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Dev Cell ; 56(14): 2029-2042.e5, 2021 07 26.
Article in English | MEDLINE | ID: mdl-34171288

ABSTRACT

Mitochondria are critical metabolic and signaling hubs, and dysregulated mitochondrial homeostasis is implicated in many diseases. Degradation of damaged mitochondria by selective GABARAP/LC3-dependent macro-autophagy (mitophagy) is critical for maintaining mitochondrial homeostasis. To identify alternate forms of mitochondrial quality control that functionally compensate if mitophagy is inactive, we selected for autophagy-dependent cancer cells that survived loss of LC3-dependent autophagosome formation caused by inactivation of ATG7 or RB1CC1/FIP200. We discovered rare surviving autophagy-deficient clones that adapted to maintain mitochondrial homeostasis after gene inactivation and identified two enhanced mechanisms affecting mitochondria including mitochondrial dynamics and mitochondrial-derived vesicles (MDVs). To further understand these mechanisms, we quantified MDVs via flow cytometry and confirmed an SNX9-mediated mechanism necessary for flux of MDVs to lysosomes. We show that the autophagy-dependent cells acquire unique dependencies on these processes, indicating that these alternate forms of mitochondrial homeostasis compensate for loss of autophagy to maintain mitochondrial health.


Subject(s)
Autophagy , Microtubule-Associated Proteins/metabolism , Mitochondria/pathology , Mitochondrial Dynamics , Mitophagy , Sorting Nexins/metabolism , Transport Vesicles/physiology , Autophagy-Related Protein 7/genetics , Autophagy-Related Protein 7/metabolism , Autophagy-Related Proteins/genetics , Autophagy-Related Proteins/metabolism , Endosomes/metabolism , Humans , Lysosomes , Microtubule-Associated Proteins/genetics , Mitochondria/metabolism , Sorting Nexins/genetics
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