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基于异核核磁共振耦合常数对缓症链球菌J22柔性细胞壁多糖进行分子建模。

Molecular modeling of the flexible cell wall polysaccharide of Streptococcus mitis J22 on the basis of heteronuclear NMR coupling constants.

作者信息

Xu Q, Bush C A

机构信息

Department of Chemistry and Biochemistry, University of Maryland-Baltimore County 21228, USA.

出版信息

Biochemistry. 1996 Nov 19;35(46):14521-9. doi: 10.1021/bi961262+.

Abstract

A method for constructing conformational models of flexible complex polysaccharides on the basis of NMR data and molecular modeling is described and is applied to a polysaccharide which is a lectin-binding receptor important in coaggregation of oral bacteria. The method involves uniform biosynthetic enrichment of the polysaccharide with 13C which allows accurate measurements of heteronuclear coupling constants from a three-dimensional coupled HMQC-NOESY spectrum. The improved resolution of the 3D spectrum also provides a large number of accurate values of NOE cross peak volumes in a decoupled HMQC-NOESY spectrum. While it was not possible to construct a model for the flexible polysaccharide directly from the NOE data, a model was successfully built from the coupling constant data. Possible values of glycosidic dihedral angles were extracted from the 3JCH data to build models which were evaluated by molecular modeling calculations. A simple average over a linear combination of low-energy conformations was selected which matched the experimental 3JCH data within experimental error. Simulation of the NOE data for this same combination of conformers gave excellent agreement with experimental NOESY data. Molecular dynamics trajectories both with and without coupling constant constraints do not represent the experimental NOE and 3JCH data as well as the linear combination model. While the polysaccharide has some flexibility in the antigenic site, the lectin-binding site, which contains a furanoside with (1-->6)-linkages, provides a more flexible hinge in the polysaccharide.

摘要

描述了一种基于核磁共振(NMR)数据和分子建模构建柔性复合多糖构象模型的方法,并将其应用于一种在口腔细菌共聚集过程中起重要作用的凝集素结合受体多糖。该方法包括用13C对多糖进行均匀的生物合成富集,这使得能够从三维耦合HMQC-NOESY谱准确测量异核耦合常数。三维谱分辨率的提高还在去耦HMQC-NOESY谱中提供了大量准确的NOE交叉峰体积值。虽然无法直接从NOE数据构建柔性多糖的模型,但成功地从耦合常数数据构建了一个模型。从3JCH数据中提取糖苷二面角的可能值以构建模型,并通过分子建模计算对其进行评估。选择了低能量构象线性组合的简单平均值,该平均值在实验误差范围内与实验3JCH数据相匹配。对相同构象组合的NOE数据进行模拟,结果与实验NOESY数据非常吻合。有无耦合常数约束的分子动力学轨迹均不能像线性组合模型那样很好地体现实验NOE和3JCH数据。虽然多糖在抗原位点具有一定的灵活性,但含有(1→6)连接的呋喃糖苷的凝集素结合位点在多糖中提供了一个更灵活的铰链。

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