首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Bond swapping from a charge cloud allows flexible coordination of upstream signals through WASP: Multiple regulatory roles for the WASP basic region
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Bond swapping from a charge cloud allows flexible coordination of upstream signals through WASP: Multiple regulatory roles for the WASP basic region

机译:电荷云中的债券交换可通过WASP灵活地协调上游信号:WASP基本区域的多个监管角色

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摘要

Wiskott–Aldrich syndrome protein (WASP) activates the actin-related protein 2/3 homolog (Arp2/3) complex and regulates actin polymerization in a physiological setting. Cell division cycle 42 (Cdc42) is a key activator of WASP, which binds Cdc42 through a Cdc42/Rac-interactive binding (CRIB)-containing region that defines a subset of Cdc42 effectors. Here, using site-directed mutagenesis and binding affinity determination and kinetic assays, we report the results of an investigation into the energetic contributions of individual WASP residues to both the Cdc42–WASP binding interface and the kinetics of complex formation. Our results support the previously proposed dock-and-coalesce binding mechanism, initiated by electrostatic steering driven by WASP's basic region and followed by a coalescence phase likely driven by the conserved CRIB motif. The WASP basic region, however, appears also to play a role in the final complex, as its mutation affected both on- and off-rates, suggesting a more comprehensive physiological role for this region centered on the C-terminal triad of positive residues. These results highlight the expanding roles of the basic region in WASP and other CRIB-containing effector proteins in regulating complex cellular processes and coordinating multiple input signals. The data presented improve our understanding of the Cdc42–WASP interface and also add to the body of information available for Cdc42–effector complex formation, therapeutic targeting of which has promise for Ras-driven cancers. Our findings suggest that combining high-affinity peptide-binding sequences with short electrostatic steering sequences could increase the efficacy of peptidomimetic candidates designed to interfere with Cdc42 signaling in cancer.
机译:Wiskott–Aldrich综合征蛋白(WASP)激活肌动蛋白相关蛋白2/3同源物(Arp2 / 3)复合物,并在生理环境中调节肌动蛋白的聚合。细胞分裂周期42(Cdc42)是WASP的关键激活因子,它通过包含Cdc42 / Rac相互作用结合(CRIB)的包含Cdc42效应子的区域结合Cdc42。在这里,使用定点诱变,结合亲和力测定和动力学测定,我们报告了单个WASP残基对Cdc42-WASP结合界面和复合物形成动力学的能量贡献研究结果。我们的研究结果支持了先前提出的对接结合机理,该机理是由WASP基本区域驱动的静电操纵引发的,随后是可能由保守的CRIB基序驱动的聚结阶段。但是,WASP基本区域似乎也在最终复合物中发挥作用,因为其突变影响开和关速率,这表明该区域以阳性残基的C端三联体为中心的更全面的生理作用。这些结果突出了WASP和其他含CRIB的效应蛋白中基本区域在调节复杂细胞过程和协调多个输入信号中的扩展作用。所提供的数据增进了我们对Cdc42-WASP界面的理解,也增加了可用于Cdc42-效应子复合物形成的信息体,其治疗靶标有望引起Ras驱动的癌症。我们的发现表明,将高亲和力的肽结合序列与短的静电操纵序列结合在一起可以提高拟肽模拟物候选物的功效,这些候选物旨在干扰癌症中的Cdc42信号传导。

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