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Volumn , Issue , 2012, Pages

Pexophagy: The selective degradation of peroxisomes

Author keywords

[No Author keywords available]

Indexed keywords

HYDROGEN PEROXIDE;

EID: 84859741506     PISSN: 16878876     EISSN: 16878884     Source Type: Journal    
DOI: 10.1155/2012/512721     Document Type: Review
Times cited : (126)

References (138)
  • 2
    • 0013897667 scopus 로고
    • Peroxisomes (microbodies and related particles)
    • De Duve C., Baudhuin P., Peroxisomes (microbodies and related particles) Physiological Reviews 1966 46 2 323 357
    • (1966) Physiological Reviews , vol.46 , Issue.2 , pp. 323-357
    • De Duve, C.1    Baudhuin, P.2
  • 5
    • 7944224890 scopus 로고    scopus 로고
    • Biogenesis of peroxisomes and glycosomes: Trypanosomatid glycosome assembly is a promising new drug target
    • DOI 10.1016/j.femsre.2004.06.004, PII S016864450400049X
    • Moyersoen J., Choe J., Fan E., Hol W. G. J., Michels P. A. M., Biogenesis of peroxisomes and glycosomes: trypanosomatid glycosome assembly is a promising new drug target FEMS Microbiology Reviews 2004 28 5 603 643 (Pubitemid 39469922)
    • (2004) FEMS Microbiology Reviews , vol.28 , Issue.5 , pp. 603-643
    • Moyersoen, J.1    Choe, J.2    Fan, E.3    Hol, W.G.J.4    Michels, P.A.M.5
  • 6
    • 0023548002 scopus 로고
    • Identification of a peroxisomal targeting signal at the carboxy terminus of firefly luciferase
    • Gould S. J., Keller G. A., Subramani S., Identification of a peroxisomal targeting signal at the carboxy terminus of firefly luciferase Journal of Cell Biology 1987 105 6, part 2 2923 2931 (Pubitemid 18043870)
    • (1987) Journal of Cell Biology , vol.105 , Issue.6 , pp. 2923-2931
    • Gould, S.J.1    Keller, G.-A.2    Subramani, S.3
  • 8
    • 0033848389 scopus 로고    scopus 로고
    • Isolation of penicillium chrysogenum PEX1 and PEX6 encoding AAA proteins involved in peroxisome biogenesis
    • DOI 10.1007/s002530000378
    • Kiel J. A. K. W., Hilbrands R. E., Bovenberg R. A. L., Veenhuis M., Isolation of penicillium chrysogenum PEX1 and PEX6 encoding AAA proteins involved in peroxisome biogenesis Applied Microbiology and Biotechnology 2000 54 2 238 242 (Pubitemid 30662735)
    • (2000) Applied Microbiology and Biotechnology , vol.54 , Issue.2 , pp. 238-242
    • Kiel, J.A.K.W.1    Hilbrands, R.E.2    Bovenberg, R.A.L.3    Veenhuis, M.4
  • 9
    • 33845321048 scopus 로고    scopus 로고
    • Yeast and filamentous fungi as model organisms in microbody research
    • DOI 10.1016/j.bbamcr.2006.09.014, PII S0167488906002862, Peroxisomes: Morphology, Function, Biogenesis and Disorders
    • van der Klei I. J., Veenhuis M., Yeast and filamentous fungi as model organisms in microbody research Biochimica et Biophysica Acta 2006 1763 12 1364 1373 (Pubitemid 44880483)
    • (2006) Biochimica et Biophysica Acta - Molecular Cell Research , vol.1763 , Issue.12 , pp. 1364-1373
    • Van Der Klei, I.J.1    Veenhuis, M.2
  • 10
    • 68949151976 scopus 로고    scopus 로고
    • Peroxisomes, myelination, and axonal integrity in the CNS
    • Baes M., Aubourg P., Peroxisomes, myelination, and axonal integrity in the CNS Neuroscientist 2009 15 4 367 379
    • (2009) Neuroscientist , vol.15 , Issue.4 , pp. 367-379
    • Baes, M.1    Aubourg, P.2
  • 11
    • 79955505833 scopus 로고    scopus 로고
    • Peroxisome assembly: Matrix and membrane protein biogenesis
    • Ma C., Agrawal G., Subramani S., Peroxisome assembly: matrix and membrane protein biogenesis Journal of Cell Biology 2011 193 1 7 16
    • (2011) Journal of Cell Biology , vol.193 , Issue.1 , pp. 7-16
    • Ma, C.1    Agrawal, G.2    Subramani, S.3
  • 12
    • 0031941276 scopus 로고    scopus 로고
    • Components involved in peroxisome import, biogenesis, proliferation, turnover, and movement
    • Subramani S., Components involved in peroxisome import, biogenesis, proliferation, turnover, and movement Physiological Reviews 1998 78 1 171 188 (Pubitemid 28070978)
    • (1998) Physiological Reviews , vol.78 , Issue.1 , pp. 171-188
    • Subramani, S.1
  • 14
    • 0030462769 scopus 로고    scopus 로고
    • The peroxisome in retrospect
    • DOI 10.1111/j.1749-6632.1996.tb18603.x
    • de Duve C., The peroxisome in retrospect Annals of the New York Academy of Sciences 1996 804 1 10 (Pubitemid 27056597)
    • (1996) Annals of the New York Academy of Sciences , vol.804 , pp. 1-10
    • De Duve, C.1
  • 15
    • 34247180015 scopus 로고    scopus 로고
    • The origin of eukaryotes: A reappraisal
    • DOI 10.1038/nrg2071, PII NRG2071
    • de Duve C., The origin of eukaryotes: a reappraisal Nature Reviews Genetics 2007 8 5 395 403 (Pubitemid 46625806)
    • (2007) Nature Reviews Genetics , vol.8 , Issue.5 , pp. 395-403
    • De Duve, C.1
  • 16
    • 72449125106 scopus 로고    scopus 로고
    • The origin of peroxisomes: The possibility of an actinobacterial symbiosis
    • Duhita N., Ai Thuy L. H., Satoshi S., Kazuo H., Daisuke M., Takao S., The origin of peroxisomes: the possibility of an actinobacterial symbiosis Gene 2010 450 1-2 18 24
    • (2010) Gene , vol.450 , Issue.12 , pp. 18-24
    • Duhita, N.1    Ai Thuy, L.H.2    Satoshi, S.3    Kazuo, H.4    Daisuke, M.5    Takao, S.6
  • 21
    • 0041810193 scopus 로고    scopus 로고
    • Peroxisomes start their life in the endoplasmic reticulum
    • Tabak H. F., Murk J. L., Braakman I., Geuze H. J., Peroxisomes start their life in the endoplasmic reticulum Traffic 2003 4 8 512 518 (Pubitemid 36896543)
    • (2003) Traffic , vol.4 , Issue.8 , pp. 512-518
    • Tabak, H.F.1    Murk, J.L.2    Braakman, I.3    Geuze, H.J.4
  • 23
    • 33746366462 scopus 로고    scopus 로고
    • Biochemistry of mammalian peroxisomes revisited
