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来自猪布鲁氏菌的假定溶菌转糖基酶VirB1与IV型分泌系统核心组分VirB8、VirB9和VirB11相互作用。

The putative lytic transglycosylase VirB1 from Brucella suis interacts with the type IV secretion system core components VirB8, VirB9 and VirB11.

作者信息

Höppner Christoph, Carle Anna, Sivanesan Durga, Hoeppner Sabine, Baron Christian

机构信息

Ludwig-Maximilians-Universität, Department Biologie I, Bereich Mikrobiologie, Maria-Ward-Str. 1a, D-80638 München, Germany.

McMaster University, Department of Biology, 1280 Main St West, Hamilton, ON, Canada LS8 4K1.

出版信息

Microbiology (Reading). 2005 Nov;151(Pt 11):3469-3482. doi: 10.1099/mic.0.28326-0.

Abstract

VirB1-like proteins are believed to act as lytic transglycosylases, which facilitate the assembly of type IV secretion systems via localized lysis of the peptidoglycan. This paper presents the biochemical analysis of interactions of purified Brucella suis VirB1 with core components of the type IV secretion system. Genes encoding VirB1, VirB8, VirB9, VirB10 and VirB11 were cloned into expression vectors; the affinity-tagged proteins were purified from Escherichia coli, and analyses by gel filtration chromatography showed that they form monomers or homo-multimers. Analysis of protein-protein interactions by affinity precipitation revealed that VirB1 bound to VirB9 and VirB11. The results of bicistron expression experiments followed by gel filtration further supported the VirB1-VirB9 interaction. Peptide array mapping identified regions of VirB1 that interact with VirB8, VirB9 and VirB11 and underscored the importance of the C-terminus, especially for the VirB1-VirB9 interaction. The binding sites were localized on a structure model of VirB1, suggesting that different portions of VirB1 may interact with other VirB proteins during assembly of the type IV secretion machinery.

摘要

类VirB1蛋白被认为可作为溶菌转糖基酶,通过肽聚糖的局部裂解促进IV型分泌系统的组装。本文介绍了纯化的猪布鲁氏菌VirB1与IV型分泌系统核心成分相互作用的生化分析。将编码VirB1、VirB8、VirB9、VirB10和VirB11的基因克隆到表达载体中;从大肠杆菌中纯化出带有亲和标签的蛋白质,凝胶过滤色谱分析表明它们形成单体或同多聚体。通过亲和沉淀分析蛋白质-蛋白质相互作用表明,VirB1与VirB9和VirB11结合。双顺反子表达实验及随后的凝胶过滤结果进一步支持了VirB1-VirB9相互作用。肽阵列图谱确定了VirB1与VirB8、VirB9和VirB11相互作用的区域,并强调了C末端的重要性,特别是对于VirB1-VirB9相互作用。结合位点定位在VirB1的结构模型上,表明在IV型分泌机制组装过程中,VirB1的不同部分可能与其他VirB蛋白相互作用。

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