首页> 外文期刊>Protein Science: A Publication of the Protein Society >Solution structures of the C-terminal headpiece subdomains of human villin and advillin, evaluation of headpiece F-actin-binding requirements.
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Solution structures of the C-terminal headpiece subdomains of human villin and advillin, evaluation of headpiece F-actin-binding requirements.

机译:人类villin和advillin的C末端头饰子域的溶液结构,头饰F-肌动蛋白结合要求的评估。

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摘要

Headpiece (HP) is a 76-residue F-actin-binding module at the C terminus of many cytoskeletal proteins. Its 35-residue C-terminal subdomain is one of the smallest known motifs capable of autonomously adopting a stable, folded structure in the absence of any disulfide bridges, metal ligands, or unnatural amino acids. We report the three-dimensional solution structures of the C-terminal headpiece subdomains of human villin (HVcHP) and human advillin (HAcHP), determined by two-dimensional 1H-NMR. They represent the second and third structures of such C-terminal headpiece subdomains to be elucidated so far. A comparison with the structure of the chicken villin C-terminal subdomain reveals a high structural conservation. Both C-terminal subdomains bind specifically to F-actin. Mutagenesis is used to demonstrate the involvement of Trp 64 in the F-actin-binding surface. The latter residue is part of a conserved structural feature, in which the surface-exposed indole ring is stacked on the proline and lysine side chain embedded in a PXWK sequence motif. On the basis of the structural and mutational data concerning Trp 64 reported here, the results of a cysteine-scanning mutagenesis study of full headpiece, and a phage display mutational study of the 69-74 fragment, we propose a modification of the model, elaborated by Vardar and coworkers, for the binding of headpiece to F-actin.
机译:机头(HP)是许多细胞骨架蛋白C末端的76个残基的F-肌动蛋白结合模块。它的35个残基的C末端亚结构域是已知的最小基序之一,能够在不存在任何二硫键,金属配体或非天然氨基酸的情况下自动采用稳定的折叠结构。我们报告了由二维1H-NMR确定的人类维林(HVcHP)和人类阿维林(HAcHP)的C端头子域的三维解决方案结构。它们代表了迄今为止将要阐明的这种C末端头饰子域的第二和第三结构。与鸡villin C-末端亚结构域的结构比较显示出高度的结构保守性。两个C末端亚结构域都特异性结合F-肌动蛋白。诱变被用来证明Trp 64参与F-肌动蛋白结合表面。后者的残基是保守结构特征的一部分,其中表面暴露的吲哚环堆叠在脯氨酸和赖氨酸侧链上,脯氨酸和赖氨酸侧链嵌入PXWK序列基序中。根据此处报道的有关Trp 64的结构和突变数据,完整头盔的半胱氨酸扫描诱变研究结果和69-74片段的噬菌体展示突变研究结果,我们建议对模型进行修改,详细说明由Vardar及其同事设计,用于将耳机与F-肌动蛋白结合。

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