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使用核磁共振光谱法研究的二糖的分子构象。

Molecular conformations of a disaccharide investigated using NMR spectroscopy.

作者信息

Landersjö Clas, Stevensson Baltzar, Eklund Robert, Ostervall Jennie, Söderman Peter, Widmalm Göran, Maliniak Arnold

机构信息

Arrhenius Laboratory, Department of Organic Chemistry, Stockholm University, S-106 91, Stockholm, Sweden.

出版信息

J Biomol NMR. 2006 Jun;35(2):89-101. doi: 10.1007/s10858-006-9006-0. Epub 2006 Jun 22.

Abstract

The molecular structure of alpha-L-Rhap-(1--> 2)-alpha-L-Rhap-OMe has been investigated using conformation sensitive NMR parameters: cross-relaxation rates, scalar 3J(CH) couplings and residual dipolar couplings obtained in a dilute liquid crystalline phase. The order matrices of the two sugar residues are different, which indicates that the molecule cannot exist in a single conformation. The conformational distribution function, P(phi, psi) related to the two glycosidic linkage torsion angles phi and psi was constructed using the APME method, valid in the low orientational order limit. The APME approach is based on the additive potential (AP) and maximum entropy (ME) models. The analyses of the trajectories generated in molecular dynamics and Langevin dynamics (LD) computer simulations gave support to the distribution functions constructed from the experimental NMR parameters. It is shown that at least two conformational regions are populated on the Ramachandran map and that these regions exhibit very different molecular order.

摘要

已使用构象敏感的核磁共振参数对α-L-鼠李糖基-(1→2)-α-L-鼠李糖甲酯的分子结构进行了研究:在稀液晶相中获得的交叉弛豫率、标量3J(CH)耦合和剩余偶极耦合。两个糖残基的序矩阵不同,这表明该分子不能以单一构象存在。使用在低取向序极限下有效的APME方法构建了与两个糖苷键扭转角φ和ψ相关的构象分布函数P(φ, ψ)。APME方法基于加和势(AP)和最大熵(ME)模型。对分子动力学和朗之万动力学(LD)计算机模拟中生成的轨迹进行分析,为根据实验核磁共振参数构建的分布函数提供了支持。结果表明,在拉氏图上至少有两个构象区域,并且这些区域表现出非常不同的分子序。

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