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用二氧六环探测辛德毕斯病毒衣壳蛋白潜在的糖蛋白结合位点并进行模型构建。

Probing the potential glycoprotein binding site of sindbis virus capsid protein with dioxane and model building.

作者信息

Lee S, Kuhn R J, Rossmann M G

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907-1392, USA.

出版信息

Proteins. 1998 Nov 1;33(2):311-7.

PMID:9779796
Abstract

Alphavirus budding from the plasma membrane is initiated by the specific interaction of the nucleocapsid with the cytoplasmic domain of the glycoprotein E2. It was proposed (Lee et al., Structure 4:531-541, 1996) that binding of the capsid protein residues 108 to 110 (the "N-terminal arm" residues) to a hydrophobic pocket on the surface of the neighboring capsid protein in the crystal structure mimics the binding of the E2 C-terminal residues into this pocket. In addition, structural comparisons of wild-type and mutant Sindbis virus capsid protein (SCP) and Semliki Forest virus capsid protein suggested that budding is associated with a switch between two conformations of the hydrophobic pocket. To test the proposed mechanism, SCP(114-264), which is missing the N-terminal arm, was crystallized to examine the pocket conformation when the pocket is empty. However, the pocket was occupied by dioxane molecules from the crystallization solution. The pocket conformation was the same as that when it was occupied by the N-terminal arm, demonstrating that the pocket favors binding ligands of appropriate size and shape.

摘要

甲病毒从质膜出芽是由核衣壳与糖蛋白E2的胞质结构域的特异性相互作用引发的。有人提出(Lee等人,《结构》4:531 - 541,1996年),在晶体结构中,衣壳蛋白残基108至110(“N端臂”残基)与相邻衣壳蛋白表面的疏水口袋结合,模拟了E2 C端残基与该口袋的结合。此外,野生型和突变型辛德毕斯病毒衣壳蛋白(SCP)以及塞姆利基森林病毒衣壳蛋白的结构比较表明,出芽与疏水口袋的两种构象之间的转换有关。为了验证所提出的机制,对缺失N端臂的SCP(114 - 264)进行结晶,以研究口袋为空时的口袋构象。然而,口袋被来自结晶溶液的二氧六环分子占据。口袋构象与被N端臂占据时相同,表明口袋有利于结合大小和形状合适的配体。

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