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II类力场的推导。VI. 碳水化合物化合物与异头效应。

Derivation of class II force fields. VI. Carbohydrate compounds and anomeric effects.

作者信息

Hwang M J, Ni X, Waldman M, Ewig C S, Hagler A T

机构信息

Institute of Biomedical Sciences, Academic Sinica, Taipei, Taiwan, ROC.

出版信息

Biopolymers. 1998 May;45(6):435-68. doi: 10.1002/(SICI)1097-0282(199805)45:6<435::AID-BIP3>3.0.CO;2-Q.

Abstract

The methodology for deriving class II force fields has been applied to acetal, hemiacetal, and carbohydrate compounds. A set of eighteen model compounds containing one or more anomeric centers was selected for generating the quantum mechanical energy surface, from which the force field was derived and the functional form assessed. The quality of the fit was tested by comparing the energy surface predicted by the force field with ab initio results. Structural, energetic, and dynamic properties (vibrational frequencies) were analyzed. In addition, alpha and beta anomeric equilibrium structures and energies of 2-methoxytetrahydropyran, 2-deoxyribose, and glucose were computed at the HF/6-31G* and higher ab initio levels. These calculations provide test data from molecules outside the training set used to derive the force field. The quantum calculations were used to assess the ability of the class II force field and two quadratic diagonal (class I) force fields, CVFF, and Homans' extension of the AMBER force field, to account for the anomeric effects on the structural and energetic properties of carbohydrate systems. These class I force fields are unable to account for observed structural and energetic trends, exhibiting deviations as large as 5 kcal/mol in relative energies. The class II force field, on the other hand, is shown to reproduce anomeric structural as well as energetic differences. An energy component analysis of this force field shows that the anomeric differences are dominated by torsional energies, although coupling terms, especially angle/torsion, also make significant contributions (roughly 1 kcal/mol in glucose). In addition, the force field accurately accounts for both anomeric and exo-anomeric energy differences in 2-methoxytetrahydropyran, and anomeric energy differences in 2-deoxyribose and glucose.

摘要

推导二级力场的方法已应用于缩醛、半缩醛和碳水化合物化合物。选择了一组包含一个或多个异头中心的18种模型化合物来生成量子力学能量表面,从中导出力场并评估函数形式。通过将力场预测的能量表面与从头算结果进行比较来测试拟合质量。分析了结构、能量和动力学性质(振动频率)。此外,在HF/6-31G*及更高的从头算水平上计算了2-甲氧基四氢吡喃、2-脱氧核糖和葡萄糖的α和β异头平衡结构及能量。这些计算提供了来自用于推导力场的训练集之外的分子的测试数据。量子计算用于评估二级力场以及两个二次对角(一级)力场CVFF和霍曼斯对AMBER力场的扩展,以解释异头效应对碳水化合物系统结构和能量性质的影响。这些一级力场无法解释观察到的结构和能量趋势,相对能量偏差高达5千卡/摩尔。另一方面,二级力场能够重现异头结构以及能量差异。对该力场的能量成分分析表明,异头差异主要由扭转能主导,尽管耦合项,特别是角度/扭转项也有显著贡献(在葡萄糖中约为1千卡/摩尔)。此外,该力场准确地解释了2-甲氧基四氢吡喃中的异头和外异头能量差异,以及2-脱氧核糖和葡萄糖中的异头能量差异。

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