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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >COUPLED SEMIEMPIRICAL MOLECULAR ORBITAL AND MOLECULAR MECHANICS MODEL (QM/MM) FOR ORGANIC MOLECULES IN AQUEOUS SOLUTION
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COUPLED SEMIEMPIRICAL MOLECULAR ORBITAL AND MOLECULAR MECHANICS MODEL (QM/MM) FOR ORGANIC MOLECULES IN AQUEOUS SOLUTION

机译:水溶液中有机分子的半球形和分子力学耦合模型(QM / MM)

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摘要

A coupled quantum mechanical and molecular mechanical (QM/MM) model based on the AM1, MNDO, and PM3 semiempirical molecular orbital methods and the TIP3P molecular mechanics model for liquid water is presented. The model was parameterized for each of the three molecular orbital methods using the aqueous solvation free energies of a wide range of neutral organic molecules, many of which are representative of amino acid side chains. The fit to the experimental solvation free energies was achieved by varying the radii in the van der Waals (vdW) terms for interactions between the solute, which was treated quantum mechanically, and the molecular mechanics (TIP3P) solvent molecules. It is assumed that the total free energy can be obtained as the sum of components derived from the electrostatic terms in the Hamiltonian plus a generally smaller ''nonelectrostatic'' term. The electrostatic contributions to the solvation free energies were computed using molecular dynamics (MD) simulation and thermodynamic integration techniques; the nonelectrostatic contributions were taken from the literature. It was found that the experimental free energies could be reproduced accurately (to within 1 kcal/mol) from the MD simulations, provided that the vdW parameter associated with hydrogen bonding (H bonding) was allowed to have different values depending on the QM method (AM1, MNDO, or PM3) and the type of functional group involved in the H bonding. Moreover, the radial distribution functions obtained from the MD simulations using such a parameterization scheme showed the expected I-I-bonded structures between the solute and molecules of the solvent. The solvent-induced dipole moments also compared favorably with the results of other QM/MM model calculations. (C) 1997 John Wiley & Sons, Inc. [References: 53]
机译:建立了基于AM1,MNDO和PM3半经验分子轨道方法的量子力学和分子力学耦合模型(QM / MM),以及液态水的TIP3P分子力学模型。使用广泛的中性有机分子的水溶剂化自由能对三种分子轨道方法中的每一种参数化模型,其中许多代表氨基酸侧链。通过改变范德华(vdW)项中的半径,可以改变溶质之间的相互作用,该溶质已通过量子力学进行了处理,而溶质与分子力学(TIP3P)溶剂分子之间的相互作用也可以实现。假定可以将总自由能作为由哈密顿量中的静电项加上通常较小的“非静电”项得出的分量的总和来获得。使用分子动力学(MD)模拟和热力学积分技术计算静电对溶剂化自由能的贡献;非静电的贡献来自文献。发现通过MD模拟可以精确地复制实验自由能(至1 kcal / mol以内),前提是根据QM方法,与氢键(H键)相关的vdW参数可以具有不同的值( AM1,MNDO或PM3)以及参与H键合的官能团的类型。而且,从使用这种参数化方案的MD模拟获得的径向分布函数显示了溶剂的溶质和分子之间的预期的I-I键合结构。溶剂引起的偶极矩也与其他QM / MM模型计算的结果相比具有优势。 (C)1997 John Wiley&Sons,Inc. [参考:53]

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