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了解Ena/VASP的G-肌动蛋白结合结构域在肌动蛋白组装中的作用。

Understanding the role of the G-actin-binding domain of Ena/VASP in actin assembly.

作者信息

Chereau David, Dominguez Roberto

机构信息

Boston Biomedical Research Institute, 64 Grove Street, Watertown, MA 02472, USA.

出版信息

J Struct Biol. 2006 Aug;155(2):195-201. doi: 10.1016/j.jsb.2006.01.012. Epub 2006 Apr 25.

DOI:10.1016/j.jsb.2006.01.012
PMID:16684607
Abstract

The Ena/VASP and WASP family of proteins play distinct roles in actin cytoskeleton remodeling. Ena/VASP is linked to actin filament elongation, whereas WASP plays a role in filament nucleation and branching mediated by Arp2/3 complex. The molecular mechanisms controlling both processes are only emerging. Both Ena/VASP and WASP are multidomain proteins. They both present poly-Pro regions, which mediate the binding of profilin-actin, followed by G-actin-binding (GAB) domains of the WASP-homology 2 (WH2) type. However, the WH2 of Ena/VASP is somewhat different from that of WASP, and has been poorly characterized. Here we demonstrate that this WH2 binds profilin-actin with higher affinity than actin alone. The results are consistent with a model whereby allosteric modulation of affinity drives the transition of profilin-actin from the poly-Pro region to the WH2 and then to the barbed end of the filament during elongation. Therefore, the function of the WH2 in Ena/VASP appears to be to "process" profilin-actin for its incorporation at the barbed end of the growing filament. Conformational changes in the newly incorporated actin subunit, resulting either from nucleotide hydrolysis or from the G- to F-actin transition, may serve as a "sensor" for the processive stepping of Ena/VASP. Conserved domain architecture suggests that WASP may work similarly.

摘要

Ena/VASP和WASP蛋白家族在肌动蛋白细胞骨架重塑中发挥着不同的作用。Ena/VASP与肌动蛋白丝的延长有关,而WASP则在由Arp2/3复合物介导的丝的成核和分支过程中发挥作用。控制这两个过程的分子机制才刚刚开始被揭示。Ena/VASP和WASP都是多结构域蛋白。它们都有多聚脯氨酸区域,介导肌动蛋白结合蛋白-肌动蛋白的结合,随后是WASP同源2(WH2)型的G-肌动蛋白结合(GAB)结构域。然而,Ena/VASP的WH2与WASP的WH2有所不同,且其特征尚不明确。在这里,我们证明这个WH2与肌动蛋白结合蛋白-肌动蛋白的结合亲和力高于与单独肌动蛋白的结合亲和力。这些结果与一个模型一致,即亲和力的变构调节驱动肌动蛋白结合蛋白-肌动蛋白在延长过程中从多聚脯氨酸区域转移到WH2,然后转移到丝的尖端。因此,Ena/VASP中WH2的功能似乎是“处理”肌动蛋白结合蛋白-肌动蛋白,以便其掺入生长丝的尖端。新掺入的肌动蛋白亚基由于核苷酸水解或从G-肌动蛋白向F-肌动蛋白的转变而发生的构象变化,可能作为Ena/VASP连续步进的“传感器”。保守的结构域结构表明WASP可能以类似的方式起作用。

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