FBXL4 suppresses mitophagy by restricting the accumulation of NIX and BNIP3 mitophagy receptors

FBXL4通过限制NIX和BNIP3线粒体自噬受体的积累来抑制线粒体自噬。

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作者:Giang Thanh Nguyen-Dien # ,Keri-Lyn Kozul # ,Yi Cui # ,Brendan Townsend ,Prajakta Gosavi Kulkarni ,Soo Siang Ooi ,Antonio Marzio ,Nissa Carrodus ,Steven Zuryn ,Michele Pagano ,Robert G Parton ,Michael Lazarou ,S Sean Millard ,Robert W Taylor ,Brett M Collins ,Mathew Jk Jones ,Julia K Pagan

Abstract

To maintain both mitochondrial quality and quantity, cells selectively remove damaged or excessive mitochondria through mitophagy, which is a specialised form of autophagy. Mitophagy is induced in response to diverse conditions, including hypoxia, cellular differentiation and mitochondrial damage. However, the mechanisms that govern the removal of specific dysfunctional mitochondria under steady-state conditions to fine-tune mitochondrial content are not well understood. Here, we report that SCFFBXL4 , an SKP1/CUL1/F-box protein ubiquitin ligase complex, localises to the mitochondrial outer membrane in unstressed cells and mediates the constitutive ubiquitylation and degradation of the mitophagy receptors NIX and BNIP3 to suppress basal levels of mitophagy. We demonstrate that the pathogenic variants of FBXL4 that cause encephalopathic mtDNA depletion syndrome (MTDPS13) do not efficiently interact with the core SCF ubiquitin ligase machinery or mediate the degradation of NIX and BNIP3. Thus, we reveal a molecular mechanism whereby FBXL4 actively suppresses mitophagy by preventing NIX and BNIP3 accumulation. We propose that the dysregulation of NIX and BNIP3 turnover causes excessive basal mitophagy in FBXL4-associated mtDNA depletion syndrome.

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