粒体自噬
MFN2型
帕金
品脱1
线粒体
VDAC1型
细胞生物学
泛素连接酶
自噬
泛素
生物
第一季
化学
线粒体融合
生物化学
细菌外膜
细胞凋亡
线粒体DNA
医学
疾病
病理
大肠杆菌
基因
帕金森病
作者
Gian‐Luca McLelland,Thomas Goiran,Wei Yi,Geneviève Dorval,Carol X Chen,Nadine Lauinger,Andrea I. Krahn,Sepideh Valimehr,Aleksandar Raković,Isabelle Rouiller,Thomas M. Durcan,Jean‐François Trempe,Edward A. Fon
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2018-04-20
卷期号:7
被引量:319
摘要
Despite their importance as signaling hubs, the function of mitochondria-ER contact sites in mitochondrial quality control pathways remains unexplored. Here we describe a mechanism by which Mfn2, a mitochondria-ER tether, gates the autophagic turnover of mitochondria by PINK1 and parkin. Mitochondria-ER appositions are destroyed during mitophagy, and reducing mitochondria-ER contacts increases the rate of mitochondrial degradation. Mechanistically, parkin/PINK1 catalyze a rapid burst of Mfn2 phosphoubiquitination to trigger p97-dependent disassembly of Mfn2 complexes from the outer mitochondrial membrane, dissociating mitochondria from the ER. We additionally demonstrate that a major portion of the facilitatory effect of p97 on mitophagy is epistatic to Mfn2 and promotes the availability of other parkin substrates such as VDAC1. Finally, we reconstitute the action of these factors on Mfn2 and VDAC1 ubiquitination in a cell-free assay. We show that mitochondria-ER tethering suppresses mitophagy and describe a parkin-/PINK1-dependent mechanism that regulates the destruction of mitochondria-ER contact sites.
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