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Structural basis for specific cleavage of Lys6-linked polyubiquitin chains by USP30

机译:USP30对Lys6连接多泛素链的特异性切割的结构基础

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摘要

Parkin ubiquitin (Ub) ligase (also known as PARK2) ubiquitinates damaged mitochondria for their clearance and quality control. USP30 deubiquitinase opposes parkin-mediated Ub-chain formation on mitochondria by preferentially cleaving Lys6-linked Ub chains. Here, we report the crystal structure of zebrafish USP30 in complex with a Lys6-linked diubiquitin (diUb or Ub2) at 1.87-angstrom resolution. The distal Ub-recognition mechanism of USP30 is similar to those of other USP family members, whereas Phe4 and Thr12 of the proximal Ub are recognized by a USP30-specific surface. Structure-based mutagenesis showed that the interface with the proximal Ub is critical for the specific cleavage of Lys6-linked Ub chains, together with the noncanonical catalytic triad composed of Cys-His-Ser. The structural findings presented here reveal a mechanism for Lys6-linkage-specific deubiquitination.
机译:Parkin Ubiquitin(UB)连接酶(也称为Park2)泛素酸蛋白受损的线粒体,用于间隙和质量控制。 USP30氘蛋白酶通过优先切割Lys6连接的UB链,反对线粒体上的Parkin介导的UB链形成。 在这里,我们将斑马鱼USP30的晶体结构以1.87-angstrom分辨率的Lys6连接的二泛蛋白(DIUB或UB2)报告。 USP30的远端UB识别机制类似于其他USP家族成员的UB识别机制,而近端UB的PHE4和THR12由USP30特异性表面识别。 基于结构的诱变表明,具有近端UB的界面对于Lys6连接的UB链的特异性切割至关重要,以及由Cys-His-Ser组成的非共甘露催化三合会。 这里提出的结构结果显示了Lys6-联系特异性脱氮机制。

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