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构象变化的氧化还原折叠酶有助于奇异变形杆菌的铜抗性。

A shape-shifting redox foldase contributes to Proteus mirabilis copper resistance.

机构信息

Institute for Molecular Bioscience, University of Queensland, St Lucia, Queensland 4072, Australia.

School of Chemistry and Molecular Biosciences, University of Queensland, St Lucia, Queensland 4072, Australia.

出版信息

Nat Commun. 2017 Jul 19;8:16065. doi: 10.1038/ncomms16065.

Abstract

Copper resistance is a key virulence trait of the uropathogen Proteus mirabilis. Here we show that P. mirabilis ScsC (PmScsC) contributes to this defence mechanism by enabling swarming in the presence of copper. We also demonstrate that PmScsC is a thioredoxin-like disulfide isomerase but, unlike other characterized proteins in this family, it is trimeric. PmScsC trimerization and its active site cysteine are required for wild-type swarming activity in the presence of copper. Moreover, PmScsC exhibits unprecedented motion as a consequence of a shape-shifting motif linking the catalytic and trimerization domains. The linker accesses strand, loop and helical conformations enabling the sampling of an enormous folding landscape by the catalytic domains. Mutation of the shape-shifting motif abolishes disulfide isomerase activity, as does removal of the trimerization domain, showing that both features are essential to foldase function. More broadly, the shape-shifter peptide has the potential for 'plug and play' application in protein engineering.

摘要

铜抗性是尿路病原体奇异变形杆菌的一个关键毒力特征。在这里,我们表明奇异变形杆菌 ScsC(PmScsC)通过在铜存在的情况下促进群集运动来促进这种防御机制。我们还证明,PmScsC 是一种硫氧还蛋白样二硫键异构酶,但与该家族中其他已鉴定的蛋白质不同,它是三聚体。PmScsC 的三聚化及其活性位点半胱氨酸是在铜存在下野生型群集活性所必需的。此外,PmScsC 表现出前所未有的运动,这是由于连接催化和三聚化结构域的形状转换基序所致。该接头可进入链、环和螺旋构象,从而使催化结构域能够对巨大的折叠景观进行采样。形状转换基序的突变会使二硫键异构酶活性丧失,去除三聚化结构域也会使折叠酶功能丧失,这表明这两个特征对于折叠酶功能都是必不可少的。更广泛地说,形状转换肽在蛋白质工程中有“即插即用”的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7de7/5524982/a767b35b62ef/ncomms16065-f1.jpg

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