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A Novel Neural Wiskott-Aldrich Syndrome Protein (N-Wasp) Binding Protein, Wish, Induces Arp2/3 Complex Activation Independent of Cdc42

机译:一种新型的神经维斯科特-奥尔德里奇综合征蛋白(N-Wasp)结合蛋白,希望,诱导独立于Cdc42的Arp2 / 3复合物激活。

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摘要

We identified a novel adaptor protein that contains a Src homology (SH)3 domain, SH3 binding proline-rich sequences, and a leucine zipper-like motif and termed this protein WASP interacting SH3 protein (WISH). WISH is expressed predominantly in neural tissues and testis. It bound Ash/Grb2 through its proline-rich regions and neural Wiskott-Aldrich syndrome protein (N-WASP) through its SH3 domain. WISH strongly enhanced N-WASP–induced Arp2/3 complex activation independent of Cdc42 in vitro, resulting in rapid actin polymerization. Furthermore, coexpression of WISH and N-WASP induced marked formation of microspikes in Cos7 cells, even in the absence of stimuli. An N-WASP mutant (H208D) that cannot bind Cdc42 still induced microspike formation when coexpressed with WISH. We also examined the contribution of WISH to a rapid actin polymerization induced by brain extract in vitro. Arp2/3 complex was essential for brain extract–induced rapid actin polymerization. Addition of WISH to extracts increased actin polymerization as Cdc42 did. However, WISH unexpectedly could activate actin polymerization even in N-WASP–depleted extracts. These findings suggest that WISH activates Arp2/3 complex through N-WASP–dependent and –independent pathways without Cdc42, resulting in the rapid actin polymerization required for microspike formation.
机译:我们鉴定了一种新型的衔接子蛋白,它包含一个Src同源性(SH)3域,SH3富含脯氨酸的结合序列和一个亮氨酸拉链样基序,并将其称为WASP相互作用的SH3蛋白(WISH)。 WISH主要在神经组织和睾丸中表达。它通过其富含脯氨酸的区域结合Ash / Grb2,并通过其SH3结构域结合神经Wiskott-Aldrich综合征蛋白(N-WASP)。 WISH在体外独立于Cdc42强烈增强了N-WASP诱导的Arp2 / 3复合物激活,从而导致肌动蛋白快速聚合。此外,即使在没有刺激的情况下,WISH和N-WASP的共表达也会在Cos7细胞中诱导明显的微峰形成。当与WISH共表达时,不能结合Cdc42的N-WASP突变体(H208D)仍诱导微穗形成。我们还检查了WISH对体外脑提取物诱导的快速肌动蛋白聚合的贡献。 Arp2 / 3复合物对于脑提取物诱导的肌动蛋白快速聚合至关重要。与Cdc42一样,在提取物中添加WISH可以增加肌动蛋白的聚合。但是,即使在N-WASP耗尽的提取物中,WISH也会意外激活肌动蛋白的聚合反应。这些发现表明,WISH通过不依赖Cdc42的N-WASP依赖性和非依赖性途径激活Arp2 / 3复合物,从而导致了微钉形成所需的快速肌动蛋白聚合。

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