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Molecular mechanisms and physiological functions of mitophagy

The EMBO Journal · 2021 · Vol. 40(3) · pp. e104705–e104705
Mashun OnishiKoji YamanoMiyuki SatoNoriyuki MatsudaKoji Okamoto

Abstract

Degradation of mitochondria via a selective form of autophagy, named mitophagy, is a fundamental mechanism conserved from yeast to humans that regulates mitochondrial quality and quantity control. Mitophagy is promoted via specific mitochondrial outer membrane receptors, or ubiquitin molecules conjugated to proteins on the mitochondrial surface leading to the formation of autophagosomes surrounding mitochondria. Mitophagy-mediated elimination of mitochondria plays an important role in many processes including early embryonic development, cell differentiation, inflammation, and apoptosis. Recent advances in analyzing mitophagy in vivo also reveal high rates of steady-state mitochondrial turnover in diverse cell types, highlighting the intracellular housekeeping role of mitophagy. Defects in mitophagy are associated with various pathological conditions such as neurodegeneration, heart failure, cancer, and aging, further underscoring the biological relevance. Here, we review our current molecular understanding of mitophagy, and its physiological implications, and discuss how multiple mitophagy pathways coordinately modulate mitochondrial fitness and populations.

MeSH terms

Autophagy-Related ProteinsAnimalsFungiHumansMitochondriaMitochondrial ProteinsGene Regulatory NetworksMitophagy

Funding

  • Takeda Science Foundation
  • Japan Agency for Medical Research and Development
  • Japan Society for the Promotion of Science
Citations
1,299
FWCI
135.44
field-weighted impact
References
320
Percentile
100%
vs. same field & year
Citations per year
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Molecular mechanisms and physiological functions of mitophagy
The EMBO Journal · 2021 · 1,299 citations
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