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The Conformation of a Ribose Derivative in Aqueous Solution: A Neutron Scattering and Molecular Dynamics Study

机译:核糖衍生物在水溶液中的构型:中子散射和分子动力学研究

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摘要

The structure of aqueous solutions of methyl β-d-ribofuranoside was investigated by coupling molecular dynamics (MD) simulations and neutron scattering measurements with isotopic substitution. Using a sample of the sugar isotopically-labeled at a single unique position, neutron scattering structure factors and radial distribution functions can be compared with MD simulations constrained to different conformations to determine which conformer best fits the experimental results. Three different simulations were performed with the methyl ether group of the sugar unconstrained and constrained in each of its staggered orientations. The results of the unconstrained simulation showed that the methyl ester group occupied predominantly the 300° position, which is in agreement with the diffraction experimental results. This result suggests that the molecular mechanics force field used in the simulation adequately describes the conformation of the 1-methyl ether group in the methyl β-d-ribofuranoside.
机译:通过分子动力学(MD)模拟和中子散射测量与同位素取代的耦合,研究了甲基β-d-呋喃呋喃糖苷水溶液的结构。使用在单个唯一位置同位素标记的糖样品,可以将中子散射结构因子和径向分布函数与受限于不同构象的MD模拟进行比较,以确定哪种构象最适合实验结果。进行了三个不同的模拟,其中糖的甲基醚基团在每个交错的方向上都不受约束和受约束。无约束模拟的结果表明,甲酯基占据了300°的主要位置,这与衍射实验结果一致。该结果表明,在模拟中使用的分子力学力场充分描述了甲基β-d-呋喃核糖苷中1-甲基醚基的构象。

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