    • DOI 10.1146/annurev.biochem.74.082803.133329
    • Wanders R. J. A., Waterham H. R., Biochemistry of mammalian peroxisomes revisited Annual Review of Biochemistry 2006 75 295 332 (Pubitemid 44118035)
    • (2006) Annual Review of Biochemistry , vol.75 , pp. 295-332
    • Wanders, R.J.A.1    Waterham, H.R.2
  • 24
    • 0026523576 scopus 로고
    • A human gene responsible for Zellweger syndrome that affects peroxisome assembly
    • Shimozawa N., Tsukamoto T., Suzuki Y., Orii T., Shirayoshi Y., Mori T., Fujiki Y., A human gene responsible for Zellweger syndrome that affects peroxisome assembly Science 1992 255 5048 1132 1134
    • (1992) Science , vol.255 , Issue.5048 , pp. 1132-1134
    • Shimozawa, N.1    Tsukamoto, T.2    Suzuki, Y.3    Orii, T.4    Shirayoshi, Y.5    Mori, T.6    Fujiki, Y.7
  • 25
    • 0034733909 scopus 로고    scopus 로고
    • Peroxisome biogenesis and peroxisome biogenesis disorders
    • DOI 10.1016/S0014-5793(00)01667-7, PII S0014579300016677
    • Fujiki Y., Peroxisome biogenesis and peroxisome biogenesis disorders FEBS Letters 2000 476 1-2 42 46 (Pubitemid 30394647)
    • (2000) FEBS Letters , vol.476 , Issue.1-2 , pp. 42-46
    • Fujiki, Y.1
  • 30
    • 79751472085 scopus 로고    scopus 로고
    • Peroxisome metabolism and cellular aging
    • Titorenko V. I., Terlecky S. R., Peroxisome metabolism and cellular aging Traffic 2011 12 3 252 259
    • (2011) Traffic , vol.12 , Issue.3 , pp. 252-259
    • Titorenko, V.I.1    Terlecky, S.R.2
  • 33
    • 12844250563 scopus 로고    scopus 로고
    • A sorting nexin PpAtg24 regulates vacuolar membrane dynamics during pexophagy via binding to phosphatidylinositol-3-phosphate
    • DOI 10.1091/mbc.E04-09-0842
    • Ano Y., Hattori T., Oku M., Mukaiyama H., Baba M., Ohsumi Y., Kato N., Sakai Y., A sorting nexin PpAtg24 regulates vacuolar membrane dynamics during pexophagy via binding to phosphatidylinositol-3-phosphate Molecular Biology of the Cell 2005 16 2 446 457 (Pubitemid 40165546)
    • (2005) Molecular Biology of the Cell , vol.16 , Issue.2 , pp. 446-457
    • Ano, Y.1    Hattori, T.2    Oku, M.3    Mukaiyama, H.4    Baba, M.5    Ohsumi, Y.6    Kato, N.7    Sakai, Y.8
  • 35
    • 75149143548 scopus 로고    scopus 로고
    • Roles of Pichia pastoris Uvrag in vacuolar protein sorting and the phosphatidylinositol 3-kinase complex in phagophore elongation in autophagy pathways
    • Farré J. C., Mathewson R. D., Manjithaya R., Subramani S., Roles of Pichia pastoris Uvrag in vacuolar protein sorting and the phosphatidylinositol 3-kinase complex in phagophore elongation in autophagy pathways Autophagy 2010 6 1 86 99
    • (2010) Autophagy , vol.6 , Issue.1 , pp. 86-99
    • Farré, J.C.1    Mathewson, R.D.2    Manjithaya, R.3    Subramani, S.4
  • 36
    • 0033618147 scopus 로고    scopus 로고
    • The Hansenula polymorpha PDD1 gene product, essential for the selective degradation of peroxisomes, is a homologue of Saccharomyces cerevisiae Vps34p
    • DOI 10.1002/(SICI)1097-0061(19990630)15:9<741::AID-YEA416>3.0.CO;2- O
    • Kiel J. A. K. W., Rechinger K. B., van der Klei I. J., Salomons F. A., Titorenko V. I., Veenhuis M., The Hansenula polymorpha PDD1 gene product, essential for the selective degradation of peroxisomes, is a homologue of Saccharomyces cerevisiae Vps34p Yeast 1999 15 9 741 754 (Pubitemid 29308797)
    • (1999) Yeast , vol.15 , Issue.9 , pp. 741-754
    • Kiel, J.A.K.W.1    Rechinger, K.B.2    Van Der Klei, I.J.3    Salomons, F.A.4    Titorenko, V.I.5    Veenhuis, M.6
  • 37
    • 77951168347 scopus 로고    scopus 로고
    • A yeast MAPK cascade regulates pexophagy but not other autophagy pathways
    • Manjithaya R., Jain S., Farré J. C., Subramani S., A yeast MAPK cascade regulates pexophagy but not other autophagy pathways Journal of Cell Biology 2010 189 2 303 310
    • (2010) Journal of Cell Biology , vol.189 , Issue.2 , pp. 303-310
    • Manjithaya, R.1    Jain, S.2    Farré, J.C.3    Subramani, S.4
  • 38
    • 77950470469 scopus 로고    scopus 로고
    • Molecular mechanism and physiological role of pexophagy
    • Manjithaya R., Nazarko T. Y., Farré J. C., Subramani S., Molecular mechanism and physiological role of pexophagy FEBS Letters 2010 584 7 1367 1373
    • (2010) FEBS Letters , vol.584 , Issue.7 , pp. 1367-1373
    • Manjithaya, R.1    Nazarko, T.Y.2    Farré, J.C.3    Subramani, S.4
  • 39
    • 33745964401 scopus 로고    scopus 로고
    • The Hansenula polymorpha ATG25 gene encodes a novel coiled-coil protein that is required for macropexophagy
    • Monastyrska I., Kiel J. A., Krikken A. M., Komduur J. A., Veenhuis M., van der Klei I. J., The Hansenula polymorpha ATG25 gene encodes a novel coiled-coil protein that is required for macropexophagy Autophagy 2005 1 2 92 100
    • (2005) Autophagy , vol.1 , Issue.2 , pp. 92-100
    • Monastyrska, I.1    Kiel, J.A.2    Krikken, A.M.3    Komduur, J.A.4    Veenhuis, M.5    Van Der Klei, I.J.6
  • 41
    • 33749080321 scopus 로고    scopus 로고
    • Autophagy in organelle homeostasis: Peroxisome turnover
    • DOI 10.1016/j.mam.2006.08.004, PII S0098299706000227
    • Monastyrska I., Klionsky D. J., Autophagy in organelle homeostasis: peroxisome turnover Molecular Aspects of Medicine 2006 27 5-6 483 494 (Pubitemid 44466655)
    • (2006) Molecular Aspects of Medicine , vol.27 , Issue.5-6 , pp. 483-494
    • Monastyrska, I.1    Klionsky, D.J.2
  • 42
    • 0036163982 scopus 로고    scopus 로고
    • Paz2 and 13 other PAZ gene products regulate vacuolar engulfment of peroxisomes during micropexophagy
    • DOI 10.1046/j.1356-9597.2001.00499.x
    • Mukaiyama H., Oku M., Baba M., Samizo T., Hammond A. T., Glick B. S., Kato N., Sakai Y., Paz2 and 13 other PAZ gene products regulate vacuolar engulfment of peroxisomes during micropexophagy Genes to Cells 2002 7 1 75 90 (Pubitemid 34121307)
