论文标题

用于溶剂溶解度自由能的范德华和库仑组件的一致炼金术计算的新公式

A New Formulation for the Concerted Alchemical Calculation of van der Waals and Coulomb Components of Solvation Free Energies

论文作者

Correa, Gabriela B., Maciel, Jessica C. S. L., Tavares, Frederico W., Abreu, Charlles R. A.

论文摘要

通过分子动力学计算炼金术自由能计算已被广泛用于获得与蛋白质 - 配体结合和溶质 - 溶剂相互作用相关的热力学特性。尽管软核建模是最常见的方法,但线性基函数(LBF)方法[Naden,L。N。;等。 J. Chem。理论计算。 2014,10(3),1128; 2015,11(6),2536]已成为合适的选择。它克服了缩放方法的终点奇点,同时保持了基本优势,例如易于实施和高灵活性,以进行后处理分析。在目前的工作中,我们提出了一个简单的LBF变体,并制定了一种有效的方案,用于评估串联炼金术转换的范德华和库仑成分,与普遍的顺序评估模式相反。为了验证我们的建议,这是由仔细的优化研究导致的,我们进行了溶剂化的自由能计算,并获得了小有机分子的辛醇 - 水分系数。使用另一种LBF方法或软核模型证明我们方法的有效性和正确性,与通过顺序模式获得的结果进行比较。此外,我们表明,使用无限介电常数的反应场模型在使用时可以提供非常准确的水合自由能,而不是晶格 - 和方法,以建模溶质 - 溶质溶剂静电仪。

Alchemical free energy calculations via molecular dynamics have been widely used to obtain thermodynamic properties related to protein-ligand binding and solute-solvent interactions. Although soft-core modeling is the most common approach, the linear basis function (LBF) methodology [Naden, L. N.; et al. J. Chem. Theory Comput. 2014, 10 (3), 1128; 2015, 11 (6), 2536] has emerged as a suitable alternative. It overcomes the end-point singularity of the scaling method while maintaining essential advantages such as ease of implementation and high flexibility for postprocessing analysis. In the present work, we propose a simple LBF variant and formulate an efficient protocol for evaluating van der Waals and Coulomb components of an alchemical transformation in tandem, in contrast to the prevalent sequential evaluation mode. To validate our proposal, which results from a careful optimization study, we performed solvation free energy calculations and obtained octanol-water partition coefficients of small organic molecules. Comparisons with results obtained via the sequential mode using either another LBF approach or the soft-core model attest to the effectiveness and correctness of our method. In addition, we show that a reaction field model with an infinite dielectric constant can provide very accurate hydration free energies when used instead of a lattice-sum method to model solute-solvent electrostatics.

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