线粒体
长寿
粒体自噬
酵母
生物
液泡
细胞生物学
热卡限制
生物化学
平衡
细胞器
酿酒酵母
溶酶体
自噬
内分泌学
遗传学
细胞质
细胞凋亡
酶
作者
Vincent Richard,Anna Leonov,Adam Beach,Michelle T. Burstein,Olivia Koupaki,Alejandra Gomez-Perez,Sean Levy,Lukas Pluska,Sevan Mattie,Rami Rafesh,Tatiana Iouk,Sara Sheibani,Michael T. Greenwood,Hojatollah Vali,Vladimir I. Titorenko
出处
期刊:Aging
[Impact Journals LLC]
日期:2013-03-30
卷期号:5 (4): 234-269
被引量:60
标识
DOI:10.18632/aging.100547
摘要
Macromitophagy controls mitochondrial quality and quantity. It involves the sequestration of dysfunctional or excessive mitochondria within double-membrane autophagosomes, which then fuse with the vacuole/lysosome to deliver these mitochondria for degradation. To investigate a physiological role of macromitophagy in yeast, we examined how theatg32Δ-dependent mutational block of this process influences the chronological lifespan of cells grown in a nutrient-rich medium containing low (0.2%) concentration of glucose. Under these longevity-extending conditions of caloric restriction (CR) yeast cells are not starving. We also assessed a role of macromitophagy in lifespan extension by lithocholic acid (LCA), a bile acid that prolongs yeast longevity under CR conditions. Our findings imply that macromitophagy is a longevity assurance process underlying the synergistic beneficial effects of CR and LCA on yeast lifespan. Our analysis of how the atg32Δ mutation influences mitochondrial morphology, composition and function revealed that macromitophagy is required to maintain a network of healthy mitochondria. Our comparative analysis of the membrane lipidomes of organelles purified from wild-type and atg32Δ cells revealed that macromitophagy is required for maintaining cellular lipid homeostasis. We concluded that macromitophagy defines yeast longevity by modulating vital cellular processes inside and outside of mitochondria.
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