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通过化学交联法绘制酵母G-肌动蛋白上的丝切蛋白结合位点

Mapping the cofilin binding site on yeast G-actin by chemical cross-linking.

作者信息

Grintsevich Elena E, Benchaar Sabrina A, Warshaviak Dora, Boontheung Pinmanee, Halgand Frédéric, Whitelegge Julian P, Faull Kym F, Loo Rachel R Ogorzalek, Sept David, Loo Joseph A, Reisler Emil

机构信息

Department of Chemistry and Biochemistry, University of California-Los Angeles, CA, USA.

出版信息

J Mol Biol. 2008 Mar 21;377(2):395-409. doi: 10.1016/j.jmb.2007.12.073. Epub 2008 Jan 5.

Abstract

Cofilin is a major cytoskeletal protein that binds to both monomeric actin (G-actin) and polymeric actin (F-actin) and is involved in microfilament dynamics. Although an atomic structure of the G-actin-cofilin complex does not exist, models of the complex have been built using molecular dynamics simulations, structural homology considerations, and synchrotron radiolytic footprinting data. The hydrophobic cleft between actin subdomains 1 and 3 and, alternatively, the cleft between actin subdomains 1 and 2 have been proposed as possible high-affinity cofilin binding sites. In this study, the proposed binding of cofilin to the subdomain 1/subdomain 3 region on G-actin has been probed using site-directed mutagenesis, fluorescence labeling, and chemical cross-linking, with yeast actin mutants containing single reactive cysteines in the actin hydrophobic cleft and with cofilin mutants carrying reactive cysteines in the regions predicted to bind to G-actin. Mass spectrometry analysis of the cross-linked complex revealed that cysteine 345 in subdomain 1 of mutant G-actin was cross-linked to native cysteine 62 on cofilin. A cofilin mutant that carried a cysteine substitution in the alpha 3-helix (residue 95) formed a cross-link with residue 144 in actin subdomain 3. Distance constraints imposed by these cross-links provide experimental evidence for cofilin binding between actin subdomains 1 and 3 and fit a corresponding docking-based structure of the complex. The cross-linking of the N-terminal region of recombinant yeast cofilin to actin residues 346 and 374 with dithio-bis-maleimidoethane (12.4 A) and via disulfide bond formation was also documented. This set of cross-linking data confirms the important role of the N-terminal segment of cofilin in interactions with G-actin.

摘要

丝切蛋白是一种主要的细胞骨架蛋白,它既能与单体肌动蛋白(G-肌动蛋白)结合,也能与聚合肌动蛋白(F-肌动蛋白)结合,并参与微丝动力学过程。虽然不存在G-肌动蛋白-丝切蛋白复合物的原子结构,但已利用分子动力学模拟、结构同源性考量和同步辐射辐射足迹数据构建了该复合物的模型。肌动蛋白亚结构域1和3之间的疏水裂缝,以及肌动蛋白亚结构域1和2之间的裂缝,被认为可能是丝切蛋白的高亲和力结合位点。在本研究中,利用定点诱变、荧光标记和化学交联技术,对丝切蛋白与G-肌动蛋白上亚结构域1/亚结构域3区域的假定结合进行了探究,使用的材料包括在肌动蛋白疏水裂缝中含有单个反应性半胱氨酸的酵母肌动蛋白突变体,以及在预测与G-肌动蛋白结合区域携带反应性半胱氨酸的丝切蛋白突变体。对交联复合物的质谱分析表明,突变型G-肌动蛋白亚结构域1中的半胱氨酸345与丝切蛋白上的天然半胱氨酸62发生了交联。在α3螺旋(第95位残基)中携带半胱氨酸替代的丝切蛋白突变体与肌动蛋白亚结构域3中的第144位残基形成了交联。这些交联所施加的距离限制为丝切蛋白在肌动蛋白亚结构域1和3之间的结合提供了实验证据,并符合该复合物相应的基于对接的结构。还记录了重组酵母丝切蛋白的N端区域与肌动蛋白残基346和374通过二硫代双马来酰亚胺乙烷(12.4 Å)以及通过二硫键形成的交联。这组交联数据证实了丝切蛋白N端片段在与G-肌动蛋白相互作用中的重要作用。

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