    • (2002) Genes to Cells , vol.7 , Issue.1 , pp. 75-90
    • Mukaiyama, H.1    Oku, M.2    Baba, M.3    Samizo, T.4    Hammond, A.T.5    Glick, B.S.6    Kato, N.7    Sakai, Y.8
  • 44
    • 0038263977 scopus 로고    scopus 로고
    • Peroxisome degradation requires catalytically active sterol glucosyltransferase with a GRAM domain
    • DOI 10.1093/emboj/cdg331
    • Oku M., Warnecke D., Noda T., Mller F., Heinz E., Mukaiyama H., Kato N., Sakai Y., Peroxisome degradation requires catalytically active sterol glucosyltransferase with a GRAM domain EMBO Journal 2003 22 13 3231 3241 (Pubitemid 36834854)
    • (2003) EMBO Journal , vol.22 , Issue.13 , pp. 3231-3241
    • Oku, M.1    Warnecke, D.2    Noda, T.3    Muller, F.4    Heinz, E.5    Mukaiyama, H.6    Kato, N.7    Sakai, Y.8
  • 46
    • 33747402357 scopus 로고    scopus 로고
    • PI4P-signaling pathway for the synthesis of a nascent membrane structure in selective autophagy
    • DOI 10.1083/jcb.200512142
    • Yamashita S. I., Oku M., Wasada Y., Ano Y., Sakai Y., PI4P-signaling pathway for the synthesis of a nascent membrane structure in selective autophagy Journal of Cell Biology 2006 173 5 709 717 (Pubitemid 46165579)
    • (2006) Journal of Cell Biology , vol.173 , Issue.5 , pp. 709-717
    • Yamashita, S.-I.1    Oku, M.2    Wasada, Y.3    Ano, Y.4    Sakai, Y.5
  • 47
    • 38049062944 scopus 로고    scopus 로고
    • Pex14 is the sole component of the peroxisomal translocon that is required for pexophagy
    • Zutphen T., Veenhuis M., van der Klei I. J., Pex14 is the sole component of the peroxisomal translocon that is required for pexophagy Autophagy 2008 4 1 63 66
    • (2008) Autophagy , vol.4 , Issue.1 , pp. 63-66
    • Zutphen, T.1    Veenhuis, M.2    Van Der Klei, I.J.3
  • 48
    • 0023039527 scopus 로고
    • Quantitative immunocytochemical studies on differential induction of serine. Pyruvate aminotransferase in mitochondria and peroxisomes of rat liver cells by administration of glucagon or di-(2-ethylhexyl)phthalate
    • Yokota S., Quantitative immunocytochemical studies on differential induction of serine. Pyruvate aminotransferase in mitochondria and peroxisomes of rat liver cells by administration of glucagon or di-(2-ethylhexyl)phthalate Histochemistry 1986 85 2 145 155 (Pubitemid 16095199)
    • (1986) Histochemistry , vol.85 , Issue.2 , pp. 145-155
    • Yokota, S.1
  • 49
    • 0030841936 scopus 로고    scopus 로고
    • Peroxisome proliferators and peroxisome proliferator activated receptors (PPARs) as regulators of lipid metabolism
    • DOI 10.1016/S0300-9084(97)81496-4
    • Latruffe N., Vamecq J., Peroxisome proliferators and peroxisome proliferator activated receptors (PPARs) as regulators of lipid metabolism Biochimie 1997 79 2-3 81 94 (Pubitemid 27290347)
    • (1997) Biochimie , vol.79 , Issue.2-3 , pp. 81-94
    • Latruffe, N.1    Vamecq, J.2
  • 50
    • 0034668147 scopus 로고    scopus 로고
    • Regulation of the peroxisomal beta-oxidation-dependent pathway by peroxisome proliferator-activated receptor alpha and kinases
    • Latruffe N., Cherkaoui Malki M., Nicolas-Frances V., Clemencet M. C., Jannin B., Berlot J. P., Regulation of the peroxisomal beta-oxidation-dependent pathway by peroxisome proliferator-activated receptor alpha and kinases Biochemical Pharmacology 2000 60 8 1027 1032
    • (2000) Biochemical Pharmacology , vol.60 , Issue.8 , pp. 1027-1032
    • Latruffe, N.1    Cherkaoui Malki, M.2    Nicolas-Frances, V.3    Clemencet, M.C.4    Jannin, B.5    Berlot, J.P.6
  • 51
    • 0037177413 scopus 로고    scopus 로고
    • Comparative effects of phthalate monoesters on gap junctional intercellular communication and peroxisome proliferation in rodent and primate hepatocytes
    • DOI 10.1080/152873902317349736
    • Kamendulis L. M., Isenberg J. S., Smith J. H., Pugh G., Lington A. W., Klaunig J. E., Comparative effects of phthalate monoesters on gap junctional intercellular communication and peroxisome proliferation in rodent and primate hepatocytes Journal of Toxicology and Environmental Health A 2002 65 8 569 588 (Pubitemid 34408961)
    • (2002) Journal of Toxicology and Environmental Health - Part A , vol.65 , Issue.8 , pp. 569-588
    • Kamendulis, L.M.1    Isenberg, J.S.2    Smith, J.H.3    Pugh Jr., G.4    Lington, A.W.5    Klaunig, J.E.6
  • 52
    • 0034065023 scopus 로고    scopus 로고
    • Species differences in response to diethylhexylphthalate: Suppression of apoptosis, induction of DNA synthesis and peroxisome proliferator activated receptor alpha-mediated gene expression
    • DOI 10.1007/s002040050657
    • Hasmall S. C., James N. H., Macdonald N., Soames A. R., Roberts R. A., Species differences in response to diethylhexylphthalate: suppression of apoptosis, induction of DNA synthesis and peroxisome proliferator activated receptor alpha-mediated gene expression Archives of Toxicology 2000 74 2 85 91 (Pubitemid 30304015)
    • (2000) Archives of Toxicology , vol.74 , Issue.2 , pp. 85-91
    • Hasmall, S.C.1    James, N.H.2    Macdonald, N.3    Soames, A.R.4    Roberts, R.A.5
  • 53
    • 0036882106 scopus 로고    scopus 로고
    • PEX11α is required for peroxisome proliferation in response to 4-phenylbutyrate but is dispensable for peroxisome proliferator-activated receptor alpha-mediated peroxisome proliferation
    • DOI 10.1128/MCB.22.23.8226-8240.2002
    • Li X., Baumgart E., Dong G. X., Morrell J. C., Jimenez-Sanchez G., Valle D., Smith K. D., Gould S. J., PEX11 is required for peroxisome proliferation in response to 4-phenylbutyrate but is dispensable for peroxisome proliferator-activated receptor alpha-mediated peroxisome proliferation Molecular and Cellular Biology 2002 22 23 8226 8240 (Pubitemid 35304056)
