuka A, Sztul E, Chakraborty T, Sasakawa C. Listeria monocytogenes ActA-mediated escape from autophagic recognition. Nat Cell Biol 11: 1233-1240, 2009. doi:10.1038/ncb1967.
-
(2009)
Nat Cell Biol
, vol.11
, pp. 1233-1240
-
-
Yoshikawa, Y.1
Ogawa, M.2
Hain, T.3
Yoshida, M.4
Fukumatsu, M.5
Kim, M.6
Mimuro, H.7
Nakagawa, I.8
Yanagawa, T.9
Ishii, T.10
Kakizuka, A.11
Sztul, E.12
Chakraborty, T.13
Sasakawa, C.14
-
275
-
-
84969760294
-
Oxidative stress response and Nrf2 signaling in aging
-
Zhang H, Davies KJA, Forman HJ. Oxidative stress response and Nrf2 signaling in aging. Free Radic Biol Med 88, Pt B: 314-336, 2015. doi:10.1016/j.freeradbiomed. 2015.05.036.
-
(2015)
Free Radic Biol Med
, vol.88
, pp. 314-336
-
-
Zhang, H.1
Davies, K.J.A.2
Forman, H.J.3
-
276
-
-
84860471609
-
Nrf2- regulated phase II enzymes are induced by chronic ambient nanoparticle exposure in young mice with age-related impairments
-
Zhang H, Liu H, Davies KJA, Sioutas C, Finch CE, Morgan TE, Forman HJ. Nrf2- regulated phase II enzymes are induced by chronic ambient nanoparticle exposure in young mice with age-related impairments. Free Radic Biol Med 52: 2038-2046, 2012. doi:10.1016/j.freeradbiomed.2012.02.042.
-
(2012)
Free Radic Biol Med
, vol.52
, pp. 2038-2046
-
-
Zhang, H.1
Liu, H.2
Davies, K.J.A.3
Sioutas, C.4
Finch, C.E.5
Morgan, T.E.6
Forman, H.J.7
-
277
-
-
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, Kwiatkowski E, Dunlop EA, Dodd KM, Folkerth RD, Faust PL, Kastan MB, Sahin M, Walker CL. A tuberous sclerosis complex signalling node at the peroxisome regulates mTORC1 and autophagy in response to ROS. Nat Cell Biol 15: 1186-1196, 2013. doi:10.1038/ncb2822.
-
(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
Kwiatkowski, E.11
Dunlop, E.A.12
Dodd, K.M.13
Folkerth, R.D.14
Faust, P.L.15
Kastan, M.B.16
Sahin, M.17
Walker, C.L.18
-
278
-
-
84942982653
-
ATM functions at the peroxisome to induce pexophagy in response to ROS
-
Zhang J, Tripathi DN, Jing J, Alexander A, Kim J, Powell RT, Dere R, Tait-Mulder J, Lee JH, Paull TT, Pandita RK, Charaka VK, Pandita TK, Kastan MB, Walker CL. ATM functions at the peroxisome to induce pexophagy in response to ROS. Nat Cell Biol 17: 1259-1269, 2015. doi:10.1038/ncb3230.
-
(2015)
Nat Cell Biol
, vol.17
, pp. 1259-1269
-
-
Zhang, J.1
Tripathi, D.N.2
Jing, J.3
Alexander, A.4
Kim, J.5
Powell, R.T.6
Dere, R.7
Tait-Mulder, J.8
Lee, J.H.9
Paull, T.T.10
Pandita, R.K.11
Charaka, V.K.12
Pandita, T.K.13
Kastan, M.B.14
Walker, C.L.15
-
279
-
-
0032170702
-
Mechanisms of hyperoxia-induced reductions in retinal blood flow in newborn pig
-
Zhu Y, Park TS, Gidday JM. Mechanisms of hyperoxia-induced reductions in retinal blood flow in newborn pig. Exp Eye Res 67: 357-369, 1998. doi:10.1006/exer.1998.0535.
-
(1998)
Exp Eye Res
, vol.67
, pp. 357-369
-
-
Zhu, Y.1
Park, T.S.2
Gidday, J.M.3
-
280
-
-
85009876211
-
Autophagic degradation of peroxisomes in mammals
-
Zientara-Rytter K, Subramani S. Autophagic degradation of peroxisomes in mammals. Biochem Soc Trans 44: 431-440, 2016. doi:10.1042/BST20150268.
-
(2016)
Biochem Soc Trans
, vol.44
, pp. 431-440
-
-
Zientara-Rytter, K.1
Subramani, S.2
-
281
-
-
0036196884
-
The dopamine mesocorticolimbic pathway is affected by deficiency in n-3 polyunsaturated fatty acids
-
Zimmer L, Vancassel S, Cantagrel S, Breton P, Delamanche S, Guilloteau D, Durand G, Chalon S. The dopamine mesocorticolimbic pathway is affected by deficiency in n-3 polyunsaturated fatty acids. Am J Clin Nutr 75: 662-667, 2002.
-
(2002)
Am J Clin Nutr
, vol.75
, pp. 662-667
-
-
Zimmer, L.1
Vancassel, S.2
Cantagrel, S.3
Breton, P.4
Delamanche, S.5
Guilloteau, D.6
Durand, G.7
Chalon, S.8
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