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计算研究表明,ABO 活性糖与诺如病毒 VA387 衣壳蛋白的相互作用可以解释实验结合数据。

Computational studies on the interaction of ABO-active saccharides with the norovirus VA387 capsid protein can explain experimental binding data.

机构信息

Biognos AB, Generatorsgatan 1, 40274 Gothenburg, Sweden.

出版信息

J Comput Aided Mol Des. 2010 May;24(5):423-31. doi: 10.1007/s10822-010-9353-5. Epub 2010 Apr 21.

Abstract

Norovirus strains are known to cause recurring epidemics of winter vomiting disease. The crystal structure of the capsid protein of VA387, a representative of the clinically important GII.4 genocluster, was recently solved in complex with histo-blood group A- and B-trisaccharides. However, the VA387 strain is known to bind also to other natural carbohydrates for which detailed structural information of the complexes is not available. In this study we have computationally explored the fit of the VA387 with a set of naturally occurring carbohydrate ligands containing a terminal alpha1,2-linked fucose. MD simulations both with explicit and implicit solvent models indicate that type 1 and 3 extensions of the ABO-determinant including ALe(b) and BLe(b) pentasaccharides can be well accommodated in the site. Scoring with Glide XP indicates that the downstream extensions of the ABO-determinants give an increase in binding strength, although the alpha1,2-linked fucose is the single strongest interacting residue. An error was discovered in the geometry of the GalNAc-Gal moiety of the published crystal structure of the A-trisaccharide/VA387 complex. The present modeling of the complexes with histo-blood group A-active structures shows some contacts which provide insight into mutational data, explaining the involvement of I389 and Q331. Our results can be applicable in structure-based design of adhesion inhibitors of noroviruses.

摘要

诺如病毒株已知会引起冬季呕吐病的反复流行。最近,一种具有临床重要性的 GII.4 基因簇代表株 VA387 的衣壳蛋白的晶体结构已与 A 型和 B 型组织血型单糖复合物解析。然而,VA387 株也已知与其他天然碳水化合物结合,而这些碳水化合物的复合物的详细结构信息尚不清楚。在这项研究中,我们通过计算探索了 VA387 与一组含有末端α1,2 连接岩藻糖的天然存在的碳水化合物配体的适配性。使用显式和隐式溶剂模型的 MD 模拟表明,包括 ALe(b)和 BLe(b)五糖在内的 ABO 决定簇的 1 型和 3 型扩展可以很好地容纳在该部位。Glide XP 的评分表明,ABO 决定簇的下游扩展增加了结合强度,尽管α1,2 连接的岩藻糖是单个相互作用最强的残基。在已发表的 A 型三糖/VA387 复合物晶体结构中,GalNAc-Gal 部分的几何形状存在错误。对具有组织血型 A 活性结构的复合物的建模显示了一些接触,这些接触提供了对突变数据的深入了解,解释了 I389 和 Q331 的参与。我们的结果可应用于诺如病毒附着抑制剂的基于结构的设计。

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