    • (2002) Molecular and Cellular Biology , vol.22 , Issue.23 , pp. 8226-8240
    • Li, X.1    Baumgart, E.2    Dong, G.-X.3    Morrell, J.C.4    Jimenez-Sanchez, G.5    Valle, D.6    Smith, K.D.7    Gould, S.J.8
  • 56
    • 0037371332 scopus 로고    scopus 로고
    • The Hansenula polymorpha PDD7 gene is essential for macropexophagy and microautophagy
    • DOI 10.1016/S1567-1356(02)00135-6, PII S1567135602001356
    • Komduur J. A., Veenhuis M., Kiel J. A. K. W., The Hansenula polymorpha PDD7 gene is essential for macropexophagy and microautophagy FEMS Yeast Research 2003 3 1 27 34 (Pubitemid 36255461)
    • (2003) FEMS Yeast Research , vol.3 , Issue.1 , pp. 27-34
    • Komduur, J.A.1    Veenhuis, M.2    Kiel, J.A.K.W.3
  • 57
    • 33644606051 scopus 로고    scopus 로고
    • PpAtg9 trafficking during micropexophagy in Pichia pastoris
    • Schroder L. A., Dunn W. A., PpAtg9 trafficking during micropexophagy in Pichia pastoris Autophagy 2006 2 1 52 54
    • (2006) Autophagy , vol.2 , Issue.1 , pp. 52-54
    • Schroder, L.A.1    Dunn, W.A.2
  • 58
    • 0242695642 scopus 로고    scopus 로고
    • GSA11 encodes a unique 208-kDa protein required for pexophagy and autophagy in Pichia pastoris
    • Strmhaug P. E., Bevan A., Dunn W. A., GSA11 encodes a unique 208-kDa protein required for pexophagy and autophagy in Pichia pastoris Journal of Biological Chemistry 2001 276 45 42422 42435
    • (2001) Journal of Biological Chemistry , vol.276 , Issue.45 , pp. 42422-42435
    • Strmhaug, P.E.1    Bevan, A.2    Dunn, W.A.3
  • 60
    • 0141964578 scopus 로고    scopus 로고
    • Modification of a Ubiquitin-like Protein Paz2 Conducted Micropexophagy through Formation of a Novel Membrane Structure
    • DOI 10.1091/mbc.E03-05-0340
    • Mukaiyama H., Baba M., Osumi M., Aoyagi S., Kato N., Ohsumi Y., Sakai Y., Modification of a ubiquitin-like protein Paz2 conducted micropexophagy through formation of a novel membrane structure Molecular Biology of the Cell 2004 15 1 58 70 (Pubitemid 38044943)
    • (2004) Molecular Biology of the Cell , vol.15 , Issue.1 , pp. 58-70
    • Mukaiyama, H.1    Baba, M.2    Osumi, M.3    Aoyagi, S.4    Kato, N.5    Ohsumi, Y.6    Sakai, Y.7
  • 61
    • 78649735149 scopus 로고    scopus 로고
    • Atg8 regulates vacuolar membrane dynamics in a lipidation-independent manner in Pichia pastoris
    • part 23
    • Tamura N., Oku M., Sakai Y., Atg8 regulates vacuolar membrane dynamics in a lipidation-independent manner in Pichia pastoris Journal of Cell Science 2010 123, part 23 4107 4116
    • (2010) Journal of Cell Science , vol.123 , pp. 4107-4116
    • Tamura, N.1    Oku, M.2    Sakai, Y.3
  • 62
    • 0030883562 scopus 로고    scopus 로고
    • Glucose-induced microautophagy in Pichia pastoris requires the α-subunit of phosphofructokinase
    • Yuan W., Tuttle D. L., Shi Y. J., Ralph G. S., Dunn W. A., Glucose-induced microautophagy in Pichia pastoris requires the -subunit of phosphofructokinase Journal of Cell Science 1997 110 16 1935 1945 (Pubitemid 27386663)
    • (1997) Journal of Cell Science , vol.110 , Issue.16 , pp. 1935-1945
    • Yuan, W.1    Tuttle, D.L.2    Shi, Y.-J.3    Ralph, G.S.4    Dunn Jr., W.A.5
  • 63
    • 26244457185 scopus 로고    scopus 로고
    • PpATG9 encodes a novel membrane protein that traffics to vacuolar membranes, which sequester peroxisomes during pexophagy in Pichia pastoris
    • DOI 10.1091/mbc.E05-02-0143
    • Chang T., Schroder L. A., Thomson J. M., Klocman A. S., Tomasini A. J., Strmhaug P. E., Dunn W. A., PpATG9 encodes a novel membrane protein that traffics to vacuolar membranes, which sequester peroxisomes during pexophagy in Pichia pastoris Molecular Biology of the Cell 2005 16 10 4941 4953 (Pubitemid 41416472)
    • (2005) Molecular Biology of the Cell , vol.16 , Issue.10 , pp. 4941-4953
    • Chang, T.1    Schroder, L.A.2    Thomson, J.M.3    Klocman, A.S.4    Tomasini, A.J.5    Stromhaug, P.E.6    Dunn Jr., W.A.7
  • 65
    • 84856275868 scopus 로고    scopus 로고
    • PtdIns 3-Kinase orchestrates autophagosome formation in yeast
    • Obara K., Ohsumi Y., PtdIns 3-Kinase orchestrates autophagosome formation in yeast Journal of Lipids 2011 2011 498768
    • (2011) Journal of Lipids , vol.2011 , pp. 498768
    • Obara, K.1    Ohsumi, Y.2
  • 66
    • 0035661648 scopus 로고    scopus 로고
    • Cvt18/Gsa12 is required for cytoplasm-to-vacuole transport, pexophagy, and autophagy in Saccharomyces cerevisiae and Pichia pastoris
    • Guan J., Stromhaug P. E., George M. D., Habibzadegah-Tari P., Bevan A., Dunn W. A., Klionsky D. J., Cvt18/Gsa12 is required for cytoplasm-to-vacuole transport, pexophagy, and autophagy in Saccharomyces cerevisiae and Pichia pastoris Molecular Biology of the Cell 2001 12 12 3821 3838 (Pubitemid 34001076)
    • (2001) Molecular Biology of the Cell , vol.12 , Issue.12 , pp. 3821-3838
    • Guan, J.1    Stromhaug, P.E.2    George, M.D.3    Habibzadegah-Tari, P.4    Bevan, A.5    Dunn Jr., W.A.6    Klionsky, D.J.7
  • 67
    • 8844222036 scopus 로고    scopus 로고
    • Atg21p is essential for macropexophagy and microautophagy in the yeast Hansenula polymorpha
    • DOI 10.1016/j.febslet.2004.10.055, PII S0014579304013080
    • Leo-Helder A. N., Krikken A. M., Gellissen G., van der Klei I. J., Veenhuis M., Kiel J. A. K. W., Atg21p is essential for macropexophagy and microautophagy in the yeast Hansenula polymorpha FEBS Letters 2004 577 3 491 495 (Pubitemid 39535336)
    • (2004) FEBS Letters , vol.577 , Issue.3 , pp. 491-495
    • Leao-Helder, A.N.1    Krikken, A.M.2    Gellissen, G.3    Van Der Klei, I.J.4    Veenhuis, M.5    Kiel, J.A.K.W.6
  • 70
    • 58149300224 scopus 로고    scopus 로고
