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Parkin is recruited selectively to impaired mitochondria and promotes their autophagy

The Journal of Cell Biology · 2008 · Vol. 183(5) · pp. 795–803
Derek P. NarendraAtsushi TanakaDer‐Fen SuenRichard J. Youle

Abstract

Loss-of-function mutations in Park2, the gene coding for the ubiquitin ligase Parkin, are a significant cause of early onset Parkinson's disease. Although the role of Parkin in neuron maintenance is unknown, recent work has linked Parkin to the regulation of mitochondria. Its loss is associated with swollen mitochondria and muscle degeneration in Drosophila melanogaster, as well as mitochondrial dysfunction and increased susceptibility to mitochondrial toxins in other species. Here, we show that Parkin is selectively recruited to dysfunctional mitochondria with low membrane potential in mammalian cells. After recruitment, Parkin mediates the engulfment of mitochondria by autophagosomes and the selective elimination of impaired mitochondria. These results show that Parkin promotes autophagy of damaged mitochondria and implicate a failure to eliminate dysfunctional mitochondria in the pathogenesis of Parkinson's disease.

Autophagy in Disease and TherapyParkinson's Disease Mechanisms and TreatmentsMitochondrial Function and PathologyParkinMitochondrionBiologyAutophagyMitophagyCell biologyUbiquitin ligaseDrosophila melanogasterUbiquitinPINK1

MeSH terms

AnimalsAutophagyFibroblastsHeLa CellsHumansMicrotubule-Associated ProteinsMitochondriaNeuronsParkinson DiseaseRecombinant Fusion ProteinsTime FactorsTransfectionUncoupling AgentsMice, KnockoutGTP Phosphohydrolases

Funding

  • National Institutes of Health
  • Japan Society for the Promotion of Science
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