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首页> 外文期刊>Nature structural & molecular biology >Dimeric WH2 domains in Vibrio VopF promote actin filament barbed-end uncapping and assisted elongation
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Dimeric WH2 domains in Vibrio VopF promote actin filament barbed-end uncapping and assisted elongation

机译:弧菌VopF中的二聚WH2结构域促进肌动蛋白丝的倒刺末端解封和辅助延伸

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摘要

Proteins containing repeats of the WASP homology 2 (WH2) actin-binding module are multifunctional regulators of actin nucleation and assembly. The bacterial effector VopF in Vibrio cholerae, like VopL in Vibrio parahaemolyticus, is a unique homodimer of three WH2 motifs linked by a C-terminal dimerization domain. We show that only the first and third WH2 domains of VopF bind G-actin in a non-nucleating, sequestered conformation. Moreover, dimeric WH2 domains in VopF give rise to unprecedented regulation of actin assembly. Specifically, two WH2 domains on opposite protomers of VopF direct filament assembly from actin or profilin-actin by binding terminal subunits and uncapping capping protein from barbed ends by a new mechanism. Thus, VopF does not nucleate filaments by capping a pointed-end F-actin hexamer. These properties may contribute to VopF pathogenicity, and they show how dimeric WH2 peptides may mediate processive filament growth.
机译:包含WASP同源性2(WH2)肌动蛋白结合模块重复序列的蛋白质是肌动蛋白成核和组装的多功能调节剂。霍乱弧菌中的细菌效应子VopF与副溶血性弧菌中的VopL一样,是由C端二聚化结构域连接的三个WH2基序的独特同型二聚体。我们显示,只有VopF的第一个和第三个WH2域以非成核的,隔离的构象结合G-肌动蛋白。此外,VopF中的二聚WH2结构域引起肌动蛋白装配的空前调节。具体而言,VopF相对启动子上的两个WH2结构域通过结合末端亚基并通过一种新机制从带刺的末端解开封端蛋白,从而从肌动蛋白或肌动蛋白纤溶酶直接从肌动蛋白或肌动蛋白纤溶蛋白组装丝。因此,VopF不会通过封端尖端的F-肌动蛋白六聚体使细丝成核。这些特性可能有助于VopF致病性,并且它们表明二聚WH2肽如何介导持续性长丝生长。

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