首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Activation of the Cdc42 Effector N-Wasp by the Shigella flexneri Icsa Protein Promotes Actin Nucleation by Arp2/3 Complex and Bacterial Actin-Based Motility
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Activation of the Cdc42 Effector N-Wasp by the Shigella flexneri Icsa Protein Promotes Actin Nucleation by Arp2/3 Complex and Bacterial Actin-Based Motility

机译:弗氏志贺氏菌Icsa蛋白对Cdc42效应N-黄蜂的激活通过Arp2 / 3复合物和基于细菌肌动蛋白的运动促进肌动蛋白成核。

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摘要

To propel itself in infected cells, the pathogen Shigella flexneri subverts the Cdc42-controlled machinery responsible for actin assembly during filopodia formation. Using a combination of bacterial motility assays in platelet extracts with Escherichia coli expressing the Shigella IcsA protein and in vitro analysis of reconstituted systems from purified proteins, we show here that the bacterial protein IcsA binds N-WASP and activates it in a Cdc42-like fashion. Dramatic stimulation of actin assembly is linked to the formation of a ternary IcsA–N-WASP–Arp2/3 complex, which nucleates actin polymerization. The Arp2/3 complex is essential in initiation of actin assembly and Shigella movement, as previously observed for Listeria monocytogenes. Activation of N-WASP by IcsA unmasks two domains acting together in insertional actin polymerization. The isolated COOH-terminal domain of N-WASP containing a verprolin-homology region, a cofilin-homology sequence, and an acidic terminal segment (VCA) interacts with G-actin in a unique profilin-like functional fashion. Hence, when N-WASP is activated, its COOH-terminal domain feeds barbed end growth of filaments and lowers the critical concentration at the bacterial surface. On the other hand, the NH2-terminal domain of N-WASP interacts with F-actin, mediating the attachment of the actin tail to the bacterium surface. VASP is not involved in Shigella movement, and the function of profilin does not require its binding to proline-rich regions.
机译:为了在感染的细胞中自我推动,病原体志贺氏志贺氏菌破坏了丝状伪足形成过程中负责肌动蛋白组装的Cdc42控制机制。使用表达志贺氏菌IcsA蛋白的大肠杆菌在血小板提取物中进行细菌运动分析的组合,以及从纯化蛋白中重建系统的体外分析,我们在这里显示,细菌蛋白IcsA结合N-WASP并以Cdc42样方式激活。肌动蛋白装配的戏剧性刺激与三元IcsA–N-WASP–Arp2 / 3复合物的形成有关,该复合物使肌动蛋白聚合成核。如先前针对单核细胞增生李斯特菌所观察到的,Arp2 / 3复合物在肌动蛋白组装和志贺氏菌运动的启动中至关重要。 IcsA对N-WASP的激活掩盖了在插入肌动蛋白聚合反应中共同起作用的两个结构域。 N-WASP的分离的COOH末端结构域包含Verprolin同源区域,cofilin同源序列和酸性末端片段(VCA),以独特的profilin样功能性方式与G-actin相互作用。因此,当激活N-WASP时,其COOH末端结构域可喂食细丝的倒刺末端生长,并降低细菌表面的临界浓度。另一方面,N-WASP的NH2末端结构域与F-肌动蛋白相互作用,介导肌动蛋白尾巴附着到细菌表面。 VASP不参与志贺氏菌的运动,并且profilin的功能不需要其与富含脯氨酸的区域结合。

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