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W-RESP:良好约束静电势衍生电荷。重新审视电荷衍生模型。

W-RESP: Well-Restrained Electrostatic Potential-Derived Charges. Revisiting the Charge Derivation Model.

机构信息

Department of Physical Chemistry, Faculty of Science, Palacký University, tř. 17 listopadu 12, 771 46 Olomouc, Czech Republic.

Institute of Biophysics of the Czech Academy of Sciences, Královopolská 135, 612 65 Brno, Czech Republic.

出版信息

J Chem Theory Comput. 2021 Jun 8;17(6):3495-3509. doi: 10.1021/acs.jctc.0c00976. Epub 2021 May 17.

DOI:10.1021/acs.jctc.0c00976
PMID:33999623
Abstract

Representation of electrostatic interactions by a Coulombic pairwise potential between atom-centered partial charges is a fundamental and crucial part of empirical force fields used in classical molecular dynamics simulations. The broad success of the AMBER force-field family originates mainly from the restrained electrostatic potential (RESP) charge model, which derives partial charges to reproduce the electrostatic field around the molecules. However, the description of the electrostatic potential around molecules by standard RESP may be biased for some types of molecules. In this study, we modified the RESP charge derivation model to improve its description of the electrostatic potential around molecules and thus electrostatic interactions in the force field. In particular, we reoptimized the atomic radii for definition of the grid points around the molecule, redesigned the restraining scheme, and included extra point (EP) charges. The RESP fitting was significantly improved for aromatic heterocyclic molecules. Thus, the suggested W-RESP(-EP) charge derivation model shows some potential for improving the performance of the nucleic acid force fields, for which the poor description of nonbonded interactions, such as the underestimated stability of base pairing, is well-established. We also report some preliminary simulation tests (around 1 ms of simulation data) on A-RNA duplexes, tetranucleotides, and tetraloops. The simulations reveal no adverse effects, while the description of base-pairing interactions might be improved. The new charges can thus be used in future attempts to improve the nucleic acid simulation force fields, in combination with reparametrization of the other terms.

摘要

在经典分子动力学模拟中,使用经验力场时,原子中心部分电荷之间的库仑偶极相互作用表示是一个基本且关键的部分。AMBER 力场家族的广泛成功主要源于受限静电势 (RESP) 电荷模型,该模型推导出部分电荷以再现分子周围的静电场。然而,标准 RESP 对分子周围静电势的描述可能对某些类型的分子存在偏差。在这项研究中,我们修改了 RESP 电荷推导模型,以改善其对分子周围静电势的描述,从而改进力场中的静电相互作用。具体来说,我们重新优化了用于定义分子周围网格点的原子半径,重新设计了约束方案,并包含了额外点 (EP) 电荷。芳香杂环分子的 RESP 拟合得到了显著改善。因此,所提出的 W-RESP(-EP) 电荷推导模型显示出了改进核酸力场性能的潜力,因为这些力场对非键相互作用的描述较差,例如碱基对的稳定性被低估,这是众所周知的。我们还报告了一些关于 A-RNA 双链体、四核苷酸和四环的初步模拟测试(约 1 毫秒的模拟数据)。模拟没有发现不良影响,而碱基对相互作用的描述可能有所改善。因此,这些新电荷可用于未来尝试改进核酸模拟力场的尝试中,同时重新参数化其他项。

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