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Mfn2 选择性定位于 PINK1 附近,使其在线粒体上优先被 Parkin 泛素化。

Selective localization of Mfn2 near PINK1 enables its preferential ubiquitination by Parkin on mitochondria.

机构信息

Department of Pharmacology and Therapeutics, McGill University, Montréal, Québec, Canada.

Centre de Recherche en Biologie Structurale, McGill University, Montréal, Québec, Canada.

出版信息

Open Biol. 2022 Jan;12(1):210255. doi: 10.1098/rsob.210255. Epub 2022 Jan 19.

Abstract

Mutations in Parkin and PINK1 cause early-onset familial Parkinson's disease. Parkin is a RING-In-Between-RING E3 ligase that transfers ubiquitin from an E2 enzyme to a substrate in two steps: (i) thioester intermediate formation on Parkin and (ii) acyl transfer to a substrate lysine. The process is triggered by PINK1, which phosphorylates ubiquitin on damaged mitochondria, which in turn recruits and activates Parkin. This leads to the ubiquitination of outer mitochondrial membrane proteins and clearance of the organelle. While the targets of Parkin on mitochondria are known, the factors determining substrate selectivity remain unclear. To investigate this, we examined how Parkin catalyses ubiquitin transfer to substrates. We found that His433 in the RING2 domain contributes to the catalysis of acyl transfer. In cells, the mutation of His433 impairs mitophagy. In vitro ubiquitination assays with isolated mitochondria show that Mfn2 is a kinetically preferred substrate. Using proximity-ligation assays, we show that Mfn2 specifically co-localizes with PINK1 and phospho-ubiquitin (pUb) in U2OS cells upon mitochondrial depolarization. We propose a model whereby ubiquitination of Mfn2 is efficient by virtue of its localization near PINK1, which leads to the recruitment and activation of Parkin via pUb at these sites.

摘要

Parkin 和 PINK1 的突变会导致早发性家族性帕金森病。Parkin 是一种 RING-In-Between-RING E3 连接酶,它通过两步将泛素从 E2 酶转移到底物上:(i)Parkin 上形成硫酯中间体,(ii)酰基转移到底物赖氨酸上。该过程由 PINK1 触发,PINK1 在受损的线粒体上磷酸化泛素,进而招募并激活 Parkin。这导致外膜蛋白的泛素化和细胞器的清除。虽然已知 Parkin 在线粒体上的靶标,但决定底物选择性的因素仍不清楚。为了研究这一点,我们研究了 Parkin 如何催化泛素转移到底物上。我们发现 RING2 结构域中的 His433 有助于酰基转移的催化。在细胞中,His433 的突变会损害线粒体自噬。在使用分离的线粒体进行的体外泛素化测定中,我们发现 Mfn2 是一种动力学上优先的底物。通过接近连接测定,我们表明在 U2OS 细胞中线粒体去极化时,Mfn2 特异性地与 PINK1 和磷酸泛素(pUb)共定位。我们提出了一个模型,即由于 Mfn2 靠近 PINK1 而使其定位,这导致这些部位的 pUb 招募和激活 Parkin,从而使 Mfn2 的泛素化效率提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc7c/8767196/057a43fac4fc/rsob210255f01.jpg

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