    • The membrane dynamics of pexophagy are influenced by sarlp in Pichia pastoris
    • Schroder L. A., Ortiz M. V., Dunn W. A., The membrane dynamics of pexophagy are influenced by sarlp in Pichia pastoris Molecular Biology of the Cell 2008 19 11 4888 4899
    • (2008) Molecular Biology of the Cell , vol.19 , Issue.11 , pp. 4888-4899
    • Schroder, L.A.1    Ortiz, M.V.2    Dunn, W.A.3
  • 71
    • 79961124209 scopus 로고    scopus 로고
    • Damaged peroxisomes are subject to rapid autophagic degradation in the yeast Hansenula polymorpha
    • van Zutphen T., Veenhuis M., van der Klei I. J., Damaged peroxisomes are subject to rapid autophagic degradation in the yeast Hansenula polymorpha Autophagy 2011 7 8 863 872
    • (2011) Autophagy , vol.7 , Issue.8 , pp. 863-872
    • Van Zutphen, T.1    Veenhuis, M.2    Van Der Klei, I.J.3
  • 72
    • 0037044768 scopus 로고    scopus 로고
    • Removal of Pex3p is an important initial stage in selective peroxisome degradation in Hansenula polymorpha
    • DOI 10.1074/jbc.M205437200
    • Bellu A. R., Salomons F. A., Kiel J. A. K. W., Veenhuis M., van der Klei I. J., Removal of Pex3p is an important initial stage in selective peroxisome degradation in Hansenula polymorpha Journal of Biological Chemistry 2002 277 45 42875 42880 (Pubitemid 35285664)
    • (2002) Journal of Biological Chemistry , vol.277 , Issue.45 , pp. 42875-42880
    • Bellu, A.R.1    Salomons, F.A.2    Kiel, J.A.K.W.3    Veenhuis, M.4    Van Der Klei, I.J.5
  • 73
    • 0038523786 scopus 로고    scopus 로고
    • Selective degradation of peroxisomes in yeasts
    • DOI 10.1002/jemt.10325
    • Bellu A. R., Kiel J. A. K. W., Selective degradation of peroxisomes in yeasts Microscopy Research and Technique 2003 61 2 161 170 (Pubitemid 36570099)
    • (2003) Microscopy Research and Technique , vol.61 , Issue.2 , pp. 161-170
    • Bellu, A.R.1    Kiel, J.A.K.W.2
  • 75
    • 33748434220 scopus 로고    scopus 로고
    • Role of Vac8 in formation of the vacuolar sequestering membrane during micropexophagy
    • Oku M., Nishimura T., Hattori T., Ano Y., Yamashita S. I., Sakai Y., Role of Vac8 in formation of the vacuolar sequestering membrane during micropexophagy Autophagy 2006 2 4 272 279 (Pubitemid 44342369)
    • (2006) Autophagy , vol.2 , Issue.4 , pp. 272-279
    • Oku, M.1    Nishimura, T.2    Hattori, T.3    Ano, Y.4    Yamashita, S.-I.5    Sakai, Y.6
  • 76
    • 33748433784 scopus 로고    scopus 로고
    • Early and late molecular events of glucose-induced pexophagy in Pichia pastoris require Vac8
    • Fry M. R., Thomson J. M., Tomasini A. J., Dunn W. A., Early and late molecular events of glucose-induced pexophagy in Pichia pastoris require Vac8 Autophagy 2006 2 4 280 288 (Pubitemid 44342370)
    • (2006) Autophagy , vol.2 , Issue.4 , pp. 280-288
    • Fry, M.R.1    Thomson, J.M.2    Tomasini, A.J.3    Dunn, W.A.4
  • 79
    • 79952087344 scopus 로고    scopus 로고
    • CCZ1, MON1 and YPT7 genes are involved in pexophagy, the Cvt pathway and non-specific macroautophagy in the methylotrophic yeast Pichia pastoris
    • Polupanov A. S., Nazarko V. Y., Sibirny A. A., CCZ1, MON1 and YPT7 genes are involved in pexophagy, the Cvt pathway and non-specific macroautophagy in the methylotrophic yeast Pichia pastoris Cell Biology International 2011 35 4 311 319
    • (2011) Cell Biology International , vol.35 , Issue.4 , pp. 311-319
    • Polupanov, A.S.1    Nazarko, V.Y.2    Sibirny, A.A.3
  • 80
    • 34248139628 scopus 로고    scopus 로고
    • Molecular machinery of autophagosome formation in yeast, Saccharomyces cerevisiae
    • DOI 10.1016/j.febslet.2007.01.096, PII S0014579307002554, Membrane Trafficking
    • Suzuki K., Ohsumi Y., Molecular machinery of autophagosome formation in yeast, Saccharomyces cerevisiae FEBS Letters 2007 581 11 2156 2161 (Pubitemid 46709906)
    • (2007) FEBS Letters , vol.581 , Issue.11 , pp. 2156-2161
    • Suzuki, K.1    Ohsumi, Y.2
  • 81
    • 79957881200 scopus 로고    scopus 로고
    • Chasing the elusive mammalian microautophagy
    • Santambrogio L., Cuervo A. M., Chasing the elusive mammalian microautophagy Autophagy 2011 7 6 652 654
    • (2011) Autophagy , vol.7 , Issue.6 , pp. 652-654
    • Santambrogio, L.1    Cuervo, A.M.2
  • 83
    • 0034614934 scopus 로고    scopus 로고
    • Apg9p/Cvt7p is an integral membrane protein required for transport vesicle formation in the Cvt and autophagy pathways
    • Noda T., Kim J., Huang W. P., Baba M., Tokunaga C., Ohsumi Y., Klionsky D. J., Apg9p/Cvt7p is an integral membrane protein required for transport vesicle formation in the Cvt and autophagy pathways Journal of Cell Biology 2000 148 3 465 479
    • (2000) Journal of Cell Biology , vol.148 , Issue.3 , pp. 465-479
    • Noda, T.1    Kim, J.2    Huang, W.P.3    Baba, M.4    Tokunaga, C.5    Ohsumi, Y.6    Klionsky, D.J.7
  • 84
    • 33845692364 scopus 로고    scopus 로고
    • Recruitment of Atg9 to the preautophagosomal structure by Atg11 is essential for selective autophagy in budding yeast
    • DOI 10.1083/jcb.200606084
    • He C., Song H., Yorimitsu T., Monastyrska I., Yen W. L., Legakis J. E., Klionsky D. J., Recruitment of Atg9 to the preautophagosomal structure by Atg11 is essential for selective autophagy in budding yeast Journal of Cell Biology 2006 175 6 925 935 (Pubitemid 44969198)
    • (2006) Journal of Cell Biology , vol.175 , Issue.6 , pp. 925-935
    • He, C.1    Song, H.2    Yorimitsu, T.3    Monastyrska, I.4    Yen, W.-L.5    Legakis, J.E.6    Klionsky, D.J.7
  • 86
    • 33846807374 scopus 로고    scopus 로고
    • Atg27 is required for autophagy-dependent cycling of Atg9
    • DOI 10.1091/mbc.E06-07-0612
    • Yen W. L., Legalds J. E., Nair U., Klionsky D. J., Atg27 is required for autophagy-dependent cycling of Atg9 Molecular Biology of the Cell 2007 18 2 581 593 (Pubitemid 46213226)
