首页> 外文期刊>Journal of Computer-Aided Molecular Design >Adapting the semi-explicit assembly solvation model for estimating water-cyclohexane partitioning with the SAMPL5 molecules
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Adapting the semi-explicit assembly solvation model for estimating water-cyclohexane partitioning with the SAMPL5 molecules

机译:修改半显式组装溶剂化模型以估计SAMPL5分子对水-环己烷的分配

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摘要

We describe here some tests we made in the SAMPL5 communal event of 'Semi-Explicit Assembly' (SEA), a recent method for computing solvation free energies. We combined the prospective tests of SAMPL5 with followup retrospective calculations, to improve two technical aspects of the field variant of SEA. First, SEA uses an approximate analytical surface around the solute on which a water potential is computed. We have improved and simplified the mathematical model of that surface. Second, some of the solutes in SAMPL5 were large enough to need a way to treat solvating waters interacting with 'buried atoms', i.e. interior atoms of the solute. We improved SEA with a buried-atom correction. We also compare SEA to Thermodynamic Integration molecular dynamics simulations, so that we can sort out force field errors.
机译:我们在这里描述我们在“半显式装配”(SEA)的SAMPL5公共事件中进行的一些测试,这是一种计算溶剂化自由能的最新方法。我们将SAMPL5的前瞻性测试与后续回顾性计算相结合,以改善SEA现场变量的两个技术方面。首先,SEA使用围绕溶质的近似分析表面来计算水势。我们已经改进和简化了该表面的数学模型。其次,SAMPL5中的某些溶质足够大,需要一种方法来处理与“埋藏的原子”(即溶质的内部原子)相互作用的溶剂化水。我们通过掩埋原子校正改进了SEA。我们还将SEA与热力学积分分子动力学模拟进行了比较,以便我们可以找出力场误差。

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