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The Atg8 Conjugation System Is Indispensable for Proper Development of Autophagic Isolation Membranes in Mice

Molecular Biology of the Cell · 2008 · Vol. 19(11) · pp. 4762–4775
Yu‐shin SouSatoshi WaguriJ. IwataTakashi UenoTsutomu FujimuraTaichi HaraNaoki SawadaAkane YamadaNoboru MizushimaYasuo UchiyamaEiki KominamiKeiji TanakaMasaaki Komatsu

Abstract

Autophagy is an evolutionarily conserved bulk-protein degradation pathway in which isolation membranes engulf the cytoplasmic constituents, and the resulting autophagosomes transport them to lysosomes. Two ubiquitin-like conjugation systems, termed Atg12 and Atg8 systems, are essential for autophagosomal formation. In addition to the pathophysiological roles of autophagy in mammals, recent mouse genetic studies have shown that the Atg8 system is predominantly under the control of the Atg12 system. To clarify the roles of the Atg8 system in mammalian autophagosome formation, we generated mice deficient in Atg3 gene encoding specific E2 enzyme for Atg8. Atg3-deficient mice were born but died within 1 d after birth. Conjugate formation of mammalian Atg8 homologues was completely defective in the mutant mice. Intriguingly, Atg12-Atg5 conjugation was markedly decreased in Atg3-deficient mice, and its dissociation from isolation membranes was significantly delayed. Furthermore, loss of Atg3 was associated with defective process of autophagosome formation, including the elongation and complete closure of the isolation membranes, resulting in malformation of the autophagosomes. The results indicate the essential role of the Atg8 system in the proper development of autophagic isolation membranes in mice.

Autophagy in Disease and TherapyCalcium signaling and nucleotide metabolismToxoplasma gondii Research StudiesATG8ATG12BiologyAutophagyCell biologyATG5AutophagosomeMembraneATG16L1Phagosome

MeSH terms

Autophagy-Related Protein 5Autophagy-Related Protein 12AnimalsAutophagyCell MembraneFibroblastsLysosomesMicrotubule-Associated ProteinsPhagosomesPhenotypeProteinsUbiquitinsMice, KnockoutHepatocytesUbiquitin-Conjugating Enzymes

Funding

  • Tokyo Medical and Dental University
  • Japan Science and Technology Agency
Citations
465
FWCI
18.25
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References
46
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100%
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