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PINK1/Parkin 通路中前馈控制的结构基础。

Structural basis for feedforward control in the PINK1/Parkin pathway.

机构信息

Department of Biochemistry and Centre de Recherche en Biologie Structurale, McGill University, Montreal, QC, Canada.

McGill Parkinson Program, Neurodegenerative Diseases Group, Department of Neurology and Neurosurgery, Montreal Neurological Institute, McGill University, Montreal, QC, Canada.

出版信息

EMBO J. 2022 Jun 14;41(12):e109460. doi: 10.15252/embj.2021109460. Epub 2022 May 2.

Abstract

PINK1 and parkin constitute a mitochondrial quality control system mutated in Parkinson's disease. PINK1, a kinase, phosphorylates ubiquitin to recruit parkin, an E3 ubiquitin ligase, to mitochondria. PINK1 controls both parkin localization and activity through phosphorylation of both ubiquitin and the ubiquitin-like (Ubl) domain of parkin. Here, we observed that phospho-ubiquitin can bind to two distinct sites on parkin, a high-affinity site on RING1 that controls parkin localization and a low-affinity site on RING0 that releases parkin autoinhibition. Surprisingly, ubiquitin vinyl sulfone assays, ITC, and NMR titrations showed that the RING0 site has higher affinity for phospho-ubiquitin than phosphorylated Ubl in trans. We observed parkin activation by micromolar concentrations of tetra-phospho-ubiquitin chains that mimic mitochondria bearing multiple phosphorylated ubiquitins. A chimeric form of parkin with the Ubl domain replaced by ubiquitin was readily activated by PINK1 phosphorylation. In all cases, mutation of the binding site on RING0 abolished parkin activation. The feedforward mechanism of parkin activation confers robustness and rapidity to the PINK1-parkin pathway and likely represents an intermediate step in its evolutionary development.

摘要

PINK1 和 parkin 构成了帕金森病中突变的线粒体质量控制系统。PINK1 是一种激酶,可磷酸化泛素以募集 E3 泛素连接酶 parkin 到线粒体。PINK1 通过磷酸化泛素和 parkin 的泛素样 (Ubl) 结构域来控制 parkin 的定位和活性。在这里,我们观察到磷酸泛素可以结合到 parkin 上的两个不同位点,一个是控制 parkin 定位的 RING1 上的高亲和力位点,另一个是 RING0 上的低亲和力位点,该位点释放 parkin 的自身抑制。令人惊讶的是,通过泛素乙烯砜测定法、ITC 和 NMR 滴定实验,我们发现 RING0 位点对磷酸泛素的亲和力高于反式磷酸化 Ubl。我们观察到模拟带有多个磷酸化泛素的线粒体的四磷酸泛素链以微摩尔浓度激活 parkin。用泛素取代 Ubl 结构域的 parkin 嵌合形式很容易被 PINK1 磷酸化激活。在所有情况下,RING0 结合位点的突变都消除了 parkin 的激活。Parkin 激活的前馈机制赋予了 PINK1-parkin 途径的稳健性和快速性,并且可能代表其进化发展的中间步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c2b/9194792/fe42e2f54636/EMBJ-41-e109460-g007.jpg

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