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泊松-玻尔兹曼隐式溶剂的分子动力学定量分析。

Quantitative analysis of Poisson-Boltzmann implicit solvent in molecular dynamics.

机构信息

Department of Molecular Biology and Biochemistry, University of California, Irvine, CA 92697-3900, USA.

出版信息

Phys Chem Chem Phys. 2010 Feb 7;12(5):1194-202. doi: 10.1039/b917775b. Epub 2009 Dec 23.

Abstract

A critical issue in the development of implicit solvent models is their quality in realistic simulations of non-trivial systems. In a previous study, we quantitatively compared the reaction field energies of static structures calculated with the Poisson-Boltzmann implicit solvent and the TIP3P explicit solvent and found an overall agreement, though a discrepancy was also observed in the electrostatic potentials of mean force for salt-bridging and hydrogen-bonding dimers (see J. Phys. Chem. B, 2006, 110, 18680). In this study, we are interested in how the implicit solvent performs in molecular dynamics simulations. To guarantee sampling convergence in simulated observables in the explicit solvent, we explored to use a high-temperature constant-volume simulation setting at 450 K but with the water density at 300 K. The relevance of the artificial simulation setting to room-temperature simulations of biomolecules was first investigated by systematic comparisons of the polar and nonpolar solvation free energies of 23 amino acid analogues at 300 K and 450 K, respectively. Assisted by the artificial simulation setting, we found the simulated secondary structure populations agree very well between the implicit and explicit solvents for tested dipeptides and peptides. In addition, the agreement in the populations of hydrophobic contacts is reasonable. However, our analysis also shows that the populations of the salt bridges are too low in the implicit solvent. The low salt-bridge population perhaps results from a combination of the atomic-centered modified van der Waals surface and the small solvent probe radius optimized to best reproduce the polar potential of mean force profiles. In addition, the lower accuracy of the electrostatic forces and the lack of water-bridged minima in the implicit solvents may also contribute to the instability of the salt bridge populations.

摘要

在隐溶剂模型的发展中,一个关键问题是它们在复杂体系真实模拟中的质量。在之前的研究中,我们定量比较了用泊松-玻尔兹曼隐溶剂和 TIP3P 显溶剂计算的静态结构的反应场能量,发现总体上是一致的,尽管在盐桥和氢键二聚体的平均力静电势中也存在差异(参见《物理化学杂志 B》,2006 年,110,18680)。在本研究中,我们关注隐溶剂在分子动力学模拟中的表现。为了保证在显溶剂中模拟观测值的采样收敛,我们探索了在 450 K 的高温等容模拟设置下使用,但水的密度为 300 K。首先通过系统比较 23 种氨基酸类似物在 300 K 和 450 K 时的极性和非极性溶剂化自由能,研究了这种人为模拟设置与生物分子室温模拟的相关性。在人为模拟设置的辅助下,我们发现测试的二肽和肽在隐溶剂和显溶剂中模拟的二级结构群体非常吻合。此外,疏水性接触的群体也很合理。然而,我们的分析还表明,在隐溶剂中盐桥的群体太低。盐桥群体较低可能是由于原子中心修正的范德华表面和优化以最佳重现平均力静电势分布的小溶剂探针半径的组合所致。此外,隐溶剂中静电力的准确性较低以及缺乏水桥接的最小值也可能导致盐桥群体的不稳定性。

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