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Publication : Opposing roles for AMPK in regulating distinct mitophagy pathways.

First Author  Longo M Year  2024
Journal  Mol Cell Volume  84
Issue  22 Pages  4350-4367.e9
PubMed ID  39532100 Mgi Jnum  J:359566
Mgi Id  MGI:7788027 Doi  10.1016/j.molcel.2024.10.025
Citation  Longo M, et al. (2024) Opposing roles for AMPK in regulating distinct mitophagy pathways. Mol Cell 84(22):4350-4367.e9
abstractText  Mitophagy degrades damaged mitochondria, but we show here that it can also target functional mitochondria. This latter scenario occurs during programmed mitophagy and involves the mitophagy receptors NIX and BNIP3. Although AMP-activated protein kinase (AMPK), the energy-sensing protein kinase, can influence damaged-induced mitophagy, its role in programmed mitophagy is unclear. We found that AMPK directly inhibits NIX-dependent mitophagy by triggering 14-3-3-mediated sequestration of ULK1, via ULK1 phosphorylation at two sites: Ser556 and an additional identified site, Ser694. By contrast, AMPK activation increases Parkin phosphorylation and enhances the rate of depolarization-induced mitophagy, independently of ULK1. We show that this happens both in cultured cells and tissues in vivo, using the mito-QC mouse model. Our work unveils a mechanism whereby AMPK activation downregulates mitophagy of functional mitochondria but enhances that of dysfunctional/damaged ones.
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