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pKM101 型 IV 型分泌系统中 TraE 的结构分析与抑制

Structural Analysis and Inhibition of TraE from the pKM101 Type IV Secretion System.

作者信息

Casu Bastien, Smart Jonathan, Hancock Mark A, Smith Mark, Sygusch Jurgen, Baron Christian

机构信息

From the Department of Biochemistry and Molecular Medicine, Faculty of Medicine, Université de Montréal, Montréal, Quebec H3C 3J7, Canada, and.

the SPR-MS Facility, Faculty of Medicine, McGill University, Montréal, Quebec H3G 1Y6, Canada.

出版信息

J Biol Chem. 2016 Nov 4;291(45):23817-23829. doi: 10.1074/jbc.M116.753327. Epub 2016 Sep 15.

Abstract

Gram-negative bacteria use type IV secretion systems (T4SSs) for a variety of macromolecular transport processes that include the exchange of genetic material. The pKM101 plasmid encodes a T4SS similar to the well-studied model systems from Agrobacterium tumefaciens and Brucella suis Here, we studied the structure and function of TraE, a homolog of VirB8 that is an essential component of all T4SSs. Analysis by X-ray crystallography revealed a structure that is similar to other VirB8 homologs but displayed an altered dimerization interface. The dimerization interface observed in the X-ray structure was corroborated using the bacterial two-hybrid assay, biochemical characterization of the purified protein, and in vivo complementation, demonstrating that there are different modes of dimerization among VirB8 homologs. Analysis of interactions using the bacterial two-hybrid and cross-linking assays showed that TraE and its homologs from Agrobacterium, Brucella, and Helicobacter pylori form heterodimers. They also interact with heterologous VirB10 proteins, indicating a significant degree of plasticity in the protein-protein interactions of VirB8-like proteins. To further assess common features of VirB8-like proteins, we tested a series of small molecules derived from inhibitors of Brucella VirB8 dimerization. These molecules bound to TraE in vitro, docking predicted that they bind to a structurally conserved surface groove of the protein, and some of them inhibited pKM101 plasmid transfer. VirB8-like proteins thus share functionally important sites, and these can be exploited for the design of specific inhibitors of T4SS function.

摘要

革兰氏阴性菌利用IV型分泌系统(T4SSs)进行多种大分子转运过程,包括遗传物质的交换。pKM101质粒编码一种与来自根癌农杆菌和猪布鲁氏菌的经过充分研究的模型系统相似的T4SS。在此,我们研究了TraE的结构和功能,TraE是VirB8的同源物,而VirB8是所有T4SS的重要组成部分。X射线晶体学分析揭示了一种与其他VirB8同源物相似但二聚化界面发生改变的结构。利用细菌双杂交试验、纯化蛋白的生化特性分析和体内互补实验证实了X射线结构中观察到的二聚化界面,表明VirB8同源物之间存在不同的二聚化模式。利用细菌双杂交和交联试验进行的相互作用分析表明,TraE及其来自根癌农杆菌、布鲁氏菌和幽门螺杆菌的同源物形成异源二聚体。它们还与异源VirB10蛋白相互作用,这表明VirB8样蛋白在蛋白质-蛋白质相互作用方面具有显著的可塑性。为了进一步评估VirB8样蛋白的共同特征,我们测试了一系列源自布鲁氏菌VirB8二聚化抑制剂的小分子。这些分子在体外与TraE结合,对接预测它们结合到该蛋白结构保守的表面凹槽,其中一些分子抑制pKM101质粒转移。因此,VirB8样蛋白具有功能上重要的位点,这些位点可用于设计T4SS功能的特异性抑制剂。

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