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Structural basis for the recognition of Ubc13 by the Shigella flexneri effector ospi

机译:弗氏志贺氏菌效应物ospi识别Ubc13的结构基础

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Ubc13 is a ubiquitin-conjugating enzyme that plays a key role in the nuclear factor-κB signal transduction pathway in human diseases. The Shigella flexneri effector OspI affects inflammatory responses by catalyzing the deamidation of a specific glutamine residue at position 100 in Ubc13 during infection. This modification prevents the activation of the TNF (tumor necrosis factor) receptor-associated factor 6, leading to modulation of the diacylglycerol-CBM (CARD-Bcl10-Malt1) complex-TNF receptor-associated factor 6-nuclear factor-κB signaling pathway. To elucidate the structural basis of OspI function, we determined the crystal structures of the catalytically inert OspI C62A mutant and its complex with Ubc13 at resolutions of 3.0 and 2.96 ?, respectively. The structure of the OspI-Ubc13 complex revealed that the interacting surfaces between OspI and Ubc13 are a hydrophobic surface and a complementary charged surface. Furthermore, we predict that the complementary charged surface of OspI plays a key role in substrate specificity determination.
机译:Ubc13是一种泛素结合酶,在人类疾病的核因子-κB信号转导途径中起关键作用。弗氏志贺氏菌效应物OspI通过在感染过程中催化Ubc13中100位特定谷氨酰胺残基的脱酰胺作用来影响炎症反应。此修饰可防止TNF(肿瘤坏死因子)受体相关因子6的激活,从而导致二酰基甘油CBM(CARD-Bcl10-Malt1)复合物-TNF受体相关因子6-核因子-κB信号通路的调节。为了阐明OspI功能的结构基础,我们确定了催化惰性的OspI C62A突变体及其与Ubc13的配合物的晶体结构,其分辨率分别为3.0和2.96?。 OspI-Ubc13复合物的结构表明,OspI和Ubc13之间的相互作用表面是疏水表面和互补的带电表面。此外,我们预测OspI的互补电荷表面在底物特异性测定中起关键作用。

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