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使用半经验量子力学哈密顿量和具有多种原子类型参数的连续溶剂模型计算水合自由能。

Hydration free energies using semiempirical quantum mechanical Hamiltonians and a continuum solvent model with multiple atomic-type parameters.

机构信息

School of Biomedical Informatics, University of Texas Health Science Center at Houston, 7000 Fannin Street, Houston, Texas 77030, United States.

出版信息

J Phys Chem B. 2011 Jun 23;115(24):7896-905. doi: 10.1021/jp203885n. Epub 2011 May 27.

Abstract

To build the foundation for accurate quantum mechanical (QM) simulation of biomacromolecules in an aqueous environment, we undertook the optimization of the COnductor-like Screening MOdel (COSMO) atomic radii and atomic surface tension coefficients for different semiempirical Hamiltonians adhering to the same computational conditions recently followed in the simulation of biomolecular systems. This optimization was achieved by reproducing experimental hydration free energies of a set consisting of 507 neutral and 99 ionic molecules. The calculated hydration free energies were significantly improved by introducing a multiple atomic-type scheme that reflects different chemical environments. The nonpolar contribution was treated according to the scaled particle Claverie-Pierotti formalism. Separate radii and surface tension coefficient sets have been developed for AM1, PM3, PM5, and RM1 semiempirical Hamiltonians, with an average unsigned error for neutral molecules of 0.64, 0.66, 0.73, and 0.71 kcal/mol, respectively. Free energy calculation of each molecule took on average 0.5 s on a single processor. The new sets of parameters will enhance the quality of semiempirical QM calculations using COSMO in biomolecular systems. Overall, these results further extend the utility of QM methods to chemical and biological systems in the condensed phase.

摘要

为了为在水相环境中准确进行生物大分子的量子力学(QM)模拟奠定基础,我们针对不同的半经验哈密顿量,对 COnductor-like Screening MOdel(COSMO)原子半径和原子表面张力系数进行了优化,这些半经验哈密顿量遵循最近在生物分子体系模拟中所采用的相同计算条件。通过重现由 507 个中性和 99 个离子分子组成的一组的实验水化自由能,实现了这种优化。通过引入一种反映不同化学环境的多原子类型方案,计算得到的水化自由能得到了显著改善。非极性贡献根据比例粒子 Claverie-Pierotti 形式主义进行处理。分别为 AM1、PM3、PM5 和 RM1 半经验哈密顿量开发了半径和表面张力系数集,对于中性分子,其平均未签名误差分别为 0.64、0.66、0.73 和 0.71 kcal/mol。每个分子的自由能计算平均在单个处理器上耗时 0.5 秒。新的参数集将提高在生物分子体系中使用 COSMO 进行半经验 QM 计算的质量。总的来说,这些结果进一步扩展了 QM 方法在凝聚相中的化学和生物学系统中的应用。

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