首页> 美国卫生研究院文献>Aging (Albany NY) >Macromitophagy is a longevity assurance process that in chronologically aging yeast limited in calorie supply sustains functional mitochondria and maintains cellular lipid homeostasis
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Macromitophagy is a longevity assurance process that in chronologically aging yeast limited in calorie supply sustains functional mitochondria and maintains cellular lipid homeostasis

机译:巨噬细胞是长寿的保证过程在按时间顺序老化的酵母中受热量限制的酵母维持功能性线粒体并维持细胞脂质稳态

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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 the atg32Δ-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.
机译:巨噬细胞控制线粒体的质量和数量。它涉及将功能异常或过量的线粒体隔离在双膜自噬体中,然后将其与液泡/溶酶体融合以递送这些线粒体进行降解。为了研究大噬菌体在酵母中的生理作用,我们研究了此过程的atg32Δ依赖性突变区如何影响在低浓度(0.2%)葡萄糖的营养丰富培养基中生长的细胞的时间寿命。在热量延长(CR)的这些延长寿命的条件下,酵母细胞不会挨饿。我们还通过胆石酸(LCA)评估了巨噬细胞在寿命延长中的作用,这种胆汁酸可在CR条件下延长酵母的寿命。我们的研究结果表明,巨噬细胞是一个长寿的保证过程,其基础是CR和LCA对酵母寿命的协同有益作用。我们对atg32Δ突变如何影响线粒体形态,组成和功能的分析表明,需要巨噬细胞来维持健康的线粒体网络。我们对从野生型和atg32Δ细胞纯化的细胞器的膜脂质组进行的比较分析表明,维持细胞脂质稳态需要巨噬细胞。我们得出的结论是,大有丝分裂通过调节线粒体内外的重要细胞过程来定义酵母的寿命。

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