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Active site alanine mutations convert deubiquitinases into high‐affinity ubiquitin‐binding proteins

机译:活性位点丙氨酸突变将去泛素酶转化为高亲和力的泛素结合蛋白

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摘要

A common strategy for exploring the biological roles of deubiquitinating enzymes (DUBs) in different pathways is to study the effects of replacing the wild‐type DUB with a catalytically inactive mutant in cells. We report here that a commonly studied DUB mutation, in which the catalytic cysteine is replaced with alanine, can dramatically increase the affinity of some DUBs for ubiquitin. Overexpression of these tight‐binding mutants thus has the potential to sequester cellular pools of monoubiquitin and ubiquitin chains. As a result, cells expressing these mutants may display unpredictable dominant negative physiological effects that are not related to loss of DUB activity. The structure of the SAGA DUB module bound to free ubiquitin reveals the structural basis for the 30‐fold higher affinity of Ubp8C146A for ubiquitin. We show that an alternative option, substituting the active site cysteine with arginine, can inactivate DUBs while also decreasing the affinity for ubiquitin.
机译:探索去泛素化酶(DUBs)在不同途径中的生物学作用的常见策略是研究在细胞中用催化失活突变体替代野生型DUB的作用。我们在这里报告,一个常用的DUB突变(其中催化半胱氨酸被丙氨酸替代)可以显着增加某些DUB对泛素的亲和力。因此,这些紧密结合的突变体的过表达可能会隔离单泛素和泛素链的细胞池。结果,表达这些突变体的细胞可能显示出不可预知的显性负性生理效应,这与DUB活性的丧失无关。与游离泛素结合的SAGA DUB模块的结构揭示了Ubp8 C146A 对泛素的30倍高亲和力的结构基础。我们表明,另一种选择,用精氨酸替代活性位点的半胱氨酸,可以使DUB失活,同时也降低了对泛素的亲和力。

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