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沙门氏菌效应蛋白SpvD是一种半胱氨酸水解酶,具有影响催化活性、免疫反应抑制和细菌毒力的血清型特异性多态性。

The Salmonella Effector SpvD Is a Cysteine Hydrolase with a Serovar-specific Polymorphism Influencing Catalytic Activity, Suppression of Immune Responses, and Bacterial Virulence.

作者信息

Grabe Grzegorz J, Zhang Yue, Przydacz Michal, Rolhion Nathalie, Yang Yi, Pruneda Jonathan N, Komander David, Holden David W, Hare Stephen A

机构信息

From the Section of Microbiology and.

Department of Life Sciences, MRC Centre for Molecular Bacteriology and Infection, Imperial College London, London SW7 2AZ, United Kingdom and.

出版信息

J Biol Chem. 2016 Dec 9;291(50):25853-25863. doi: 10.1074/jbc.M116.752782. Epub 2016 Oct 27.

Abstract

Many bacterial pathogens secrete virulence (effector) proteins that interfere with immune signaling in their host. SpvD is a Salmonella enterica effector protein that we previously demonstrated to negatively regulate the NF-κB signaling pathway and promote virulence of S. enterica serovar Typhimurium in mice. To shed light on the mechanistic basis for these observations, we determined the crystal structure of SpvD and show that it adopts a papain-like fold with a characteristic cysteine-histidine-aspartate catalytic triad comprising Cys-73, His-162, and Asp-182. SpvD possessed an in vitro deconjugative activity on aminoluciferin-linked peptide and protein substrates in vitro A C73A mutation abolished SpvD activity, demonstrating that an intact catalytic triad is required for its function. Taken together, these results strongly suggest that SpvD is a cysteine protease. The amino acid sequence of SpvD is highly conserved across different S. enterica serovars, but residue 161, located close to the catalytic triad, is variable, with serovar Typhimurium SpvD having an arginine and serovar Enteritidis a glycine at this position. This variation affected hydrolytic activity of the enzyme on artificial substrates and can be explained by substrate accessibility to the active site. Interestingly, the SpvD variant more potently inhibited NF-κB-mediated immune responses in cells in vitro and increased virulence of serovar Typhimurium in mice. In summary, our results explain the biochemical basis for the effect of virulence protein SpvD and demonstrate that a single amino acid polymorphism can affect the overall virulence of a bacterial pathogen in its host.

摘要

许多细菌病原体分泌毒力(效应)蛋白,这些蛋白会干扰其宿主中的免疫信号传导。SpvD是一种肠炎沙门氏菌效应蛋白,我们之前证明它会负向调节NF-κB信号通路,并促进肠炎沙门氏菌鼠伤寒血清型在小鼠中的毒力。为了阐明这些观察结果的机制基础,我们确定了SpvD的晶体结构,并表明它具有木瓜蛋白酶样折叠结构,带有由Cys-73、His-162和Asp-182组成的特征性半胱氨酸-组氨酸-天冬氨酸催化三联体。SpvD在体外对氨基荧光素连接的肽和蛋白质底物具有脱共轭活性。C73A突变消除了SpvD的活性,表明完整的催化三联体是其功能所必需的。综上所述,这些结果强烈表明SpvD是一种半胱氨酸蛋白酶。SpvD的氨基酸序列在不同的肠炎沙门氏菌血清型中高度保守,但位于催化三联体附近的第161位残基是可变的,鼠伤寒血清型SpvD在该位置有一个精氨酸,肠炎血清型在该位置有一个甘氨酸。这种变异影响了该酶对人工底物的水解活性,并且可以通过底物对活性位点的可及性来解释。有趣的是,SpvD变体在体外更有效地抑制细胞中NF-κB介导的免疫反应,并增加了鼠伤寒血清型在小鼠中的毒力。总之,我们的结果解释了毒力蛋白SpvD作用的生化基础,并证明单个氨基酸多态性可以影响细菌病原体在其宿主中的整体毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6be/5207060/4319b5513fea/zbc0011757890001.jpg

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