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VirB7 and VirB9 Interactions Are Required for the Assembly and Antibacterial Activity of a Type IV Secretion System

机译:VirB7和VirB9相互作用对于IV型分泌系统的组装和抗菌活性是必需的

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摘要

The type IV secretion system (T4SS) from the phytopathogen Xanthomonas citri (Xac) is a bactericidal nanomachine. The T4SS core complex is a ring composed of multiple copies of VirB7-VirB9-VirB10 subunits. Xac-VirB7 contains a disordered N-terminal tail (VirB7(NT)) that recognizes VirB9, and a C-terminal domain (VirB7(CT)) involved in VirB7 self-association. Here, we show that VirB7(NT) forms a short beta strand upon binding to VirB9 and stabilizes it. A tight interaction between them is essential for T4SS assembly and antibacterial activity. Abolishing VirB7 self-association or deletion of the VirB7 C-terminal domain impairs this antibacterial activity without disturbing T4SS assembly. These findings reveal protein interactions within the core complex that are critical for the stability and activity of a T4SS.
机译:来自植物病原体柠檬黄单胞菌(Xac)的IV型分泌系统(T4SS)是一种杀菌纳米机器。 T4SS核心复合体是由多个副本的VirB7-VirB9-VirB10亚基组成的环。 Xac-VirB7包含识别VirB9的无序N末端尾巴(VirB7(NT))和一个参与VirB7自缔合的C末端域(VirB7(CT))。在这里,我们显示VirB7(NT)与VirB9结合后会形成一个短的β链并使其稳定。它们之间的紧密相互作用对于T4SS组装和抗菌活性至关重要。取消VirB7自缔合或删除VirB7 C末端结构域会削弱这种抗菌活性,而不会干扰T4SS的装配。这些发现揭示了核心复合物中的蛋白质相互作用,这对于T4SS的稳定性和活性至关重要。

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