    • (2007) Molecular Biology of the Cell , vol.18 , Issue.2 , pp. 581-593
    • Yen, W.-L.1    Legalds, J.E.2    Nair, U.3    Klionsky, D.J.4
  • 89
    • 77955259144 scopus 로고    scopus 로고
    • Peroxisomes as dynamic organelles: Autophagic degradation
    • Oku M., Sakai Y., Peroxisomes as dynamic organelles: autophagic degradation FEBS Journal 2010 277 16 3289 3294
    • (2010) FEBS Journal , vol.277 , Issue.16 , pp. 3289-3294
    • Oku, M.1    Sakai, Y.2
  • 90
    • 23944495522 scopus 로고    scopus 로고
    • Intracellular ATP correlates with mode of pexophagy in Pichia pastoris
    • DOI 10.1271/bbb.69.1527
    • Ano Y., Hattori T., Kato N., Sakai Y., Intracellular ATP correlates with mode of pexophagy in Pichia pastoris Bioscience, Biotechnology and Biochemistry 2005 69 8 1527 1533 (Pubitemid 41207342)
    • (2005) Bioscience, Biotechnology and Biochemistry , vol.69 , Issue.8 , pp. 1527-1533
    • Ano, Y.1    Hattori, T.2    Kato, N.3    Sakai, Y.4
  • 91
    • 0033490110 scopus 로고    scopus 로고
    • Peroxisome degradation in Saccharomyces cerevisiae is dependent on machinery of macroautophagy and the Cvt pathway
    • Hutchins M. U., Veenhuis M., Klionsky D. J., Peroxisome degradation in Saccharomyces cerevisiae is dependent on machinery of macroautophagy and the Cvt pathway Journal of Cell Science 1999 112 22 4079 4087 (Pubitemid 30119776)
    • (1999) Journal of Cell Science , vol.112 , Issue.22 , pp. 4079-4087
    • Hutchins, M.U.1    Veenhuis, M.2    Klionsky, D.J.3
  • 92
    • 33846170088 scopus 로고    scopus 로고
    • The requirement of sterol glucoside for pexophagy in yeast is dependent on the species and nature of peroxisome inducers
    • DOI 10.1091/mbc.E06-06-0554
    • Nazarko T. Y., Polupanov A. S., Manjithaya R. R., Subramani S., Sibirny A. A., The requirement of sterol glucoside for pexophagy in yeast is dependent on the species and nature of peroxisome inducers Molecular Biology of the Cell 2007 18 1 106 118 (Pubitemid 46074964)
    • (2007) Molecular Biology of the Cell , vol.18 , Issue.1 , pp. 106-118
    • Nazarko, T.Y.1    Polupanov, A.S.2    Manjithaya, R.R.3    Subramani, S.4    Sibirny, A.A.5
  • 93
    • 0028855325 scopus 로고
    • Divergent modes of autophagy in the methylotrophic yeast Pichia pastoris
    • Tuttle D. L., Dunn W. A. Jr. , Divergent modes of autophagy in the methylotrophic yeast Pichia pastoris Journal of Cell Science 1995 108 1 25 35
    • (1995) Journal of Cell Science , vol.108 , Issue.1 , pp. 25-35
    • Tuttle, D.L.1    Dunn Jr., W.A.2
  • 94
    • 2942624168 scopus 로고    scopus 로고
    • Microautophagy and macropexophagy may occur simultaneously in Hansenula polymorpha
    • DOI 10.1016/j.febslet.2004.05.018, PII S0014579304006325
    • Monastryska I., Sjollema K., van der Klei I. J., Kiel J. A. K. W., Veenhuis M., Microautophagy and macropexophagy may occur simultaneously in Hansenula polymorpha FEBS Letters 2004 568 13 135 138 (Pubitemid 38757969)
    • (2004) FEBS Letters , vol.568 , Issue.1-3 , pp. 135-138
    • Monastryska, I.1    Sjollema, K.2    Van Der Klei, I.J.3    Kiel, J.A.K.W.4    Veenhuis, M.5
  • 95
    • 79958219318 scopus 로고    scopus 로고
    • Two MAPK-signaling pathways are required for mitophagy in Saccharomyces cerevisiae
    • Mao K., Wang K., Zhao M., Xu T., Klionsky D. J., Two MAPK-signaling pathways are required for mitophagy in Saccharomyces cerevisiae Journal of Cell Biology 2011 193 4 755 767
    • (2011) Journal of Cell Biology , vol.193 , Issue.4 , pp. 755-767
    • Mao, K.1    Wang, K.2    Zhao, M.3    Xu, T.4    Klionsky, D.J.5
  • 97
    • 50249168137 scopus 로고    scopus 로고
    • Mitochondrially localized ERK2 regulates mitophagy and autophagic cell stress: Implications for Parkinson's disease
    • Dagda R. K., Zhu J., Kulich S. M., Chu C. T., Mitochondrially localized ERK2 regulates mitophagy and autophagic cell stress: implications for Parkinson's disease Autophagy 2008 4 6 770 782
    • (2008) Autophagy , vol.4 , Issue.6 , pp. 770-782
    • Dagda, R.K.1    Zhu, J.2    Kulich, S.M.3    Chu, C.T.4
  • 98
    • 44149095068 scopus 로고    scopus 로고
    • G-protein-coupled receptor Gpr1 and G-protein Gpa2 of cAMP-dependent signaling pathway are involved in glucose-induced pexophagy in the yeast Saccharomyces cerevisiae
    • Nazarko V. Y., Thevelein J. M., Sibirny A. A., G-protein-coupled receptor Gpr1 and G-protein Gpa2 of cAMP-dependent signaling pathway are involved in glucose-induced pexophagy in the yeast Saccharomyces cerevisiae Cell Biology International 2008 32 5 502 504
    • (2008) Cell Biology International , vol.32 , Issue.5 , pp. 502-504
    • Nazarko, V.Y.1    Thevelein, J.M.2    Sibirny, A.A.3
  • 100
    • 33947149637 scopus 로고    scopus 로고
    • Atg19 mediates a dual interaction cargo sorting mechanism in selective autophagy
    • Chang C. Y., Huang W. P., Atg19 mediates a dual interaction cargo sorting mechanism in selective autophagy Molecular Biology of the Cell 2007 18 3 919 929
    • (2007) Molecular Biology of the Cell , vol.18 , Issue.3 , pp. 919-929
    • Chang, C.Y.1    Huang, W.P.2
  • 101
    • 77956924900 scopus 로고    scopus 로고
    • Selective transport of -mannosidase by autophagic pathways: Identification of a novel receptor, Atg34p
    • Suzuki K., Kondo C., Morimoto M., Ohsumi Y., Selective transport of -mannosidase by autophagic pathways: identification of a novel receptor, Atg34p Journal of Biological Chemistry 2010 285 39 30019 30025
    • (2010) Journal of Biological Chemistry , vol.285 , Issue.39 , pp. 30019-30025
    • Suzuki, K.1    Kondo, C.2    Morimoto, M.3    Ohsumi, Y.4
  • 102
    • 77956913181 scopus 로고    scopus 로고
