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当前力场能否再现 2-O-磺酸-α-L-艾杜糖醛酸中的环扭转?分子动力学模拟研究。

Can current force fields reproduce ring puckering in 2-O-sulfo-alpha-L-iduronic acid? A molecular dynamics simulation study.

机构信息

Curtin Health Innovation Research Institute, Western Australian Biomedical Research Institute, School of Biomedical Sciences, Curtin University of Technology, GPO Box U1987 Perth, Western Australia 6845, Australia.

出版信息

Carbohydr Res. 2010 Mar 30;345(5):689-95. doi: 10.1016/j.carres.2009.12.020. Epub 2009 Dec 29.

Abstract

The monosaccharide 2-O-sulfo-alpha-L-iduronic acid (IdoA2S) is one of the major components of glycosaminoglycans. The ability of molecular mechanics force fields to reproduce ring-puckering conformational equilibrium is important for the successful prediction of the free energies of interaction of these carbohydrates with proteins. Here we report unconstrained molecular dynamics simulations of IdoA2S monosaccharide that were carried out to investigate the ability of commonly used force fields to reproduce its ring conformational flexibility in aqueous solution. In particular, the distribution of ring conformer populations of IdoA2S was determined. The GROMOS96 force field with the SPC/E water potential can predict successfully the dominant skew-boat to chair conformational transition of the IdoA2S monosaccharide in aqueous solution. On the other hand, the GLYCAM06 force field with the TIP3P water potential sampled transitional conformations between the boat and chair forms. Simulations using the GROMOS96 force field showed no pseudorotational equilibrium fluctuations and hence no inter-conversion between the boat and twist boat ring conformers. Calculations of theoretical proton NMR coupling constants showed that the GROMOS96 force field can predict the skew-boat to chair conformational ratio in good agreement with the experiment, whereas GLYCAM06 shows worse agreement. The omega rotamer distribution about the C5-C6 bond was predicted by both force fields to have torsions around 10 degrees , 190 degrees , and 360 degrees .

摘要

单糖 2-O-磺酸-α-L-艾杜糖醛酸(IdoA2S)是糖胺聚糖的主要成分之一。分子力学力场重现环构象平衡的能力对于成功预测这些碳水化合物与蛋白质相互作用的自由能非常重要。在这里,我们报告了对 IdoA2S 单糖进行无约束分子动力学模拟的结果,这些模拟旨在研究常用力场在水溶液中重现其环构象柔韧性的能力。特别是,确定了 IdoA2S 环构象体的分布。带有 SPC/E 水势的 GROMOS96 力场可以成功预测 IdoA2S 单糖在水溶液中主要的倾斜船到椅构象转变。另一方面,带有 TIP3P 水势的 GLYCAM06 力场采样了船形和椅形之间的过渡构象。使用 GROMOS96 力场的模拟显示没有假旋转平衡波动,因此没有船形和扭曲船形环构象体之间的相互转换。理论质子 NMR 偶合常数的计算表明,GROMOS96 力场可以很好地预测倾斜船到椅构象的比例,与实验结果一致,而 GLYCAM06 则表现出较差的一致性。两个力场都预测 C5-C6 键的 ω 旋转异构体分布在大约 10 度、190 度和 360 度处存在扭转。

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