AMPK/ULK1-mediated phosphorylation of Parkin ACT domain mediates an early step in mitophagy

AMPK/ULK1 介导的 Parkin ACT 结构域磷酸化介导线粒体自噬的早期步骤

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作者:Chien-Min Hung, Portia S Lombardo, Nazma Malik, Sonja N Brun, Kristina Hellberg, Jeanine L Van Nostrand, Daniel Garcia, Joshua Baumgart, Ken Diffenderfer, John M Asara, Reuben J Shaw

Abstract

The serine/threonine kinase ULK1 mediates autophagy initiation in response to various cellular stresses, and genetic deletion of ULK1 leads to accumulation of damaged mitochondria. Here we identify Parkin, the core ubiquitin ligase in mitophagy, and PARK2 gene product mutated in familial Parkinson's disease, as a ULK1 substrate. Recent studies uncovered a nine residue ("ACT") domain important for Parkin activation, and we demonstrate that AMPK-dependent ULK1 rapidly phosphorylates conserved serine108 in the ACT domain in response to mitochondrial stress. Phosphorylation of Parkin Ser108 occurs maximally within five minutes of mitochondrial damage, unlike activation of PINK1 and TBK1, which is observed thirty to sixty minutes later. Mutation of the ULK1 phosphorylation sites in Parkin, genetic AMPK or ULK1 depletion, or pharmacologic ULK1 inhibition, all lead to delays in Parkin activation and defects in assays of Parkin function and downstream mitophagy events. These findings reveal an unexpected first step in the mitophagy cascade.

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