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Mitophagy, Mitochondrial Homeostasis, and Cell Fate

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2020.00467

关键词

mitophagy; mitochondrial dynamics; mitochondrial apoptosis; cell fate; mitophagy receptors

资金

  1. National Natural Science Foundation of China [31520103904, 31790404, 91754114]
  2. Ministry of Science and Technology of China [2016YFA0500201]
  3. Chinese Academy of Sciences Key project of Frontier Science [QYZDJSSW-SMC004]

向作者/读者索取更多资源

Mitochondria are highly plastic and dynamic organelles that have graded responses to the changing cellular, environmental, and developmental cues. Mitochondria undergo constant mitochondrial fission and fusion, mitochondrial biogenesis, and mitophagy, which coordinately control mitochondrial morphology, quantity, quality, turnover, and inheritance. Mitophagy is a cellular process that selectively removes the aged and damaged mitochondria via the specific sequestration and engulfment of mitochondria for subsequent lysosomal degradation. It plays a pivotal role in reinstating cellular homeostasis in normal physiology and conditions of stress. Damaged mitochondria may either instigate innate immunity through the overproduction of ROS or the release of mtDNA, or trigger cell death through the release of cytochrome c and other apoptogenic factors when mitochondria damage is beyond repair. Distinct molecular machineries and signaling pathways are found to regulate these mitochondrial dynamics and behaviors. It is less clear how mitochondrial behaviors are coordinated at molecular levels. BCL2 family proteins interact within family members to regulate mitochondrial outer membrane permeabilization and apoptosis. They were also described as global regulators of mitochondrial homeostasis and mitochondrial fate through their interaction with distinct partners including Drp1, mitofusins, PGAM5, and even LC3 that involved mitochondrial dynamics and behaviors. In this review, we summarize recent findings on molecular pathways governing mitophagy and its coordination with other mitochondrial behaviors, which together determine cellular fate.

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