帕金
泛素连接酶
粒体自噬
生物
泛素
品脱1
细胞生物学
线粒体
功能(生物学)
生物化学
自噬
帕金森病
医学
细胞凋亡
疾病
病理
基因
作者
Alban Ordureau,João A. Paulo,Jiuchun Zhang,Heeseon An,Kirby N. Swatek,Joe R. Cannon,Qiaoqiao Wan,David Komander,J. Wade Harper
出处
期刊:Molecular Cell
[Elsevier]
日期:2020-03-01
卷期号:77 (5): 1124-1142.e10
被引量:158
标识
DOI:10.1016/j.molcel.2019.11.013
摘要
The ubiquitin ligase Parkin, protein kinase PINK1, USP30 deubiquitylase, and p97 segregase function together to regulate turnover of damaged mitochondria via mitophagy, but our mechanistic understanding in neurons is limited. Here, we combine induced neurons (iNeurons) derived from embryonic stem cells with quantitative proteomics to reveal the dynamics and specificity of Parkin-dependent ubiquitylation under endogenous expression conditions. Targets showing elevated ubiquitylation in USP30-/- iNeurons are concentrated in components of the mitochondrial translocon, and the ubiquitylation kinetics of the vast majority of Parkin targets are unaffected, correlating with a modest kinetic acceleration in accumulation of pS65-Ub and mitophagic flux upon mitochondrial depolarization without USP30. Basally, ubiquitylated translocon import substrates accumulate, suggesting a quality control function for USP30. p97 was dispensable for Parkin ligase activity in iNeurons. This work provides an unprecedented quantitative landscape of the Parkin-modified ubiquitylome in iNeurons and reveals the underlying specificity of central regulatory elements in the pathway.
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