    • Selective transport of -mannosidase by autophagic pathways: Structural basis for cargo recognition by Atg19 and Atg34
    • Watanabe Y., Noda N. N., Kumeta H., Suzuki K., Ohsumi Y., Inagaki F., Selective transport of -mannosidase by autophagic pathways: structural basis for cargo recognition by Atg19 and Atg34 Journal of Biological Chemistry 2010 285 39 30026 30033
    • (2010) Journal of Biological Chemistry , vol.285 , Issue.39 , pp. 30026-30033
    • Watanabe, Y.1    Noda, N.N.2    Kumeta, H.3    Suzuki, K.4    Ohsumi, Y.5    Inagaki, F.6
  • 103
    • 67650264633 scopus 로고    scopus 로고
    • Atg32 is a mitochondrial protein that confers selectivity during mitophagy
    • Kanki T., Wang K., Cao Y., Baba M., Klionsky D. J., Atg32 is a mitochondrial protein that confers selectivity during mitophagy Developmental Cell 2009 17 1 98 109
    • (2009) Developmental Cell , vol.17 , Issue.1 , pp. 98-109
    • Kanki, T.1    Wang, K.2    Cao, Y.3    Baba, M.4    Klionsky, D.J.5
  • 104
    • 67650246357 scopus 로고    scopus 로고
    • Mitochondria-anchored receptor Atg32 mediates degradation of mitochondria via selective autophagy
    • Okamoto K., Kondo-Okamoto N., Ohsumi Y., Mitochondria-anchored receptor Atg32 mediates degradation of mitochondria via selective autophagy Developmental Cell 2009 17 1 87 97
    • (2009) Developmental Cell , vol.17 , Issue.1 , pp. 87-97
    • Okamoto, K.1    Kondo-Okamoto, N.2    Ohsumi, Y.3
  • 107
    • 70349334586 scopus 로고    scopus 로고
    • Peroxisome size provides insights into the function of autophagy-related proteins
    • Nazarko T. Y., Farré J. C., Subramani S., Peroxisome size provides insights into the function of autophagy-related proteins Molecular Biology of the Cell 2009 20 17 3828 3839
    • (2009) Molecular Biology of the Cell , vol.20 , Issue.17 , pp. 3828-3839
    • Nazarko, T.Y.1    Farré, J.C.2    Subramani, S.3
  • 108
    • 43149125546 scopus 로고    scopus 로고
    • Organization of the pre-autophagosomal structure responsible for autophagosome formation
    • Kawamata T., Kamada Y., Kabeya Y., Sekito T., Ohsumi Y., Organization of the pre-autophagosomal structure responsible for autophagosome formation Molecular Biology of the Cell 2008 19 5 2039 2050
    • (2008) Molecular Biology of the Cell , vol.19 , Issue.5 , pp. 2039-2050
    • Kawamata, T.1    Kamada, Y.2    Kabeya, Y.3    Sekito, T.4    Ohsumi, Y.5
  • 109
    • 33846514235 scopus 로고    scopus 로고
    • Hierarchy of Atg proteins in pre-autophagosomal structure organization
    • DOI 10.1111/j.1365-2443.2007.01050.x
    • Suzuki K., Kubota Y., Sekito T., Ohsumi Y., Hierarchy of Atg proteins in pre-autophagosomal structure organization Genes to Cells 2007 12 2 209 218 (Pubitemid 46152659)
    • (2007) Genes to Cells , vol.12 , Issue.2 , pp. 209-218
    • Suzuki, K.1    Kubota, Y.2    Sekito, T.3    Ohsumi, Y.4
  • 110
    • 0346503885 scopus 로고    scopus 로고
    • The Atg1-Atg13 complex regulates Atg9 and Atg23 retrieval transport from the pre-autophagosomal structure
    • DOI 10.1016/S1534-5807(03)00402-7, PII S1534580703004027
    • Reggiori F., Tucker K. A., Stromhaug P. E., Klionsky D. J., The Atg1-Atg13 complex regulates Atg9 and Atg23 retrieval transport from the pre-autophagosomal structure Developmental Cell 2004 6 1 79 90 (Pubitemid 38089207)
    • (2004) Developmental Cell , vol.6 , Issue.1 , pp. 79-90
    • Reggiori, F.1    Tucker, K.A.2    Stromhaug, P.E.3    Klionsky, D.J.4
  • 112
    • 28644447348 scopus 로고    scopus 로고
    • The actin cytoskeleton is required for selective types of autophagy, but not nonspecific autophagy, in the yeast Saccharomyces cerevisiae
    • DOI 10.1091/mbc.E05-07-0629
    • Reggiori F., Monastyrska I., Shintani T., Klionsky D. J., The actin cytoskeleton is required for selective types of autophagy, but not nonspecific autophagy, in the yeast Saccharomyces cerevisiae Molecular Biology of the Cell 2005 16 12 5843 5856 (Pubitemid 41752231)
    • (2005) Molecular Biology of the Cell , vol.16 , Issue.12 , pp. 5843-5856
    • Reggiori, F.1    Monastyrska, I.2    Shintani, T.3    Klionsky, D.J.4
  • 113
    • 65449186232 scopus 로고    scopus 로고
    • Atg17 recruits Atg9 to organize the pre-autophagosomal structure
    • Sekito T., Kawamata T., Ichikawa R., Suzuki K., Ohsumi Y., Atg17 recruits Atg9 to organize the pre-autophagosomal structure Genes to Cells 2009 14 5 525 538
    • (2009) Genes to Cells , vol.14 , Issue.5 , pp. 525-538
    • Sekito, T.1    Kawamata, T.2    Ichikawa, R.3    Suzuki, K.4    Ohsumi, Y.5
  • 115
    • 64649087881 scopus 로고    scopus 로고
    • 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 Histochemistry and Cell Biology 2009 131 4 455 458
    • (2009) Histochemistry and Cell Biology , vol.131 , Issue.4 , pp. 455-458
    • Yokota, S.1    Dariush Fahimi, H.2
  • 116
    • 37249060384 scopus 로고    scopus 로고
    • Induction of peroxisomal Lon protease in rat liver after di-(2-ethylhexyl)phthalate treatment
    • DOI 10.1007/s00418-007-0328-0
    • Yokota S., Haraguchi C. M., Oda T., Induction of peroxisomal Lon protease in rat liver after di-(2-ethylhexyl)phthalate treatment Histochemistry and Cell Biology 2008 129 1 73 83 (Pubitemid 350276136)
    • (2008) Histochemistry and Cell Biology , vol.129 , Issue.1 , pp. 73-83
    • Yokota, S.1    Haraguchi, C.M.2    Oda, T.3
  • 117
    • 33947374361 scopus 로고    scopus 로고
    • A peroxisomal Lon protease and peroxisome degradation by autophagy play key roles in vitality of Hansenula polymorpha cells
    • Aksam E. B., Koek A., Kiel J. A. K. W., Jourdan S., Veenhuis M., Van Der Klei I. J., A peroxisomal Lon protease and peroxisome degradation by autophagy play key roles in vitality of Hansenula polymorpha cells Autophagy 2007 3 2 96 105 (Pubitemid 46449097)
