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PINK1进行高效磷酸化需要一种不可见的泛素构象。

An invisible ubiquitin conformation is required for efficient phosphorylation by PINK1.

作者信息

Gladkova Christina, Schubert Alexander F, Wagstaff Jane L, Pruneda Jonathan N, Freund Stefan Mv, Komander David

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge, UK.

Medical Research Council Laboratory of Molecular Biology, Cambridge, UK

出版信息

EMBO J. 2017 Dec 15;36(24):3555-3572. doi: 10.15252/embj.201797876. Epub 2017 Nov 13.

Abstract

The Ser/Thr protein kinase PINK1 phosphorylates the well-folded, globular protein ubiquitin (Ub) at a relatively protected site, Ser65. We previously showed that Ser65 phosphorylation results in a conformational change in which Ub adopts a dynamic equilibrium between the known, common Ub conformation and a distinct, second conformation wherein the last β-strand is retracted to extend the Ser65 loop and shorten the C-terminal tail. We show using chemical exchange saturation transfer (CEST) nuclear magnetic resonance experiments that a similar, C-terminally retracted (Ub-CR) conformation also exists at low population in wild-type Ub. Point mutations in the moving β5 and neighbouring β-strands shift the Ub/Ub-CR equilibrium. This enabled functional studies of the two states, and we show that while the Ub-CR conformation is defective for conjugation, it demonstrates improved binding to PINK1 through its extended Ser65 loop, and is a superior PINK1 substrate. Together our data suggest that PINK1 utilises a lowly populated yet more suitable Ub-CR conformation of Ub for efficient phosphorylation. Our findings could be relevant for many kinases that phosphorylate residues in folded protein domains.

摘要

丝氨酸/苏氨酸蛋白激酶PINK1在相对受保护的位点Ser65对折叠良好的球状蛋白泛素(Ub)进行磷酸化。我们之前表明,Ser65磷酸化会导致构象变化,其中Ub在已知的常见Ub构象和一种独特的第二种构象之间形成动态平衡,在第二种构象中,最后一条β链回缩以延伸Ser65环并缩短C末端尾巴。我们使用化学交换饱和转移(CEST)核磁共振实验表明,在野生型Ub中也存在低丰度的类似C末端回缩(Ub-CR)构象。移动的β5和相邻β链中的点突变会改变Ub/Ub-CR平衡。这使得对这两种状态进行功能研究成为可能,并且我们表明,虽然Ub-CR构象在结合方面存在缺陷,但它通过其延伸的Ser65环显示出与PINK1的结合改善,并且是一种更优的PINK1底物。我们的数据共同表明,PINK1利用低丰度但更合适的Ub-CR构象的Ub进行高效磷酸化。我们的发现可能与许多在折叠蛋白结构域中磷酸化残基的激酶相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9c5/5730886/cb37774dfc13/EMBJ-36-3555-g003.jpg

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