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Impairment of starvation-induced and constitutive autophagy in <i>Atg7</i> -deficient mice

The Journal of Cell Biology · 2005 · Vol. 169(3) · pp. 425–434
Masaaki KomatsuSatoshi WaguriTakashi UenoJunichi IwataShigeo MurataIsei TanidaJunji EzakiNoboru MizushimaYoshinori OhsumiYasuo UchiyamaEiki KominamiKeiji TanakaTomoki Chiba

Abstract

Autophagy is a membrane-trafficking mechanism that delivers cytoplasmic constituents into the lysosome/vacuole for bulk protein degradation. This mechanism is involved in the preservation of nutrients under starvation condition as well as the normal turnover of cytoplasmic component. Aberrant autophagy has been reported in several neurodegenerative disorders, hepatitis, and myopathies. Here, we generated conditional knockout mice of Atg7, an essential gene for autophagy in yeast. Atg7 was essential for ATG conjugation systems and autophagosome formation, amino acid supply in neonates, and starvation-induced bulk degradation of proteins and organelles in mice. Furthermore, Atg7 deficiency led to multiple cellular abnormalities, such as appearance of concentric membranous structure and deformed mitochondria, and accumulation of ubiquitin-positive aggregates. Our results indicate the important role of autophagy in starvation response and the quality control of proteins and organelles in quiescent cells.

Autophagy in Disease and TherapyEndoplasmic Reticulum Stress and DiseaseToxoplasma gondii Research StudiesAutophagyBiologyVacuoleCell biologyLysosomeCytoplasmOrganelleAutophagosomeMitochondrionStarvation

MeSH terms

Autophagy-Related Protein 7AnimalsAnimals, NewbornAutophagyCell LineInclusion BodiesHepatomegalyIntracellular MembranesLiverMicrotubule-Associated ProteinsMitochondriaPhenotypeStarvationOrganellesMice, Knockout

Funding

  • Ministry of Education, Culture, Sports, Science and Technology
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