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使用双指数势确定 TIP3P 溶剂中非键合二价金属阳离子的范德华参数。

Determination of van der Waals Parameters Using a Double Exponential Potential for Nonbonded Divalent Metal Cations in TIP3P Solvent.

机构信息

Department of Pharmaceutical Sciences and Computational Chemical Genomics Screening Center, School of Pharmacy, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, United States.

Laboratory of Computational Biology, National Heart, Lung, and Blood Institute, National Institute of Health, Bethesda, Maryland 20892, United States.

出版信息

J Chem Theory Comput. 2021 Feb 9;17(2):1086-1097. doi: 10.1021/acs.jctc.0c01267. Epub 2021 Jan 27.

Abstract

A double exponential (DE) functional form for Lennard-Jones (LJ) interactions, proposed in our previous study, has many advantages over LJ potentials including a natural softcore characteristic for the convenience of the pathway-based free-energy calculations, fast convergence, and flexibility in use. In this work, we put the first step on the application of the DE functional form by identifying a DE potential, coined DE-TIP3P, for molecular simulations using the TIP3P water model. The developed DE-TIP3 potential was better than LJ potential in reproducing the experimental water properties. Afterward, we developed the nonbonded models of 15 divalent metal ions, which frequently appear and play vital roles in biological systems, to be consistent with the DE-TIP3P potential and TIP3P water model. Our nonbonded models were as good as the complicated nonbonded dummy cationic models by Jiang et al. and the nonbonded 12-6-4 LJ models by Li and Merz in reproducing the experimental properties of those ions. Moreover, our nonbonded models achieved a better performance than the compromise (CM) LJ models and 12-6-4 LJ models, developed by Li and Merz, in reproducing the properties of MgCl in aqueous solution.

摘要

我们之前的研究提出了一种双指数(DE)函数形式的 Lennard-Jones(LJ)相互作用,与 LJ 势能相比,它具有许多优势,包括自然的软核特性,便于基于途径的自由能计算,快速收敛以及使用的灵活性。在这项工作中,我们通过确定一种用于使用 TIP3P 水模型进行分子模拟的 DE 势能,即 DE-TIP3P,迈出了应用 DE 函数形式的第一步。开发的 DE-TIP3 势能在再现实验水性质方面优于 LJ 势能。之后,我们开发了 15 种二价金属离子的非键模型,这些离子在生物系统中经常出现并起着至关重要的作用,以与 DE-TIP3P 势能和 TIP3P 水模型保持一致。我们的非键模型与 Jiang 等人的复杂非键虚拟阳离子模型以及 Li 和 Merz 的非键 12-6-4 LJ 模型一样出色,在再现这些离子的实验性质方面表现出色。此外,我们的非键模型在再现 MgCl 在水溶液中的性质方面,比 Li 和 Merz 开发的折衷(CM)LJ 模型和 12-6-4 LJ 模型表现更好。

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