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测量复杂六糖内部运动的幅度。

Measuring the magnitude of internal motion in a complex hexasaccharide.

机构信息

Department of Chemistry and Biochemistry, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

出版信息

Biopolymers. 2011 Jan;95(1):39-50. doi: 10.1002/bip.21532.

Abstract

For the development of a scheme for quantitative experimental estimation of internal motion in the complex human milk hexasaccharide lacto-N-di-fuco hexose I (LNDFH I), we measured a large number of experimental residual dipolar couplings in liquid crystal orienting media. We present a total of 40 (13)C--(1)H and (1)H--(1)H dipolar coupling values, each representing distinct directions of internuclear vectors. The NMR data were interpreted with established methods for analysis of rigid subdomains of the oligosaccharide as well as a novel method in which dipolar couplings were calculated over an ensemble of conformers from a solvent Molecular Dynamics trajectory using multiple linear regression analysis. The Lewis(b) epitope region of LNDFH I assumed a single unique conformation with internal motion described by fluctuations of 5-10° in glycosidic dihedral angles consistent with previous studies. Greater flexibility was observed for the remaining GlcNAc1→3-β-D-Gal and β-D-Gal1→4Glc linkages, with the former glycosidic linkage existing in a conformational exchange among three states. The results were also supported by similar results of calculations carried out with conformers obtained from a simple Monte Carlo simulation without explicit solvent.

摘要

为了制定一种方案,用于定量实验估计复杂人乳六糖乳糖-N-二岩藻六糖苷 I(LNDFH I)内部运动,我们在液晶取向介质中测量了大量实验残余偶极耦合。我们总共呈现了 40 个(13)C-(1)H 和(1)H-(1)H 偶极耦合值,每个值代表核间矢量的不同方向。NMR 数据使用刚性寡糖亚结构分析的既定方法以及一种新方法进行解释,该方法使用来自溶剂分子动力学轨迹的构象集合通过多元线性回归分析计算偶极耦合。LNDFH I 的 Lewis(b)表位区域采用单一独特构象,内部运动由糖苷二面角的 5-10°波动描述,与先前的研究一致。对于其余的 GlcNAc1→3-β-D-Gal 和β-D-Gal1→4Glc 键,观察到更大的灵活性,前者糖苷键在三个状态之间存在构象交换。这些结果还得到了来自简单蒙特卡罗模拟而没有明确溶剂的构象的计算结果的支持。

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