2026/04/13 by Riccardo Babic, Leon Lucya, C. Reiter +6 · 1 voice
Medicine · Biochemistry, Genetics and Molecular Biology · #Autophagy in Disease and Therapy #Mitochondrial Function and Pathology #Cell death mechanisms and regulation
paper · doi:10.1242/jcs.264577
Mitophagy - the selective degradation of damaged mitochondria - preserves mitochondrial quality; yet, how mitochondrial fission is coordinated with autophagy initiation remains unclear. Here, we identified the mitochondrial outer membrane protein MTFR1L as a key component of mitophagy initiation hubs after using a synthetic FKBP-FRB system to tether ULK1 kinase to mitochondria independently of damage. We found that MTFR1L was enriched at ULK1 foci together with additional fission factors, and constitutive mitochondrial targeting of MTFR1L shifted mitochondrial morphology towards fragmentation. MTFR1L depletion decreased respiratory capacity, elevated apoptosis and impaired mitophagy flux. Upon mitophagy induction, MTFR1L was phosphorylated in a ULK1 kinase-dependent manner and reciprocally modulated ULK1 activity, establishing a feedback loop. Moreover, MTFR1L was required for proper ATG13 stability. These findings position MTFR1L as a critical link between mitochondrial fission and the autophagy machinery, coordinating mitophagy initiation and cell survival.