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首页> 外文期刊>Journal of Molecular Biology >Structure of the Yersinia enterocolitica type III secretion translocator chaperone SycD
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Structure of the Yersinia enterocolitica type III secretion translocator chaperone SycD

机译:小肠结肠炎耶尔森氏菌III型分泌转运蛋白伴侣SycD的结构

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摘要

Many Gram-negative bacteria use a type III secretion (T3S) system to directly inject effector molecules into eucaryotic cells in order to establish a symbiotic or pathogenic relationship with their host. The translocation of many T3S proteins requires specialized chaperones from the bacterial cytosol. SycD belongs to a class of T3S chaperones that assists the secretion of pore-forming translocators and, specifically chaperones the translocators YopB and YopD from enteropathogenic Yersinia enterocolitica. In addition, SycD is involved in the regulation of virulence factor biosynthesis and secretion. In this study,,we present two crystal structures of Y. enterocolitica SycD at 1.95 and 2.6 angstrom resolution, the first experimental structures of a T3S class 11 chaperone specific for translocators. The fold of SycD is entirely a-helical and reveals three tetratricopeptide repeat-like motifs that had been predicted from amino acid sequence. In both structures, SycD forms dimers utilizing residues from the first tetratricopeptide repeat motif. Using site-directed mutagenesis and size exclusion chromatography, we verified that SycD forms head-to-head homodimers in solution. Although in both structures, dimerization largely depends on the same residues, the two assemblies represent alternative dimers that exhibit different monomer orientations and overall shape. In these two distinct head-to-head dimers, both the concave and the convex surface of each monomer are accessible for interactions with the SycD binding partners YopB and YopD. A SycD variant carrying two point mutations in the dimerization interface is properly folded but defective in dimerization. Expression of this stable SycD monomer in Yersinia does not rescue the phenotype of a sycD null mutant, suggesting a physiological relevance of the dimerization interface. (c) 2007 Elsevier Ltd. All rights reserved.
机译:许多革兰氏阴性细菌使用III型分泌(T3S)系统将效应分子直接注入真核细胞,以便与其宿主建立共生或致病关系。许多T3S蛋白的易位需要细菌胞质溶胶的专门伴侣。 SycD属于一类T3S分子伴侣,可协助促成孔的转运蛋白的分泌,特别是伴侣蛋白来自肠道致病性小肠结肠炎耶尔森氏菌的转运蛋白YopB和YopD。此外,SycD还参与毒力因子生物合成和分泌的调节。在这项研究中,我们提出了1.95和2.6埃分辨率的小肠结肠炎耶尔森菌SycD的两种晶体结构,这是专门针对易位分子的T3S 11类分子伴侣的第一个实验结构。 SycD的折叠完全是a螺旋,并揭示了三个从氨基酸序列预测的四三肽重复样基序。在两种结构中,SycD利用来自第一个四三肽重复基序的残基形成二聚体。使用定点诱变和尺寸排阻色谱,我们验证了SycD在溶液中形成了头对头的同二聚体。尽管在两个结构中,二聚化很大程度上取决于相同的残基,但是两个组件代表了具有不同单体取向和整体形状的替代二聚体。在这两个不同的头对头二聚体中,每个单体的凹面和凸面都可与SycD结合伴侣YopB和YopD相互作用。在二聚化界面中携带两个点突变的SycD变体已正确折叠,但在二聚化中存在缺陷。这种稳定的SycD单体在耶尔森氏菌中的表达不能挽救sycD null突变体的表型,表明二聚化界面的生理相关性。 (c)2007 Elsevier Ltd.保留所有权利。

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