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B族链球菌Ⅲ型荚膜多糖及其衍生物构象表位的核磁共振和分子动力学研究

NMR and molecular dynamics studies of the conformational epitope of the type III group B Streptococcus capsular polysaccharide and derivatives.

作者信息

Brisson J R, Uhrinova S, Woods R J, van der Zwan M, Jarrell H C, Paoletti L C, Kasper D L, Jennings H J

机构信息

Institute for Biological Sciences, National Research Council of Canada, Ottawa.

出版信息

Biochemistry. 1997 Mar 18;36(11):3278-92. doi: 10.1021/bi961819l.

Abstract

The conformational epitope of the type III group B Streptococcus capsular polysaccharide (GBSP III) exhibits unique properties which can be ascribed to the presence of sialic acid in its structure and the requirement for an extended binding site. By means of NMR and molecular dynamics studies on GBSP III and its fragments, the extended epitope of GBSP III was further defined. The influence of sialic acid on the conformational properties of GBSP III was examined by performing conformational analysis on desialylated GBSP III, which is identical to the polysaccharide of Streptococcus pneumoniae type 14, and also on oxidized and reduced GBSP III. Conformational changes were gauged by 1H and 13C chemical shift analysis, NOE, 1D selective TOCSY-NOESY experiments, J(HH) and J(CH) variations, and NOE of OH resonances. Changes in mobility were examined by 13C T1 and T2 measurements. Unrestrained molecular dynamics simulations with explicit water using the AMBER force field and the GLYCAM parameter set were used to assess static and dynamic conformational models, simulate the observable NMR parameters and calculate helical parameters. GBSP III was found to be capable of forming extended helices. Hence, the length dependence of the conformational epitope could be explained by its location on extended helices within the random coil structure of GBSP III. The interaction of sialic acid with the backbone of the PS was also found to be important in defining the conformational epitope of GBSP III.

摘要

B族链球菌III型荚膜多糖(GBSP III)的构象表位具有独特性质,这可归因于其结构中唾液酸的存在以及对扩展结合位点的需求。通过对GBSP III及其片段进行核磁共振(NMR)和分子动力学研究,进一步确定了GBSP III的扩展表位。通过对去唾液酸化GBSP III(其与肺炎链球菌14型多糖相同)以及氧化和还原的GBSP III进行构象分析,研究了唾液酸对GBSP III构象性质的影响。通过1H和13C化学位移分析、核Overhauser效应(NOE)、一维选择性全相关谱-核Overhauser效应谱(TOCSY-NOESY)实验、J(HH)和J(CH)变化以及OH共振的NOE来衡量构象变化。通过13C T1和T2测量来研究流动性的变化。使用AMBER力场和GLYCAM参数集进行含明确水分子的无约束分子动力学模拟,以评估静态和动态构象模型、模拟可观测的NMR参数并计算螺旋参数。发现GBSP III能够形成扩展螺旋。因此,构象表位的长度依赖性可以通过其在GBSP III无规卷曲结构内扩展螺旋上的位置来解释。还发现唾液酸与多糖主链的相互作用在定义GBSP III的构象表位方面也很重要。

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