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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Comparative assessment of computational methods for the determination of solvation free energies in alcohol-based molecules
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Comparative assessment of computational methods for the determination of solvation free energies in alcohol-based molecules

机译:测定醇基分子中溶剂化自由能的计算方法的比较评估

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The determination of differences in solvation free energies between related drug molecules remains an important challenge in computational drug optimization, when fast and accurate calculation of differences in binding free energy are required. In this study, we have evaluated the performance of five commonly used polarized continuum model (PCM) methodologies in the determination of solvation free energies for 53 typical alcohol and alkane small molecules. In addition, the performance of these PCM methods, of a thermodynamic integration (TI) protocol and of the Poisson-Boltzmann (PB) and generalized Born (GB) methods, were tested in the determination of solvation free energies changes for 28 common alkane-alcohol transformations, by the substitution of an hydrogen atom for a hydroxyl substituent. The results show that the solvation model D (SMD) performs better among the PCM-based approaches in estimating solvation free energies for alcohol molecules, and solvation free energy changes for alkane-alcohol transformations, with an average error below 1 kcal/mol for both quantities. However, for the determination of solvation free energy changes on alkane-alcohol transformation, PB and TI yielded better results. TI was particularly accurate in the treatment of hydroxyl groups additions to aromatic rings (0.53 kcal/mol), a common transformation when optimizing drug-binding in computer-aided drug design.
机译:当需要快速准确地计算结合自由能的差异时,确定相关药物分子之间的溶剂化自由能的差异仍然是计算药物优化中的一项重要挑战。在这项研究中,我们评估了五种常用的极化连续介质模型(PCM)方法在确定53种典型的醇和烷烃小分子的溶剂化自由能方面的性能。此外,这些PCM方法,热力学积分(TI)协议以及Poisson-Boltzmann(PB)和广义Born(GB)方法的性能在确定28种常见烷烃的溶剂化自由能变化时均经过了测试。通过氢原子取代羟基取代基进行醇转化。结果表明,在基于PCM的方法中,溶剂化模型D(SMD)在估计醇分子的溶剂化自由能和烷烃-醇转化的溶剂化自由能变化方面表现更好,两者的平均误差均低于1 kcal / mol。数量。但是,为了确定烷烃-醇转化中的溶剂化自由能变化,PB和TI产生了更好的结果。 TI在芳香环加成羟基(0.53 kcal / mol)的处理中特别准确,这是在计算机辅助药物设计中优化药物结合时的常见转变。

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