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Identifying low variance pathways for free energy calculations of molecular transformations in solution phase

机译:识别低方差途径,以进行溶液相中分子转化的自由能计算

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Improving the efficiency of free energy calculations is important for many biological and materials design applications, such as protein-ligand binding affinities in drug design, partitioning between immiscible liquids, and determining molecular association in soft materials. We show that for any pair potential, moderately accurate estimation of the radial distribution function for a solute molecule is sufficient to accurately estimate the statistical variance of a sampling along a free energy pathway. This allows inexpensive analytical identification of low statistical error free energy pathways. We employ a variety of methods to estimate the radial distribution function (RDF) and find that the computationally cheap two-body "dilute gas" limit performs as well or better than 3D-RISM theory and other approximations for identifying low variance free energy pathways.With a RDF estimate in hand, we can search for pairwise interaction potentials that produce low variance.We give an example of a search minimizing statistical variance of solvation free energy over the entire parameter space of a generalized "soft core" potential. The free energy pathway arising from this optimization procedure has lower curvature in the variance and reduces the total variance by at least 50% compared to the traditional soft core solvation pathway. We also demonstrate that this optimized pathway allows free energies to be estimated with fewer intermediate states due to its low curvature. This free energy variance optimization technique is generalizable to solvation in any homogeneous fluid and for any type of pairwise potential and can be performed in minutes to hours, depending on the method used to estimate g(r).
机译:对于许多生物学和材料设计应用而言,提高自由能计算效率非常重要,例如药物设计中的蛋白质-配体结合亲和力,不混溶液体之间的分配以及确定软材料中的分子缔合。我们表明,对于任何一对电位,溶质分子的径向分布函数的适度准确估算足以准确估算沿自由能途径的采样的统计方差。这允许低统计无误能量路径的廉价分析鉴定。我们采用了多种方法来估计径向分布函数(RDF),并发现计算上便宜的两体“稀薄气体”极限的性能与3D-RISM理论和用于识别低方差自由能路径的其他近似方法一样好或更好。有了RDF估计,我们可以搜索产生低方差的成对相互作用势。我们给出一个搜索示例,该搜索将广义“软核”势的整个参数空间上的溶剂化自由能的统计方差最小化。与传统的软核溶剂化途径相比,此优化过程产生的自由能途径的方差曲率较低,总方差降低了至少50%。我们还证明,由于其低曲率,这种优化路径允许以较少的中间状态估算自由能。这种自由能方差优化技术可推广到任何均质流体中和任何成对电位的溶剂化中,并且可在数分钟至数小时内完成,具体取决于用于估算g(r)的方法。

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