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The BCL2L1 and PGAM5 axis defines hypoxia-induced receptor-mediated mitophagy.


ABSTRACT: Receptor-mediated mitophagy is one of the major mechanisms of mitochondrial quality control essential for cell survival. We previously have identified FUNDC1 as a mitophagy receptor for selectively removing damaged mitochondria in mammalian systems. A critical unanswered question is how receptor-mediated mitophagy is regulated in response to cellular and environmental cues. Here, we report the striking finding that BCL2L1/Bcl-xL, but not BCL2, suppresses mitophagy mediated by FUNDC1 through its BH3 domain. Mechanistically, we demonstrate that BCL2L1, but not BCL2, interacts with and inhibits PGAM5, a mitochondrially localized phosphatase, to prevent the dephosphorylation of FUNDC1 at serine 13 (Ser13), which activates hypoxia-induced mitophagy. Our results showed that the BCL2L1-PGAM5-FUNDC1 axis is critical for receptor-mediated mitophagy in response to hypoxia and that BCL2L1 possesses unique functions distinct from BCL2.

SUBMITTER: Wu H 

PROVIDER: S-EPMC4198357 | biostudies-literature | 2014 Oct

REPOSITORIES: biostudies-literature

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The BCL2L1 and PGAM5 axis defines hypoxia-induced receptor-mediated mitophagy.

Wu Hao H   Xue Danfeng D   Chen Guo G   Han Zhe Z   Huang Li L   Zhu Chongzhuo C   Wang Xiaohui X   Jin Haijing H   Wang Jun J   Zhu Yushan Y   Liu Lei L   Chen Quan Q  

Autophagy 20140717 10


Receptor-mediated mitophagy is one of the major mechanisms of mitochondrial quality control essential for cell survival. We previously have identified FUNDC1 as a mitophagy receptor for selectively removing damaged mitochondria in mammalian systems. A critical unanswered question is how receptor-mediated mitophagy is regulated in response to cellular and environmental cues. Here, we report the striking finding that BCL2L1/Bcl-xL, but not BCL2, suppresses mitophagy mediated by FUNDC1 through its  ...[more]

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