    • (2007) Autophagy , vol.3 , Issue.2 , pp. 96-105
    • Aksam, E.B.1    Koek, A.2    Kiel, J.A.K.W.3    Jourdan, S.4    Veenhuis, M.5    Van Der Klei, I.J.6
  • 118
    • 0038558137 scopus 로고    scopus 로고
    • Degradation of normal and proliferated peroxisomes in rat hepatocytes: Regulation of peroxisomes quantity in cells
    • DOI 10.1002/jemt.10324
    • Yokota S., Degradation of normal and proliferated peroxisomes in rat hepatocytes: regulation of peroxisomes quantity in cells Microscopy Research and Technique 2003 61 2 151 160 (Pubitemid 36570098)
    • (2003) Microscopy Research and Technique , vol.61 , Issue.2 , pp. 151-160
    • Yokota, S.1
  • 119
    • 55149097659 scopus 로고    scopus 로고
    • The peroxin Pex14p is involved in LC3-dependent degradation of mammalian peroxisomes
    • Hara-Kuge S., Fujiki Y., The peroxin Pex14p is involved in LC3-dependent degradation of mammalian peroxisomes Experimental Cell Research 2008 314 19 3531 3541
    • (2008) Experimental Cell Research , vol.314 , Issue.19 , pp. 3531-3541
    • Hara-Kuge, S.1    Fujiki, Y.2
  • 120
    • 0017058521 scopus 로고
    • TAGESRHYTHMIK DES LYSOSOMALEN ORGANELLENABBAUES IN LEBER, NIERE UND PANKREAS
    • Pfeifer U., Scheller H., Ormanns W., Diurnal rhythm of lysosomal organelle decomposition in liver, kidney and pancreas Acta Histochemica 1976 16 205 210 (Pubitemid 8019675)
    • (1976) Acta Histochemica , vol.57 , Issue.SUP 16 , pp. 205-210
    • Pfeifer, U.1    Scheller, H.2    Ormanns, W.3
  • 123
    • 77953708505 scopus 로고    scopus 로고
    • FYCO1: Linking autophagosomes to microtubule plus end-directing molecular motors
    • Pankiv S., Johansen T., FYCO1: linking autophagosomes to microtubule plus end-directing molecular motors Autophagy 2010 6 4 550 552
    • (2010) Autophagy , vol.6 , Issue.4 , pp. 550-552
    • Pankiv, S.1    Johansen, T.2
  • 126
    • 79952348751 scopus 로고    scopus 로고
    • The ubiquitin-binding adaptor proteins p62/SQSTM1 and NDP52 are recruited independently to bacteria-associated microdomains to target Salmonella to the autophagy pathway
    • Cemma M., Kim P. K., Brumell J. H., The ubiquitin-binding adaptor proteins p62/SQSTM1 and NDP52 are recruited independently to bacteria-associated microdomains to target Salmonella to the autophagy pathway Autophagy 2011 7 3 341 345
    • (2011) Autophagy , vol.7 , Issue.3 , pp. 341-345
    • Cemma, M.1    Kim, P.K.2    Brumell, J.H.3
  • 127
    • 66149184398 scopus 로고    scopus 로고
    • Atg26-mediated pexophagy is required for host invasion by the plant pathogenic fungus colletotrichum orbiculare
    • Asakura M., Ninomiya S., Sugimoto M., Oku M., Yamashita S. I., Okuno T., Sakai Y., Takano Y., Atg26-mediated pexophagy is required for host invasion by the plant pathogenic fungus colletotrichum orbiculare Plant Cell 2009 21 4 1291 1304
    • (2009) Plant Cell , vol.21 , Issue.4 , pp. 1291-1304
    • Asakura, M.1    Ninomiya, S.2    Sugimoto, M.3    Oku, M.4    Yamashita, S.I.5    Okuno, T.6    Sakai, Y.7    Takano, Y.8
  • 128
    • 70349640050 scopus 로고    scopus 로고
    • Atg26-mediated pexophagy and fungal phytopathogenicity
    • Takano Y., Asakura M., Sakai Y., Atg26-mediated pexophagy and fungal phytopathogenicity Autophagy 2009 5 7 1041 1042
    • (2009) Autophagy , vol.5 , Issue.7 , pp. 1041-1042
    • Takano, Y.1    Asakura, M.2    Sakai, Y.3
  • 129
    • 41449083862 scopus 로고    scopus 로고
    • Turnover of glycosomes during life-cycle differentiation of Trypanosoma brucei
    • Herman M., Pérez-Morga D., Schtickzelle N., Michels P. A. M., Turnover of glycosomes during life-cycle differentiation of Trypanosoma brucei Autophagy 2008 4 3 294 308 (Pubitemid 351458090)
    • (2008) Autophagy , vol.4 , Issue.3 , pp. 294-308
    • Herman, M.1    Perez-Morga, D.2    Schtickzelle, N.3    Michels, P.A.M.4
  • 130
    • 80053008380 scopus 로고    scopus 로고
    • Glycerol 3-phosphate alters Trypanosoma brucei hexokinase activity in response to environmental change
    • Dodson H. C., Morris M. T., Morris J. C., Glycerol 3-phosphate alters Trypanosoma brucei hexokinase activity in response to environmental change Journal of Biological Chemistry 2011 286 38 33150 33157
    • (2011) Journal of Biological Chemistry , vol.286 , Issue.38 , pp. 33150-33157
    • Dodson, H.C.1    Morris, M.T.2    Morris, J.C.3
  • 131
    • 77649201449 scopus 로고    scopus 로고
    • Autophagy supports Candida glabrata survival during phagocytosis
    • Roetzer A., Gratz N., Kovarik P., Schller C., Autophagy supports Candida glabrata survival during phagocytosis Cellular Microbiology 2010 12 2 199 216
    • (2010) Cellular Microbiology , vol.12 , Issue.2 , pp. 199-216
    • Roetzer, A.1    Gratz, N.2    Kovarik, P.3    Schller, C.4
  • 132
    • 80053143813 scopus 로고    scopus 로고
    • Yeast methylotrophy and autophagy in a methanol-oscillating environment on growing Arabidopsis thaliana leaves
    • Kawaguchi K., Yurimoto H., Oku M., Sakai Y., Yeast methylotrophy and autophagy in a methanol-oscillating environment on growing Arabidopsis thaliana leaves PLoS ONE 2011 6 9
    • (2011) PLoS ONE , vol.6 , Issue.9
    • Kawaguchi, K.1    Yurimoto, H.2    Oku, M.3    Sakai, Y.4
  • 135
    • 79952354376 scopus 로고    scopus 로고
    • Autophagy targeting of Listeria monocytogenes and the bacterial countermeasure
    • Ogawa M., Yoshikawa Y., Mimuro H., Hain T., Chakraborty T., Sasakawa C., Autophagy targeting of Listeria monocytogenes and the bacterial countermeasure Autophagy 2011 7 3 310 314
    • (2011) Autophagy , vol.7 , Issue.3 , pp. 310-314
    • Ogawa, M.1    Yoshikawa, Y.2    Mimuro, H.3    Hain, T.4    Chakraborty, T.5    Sasakawa, C.6
  • 138


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.