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Restricted mitochondrial protein acetylation initiates mitochondrial autophagy. | LitMetric

AI Article Synopsis

  • The study investigates the role of mitochondrial acetylation in regulating mitophagy, which is the process of autophagy specific to mitochondria.
  • Knockdown of the protein GCN5L1 led to decreased mitochondrial protein acetylation and increased levels of autophagy-related proteins, suggesting a link between mitochondrial acetylation and mitophagy processes.
  • The findings indicate that deacetylation of mitochondrial proteins triggers mitophagy independently of the known E3-ligase Parkin, highlighting a new regulatory mechanism that could affect mitochondrial health.

Article Abstract

Because nutrient-sensing nuclear and cytosolic acetylation mediates cellular autophagy, we investigated whether mitochondrial acetylation modulates mitochondrial autophagy (mitophagy). Knockdown of GCN5L1, a component of the mitochondrial acetyltransferase machinery, diminished mitochondrial protein acetylation and augmented mitochondrial enrichment of autophagy mediators. This program was disrupted by SIRT3 knockdown. Chronic GCN5L1 depletion increased mitochondrial turnover and reduced mitochondrial protein content and/or mass. In parallel, mitochondria showed blunted respiration and enhanced 'stress-resilience'. Genetic disruption of autophagy mediators Atg5 and p62 (also known as SQSTM1), as well as GCN5L1 reconstitution, abolished deacetylation-induced mitochondrial autophagy. Interestingly, this program is independent of the mitophagy E3-ligase Parkin (also known as PARK2). Taken together, these data suggest that deacetylation of mitochondrial proteins initiates mitochondrial autophagy in a canonical autophagy-mediator-dependent program and shows that modulation of this regulatory program has ameliorative mitochondrial homeostatic effects.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4074296PMC
http://dx.doi.org/10.1242/jcs.131300DOI Listing

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