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威斯科特-奥尔德里奇综合征蛋白识别Cdc42的静电导向机制。

An electrostatic steering mechanism of Cdc42 recognition by Wiskott-Aldrich syndrome proteins.

作者信息

Hemsath Lars, Dvorsky Radovan, Fiegen Dennis, Carlier Marie-France, Ahmadian Mohammad Reza

机构信息

Abteilung Strukturelle Biologie, Max-Planck-Institut für Molekulare Physiologie, Otto-Hahn-Strasse 11, 44227 Dortmund, Germany.

出版信息

Mol Cell. 2005 Oct 28;20(2):313-24. doi: 10.1016/j.molcel.2005.08.036.

Abstract

The specific and rapid formation of protein complexes is essential for diverse cellular processes such as remodeling of actin filaments in response to the interaction between Rho GTPases and the Wiskott-Aldrich syndrome proteins (WASp and N-WASp). Although Cdc42, TC10, and other members of the Rho family have been implicated in binding to and activating the WAS proteins, the exact nature of such a protein-protein recognition process has remained obscure. Here, we describe a mechanism that ensures rapid and selective long-range Cdc42-WASp recognition. The crystal structure of TC10, together with mutational and bioinformatic analyses, proved that the basic region of WASp and two unique glutamates in Cdc42 generate favorable electrostatic steering forces that control the accelerated WASp-Cdc42 association reaction. This process is a prerequisite for WASp activation and a critical step in temporal regulation and integration of WASp-mediated cellular responses.

摘要

蛋白质复合物的特异性快速形成对于多种细胞过程至关重要,例如响应Rho GTP酶与威斯科特-奥尔德里奇综合征蛋白(WASp和N-WASp)之间的相互作用而对肌动蛋白丝进行重塑。尽管Cdc42、TC10以及Rho家族的其他成员已被证明与WAS蛋白结合并激活WAS蛋白,但这种蛋白质-蛋白质识别过程的确切性质仍不清楚。在此,我们描述了一种确保快速且选择性的远程Cdc42-WASp识别的机制。TC10的晶体结构,连同突变分析和生物信息学分析,证明了WASp的碱性区域和Cdc42中两个独特的谷氨酸产生了有利的静电引导力,这些力控制了加速的WASp-Cdc42缔合反应。这一过程是WASp激活的先决条件,也是WASp介导的细胞反应的时间调节和整合中的关键步骤。

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