Chung Kee-Choo, Park Hwangseo
Department of Bioscience and Biotechnology, Sejong University, 209 Neungdong-ro, Kwangjin-gu, Seoul, 143-747 Republic of Korea.
J Cheminform. 2015 Nov 25;7:57. doi: 10.1186/s13321-015-0106-2. eCollection 2015.
The formation of intramolecular hydrogen bonds (IHBs) may induce the remarkable changes in molecular physicochemical properties. Within the framework of the extended solvent-contact model, we investigate the effect of implementing the IHB interactions on the accuracy in estimating the molecular hydration free energies.
The performances of hydration free energy functions including and excluding the IHB parameters are compared using the molecules distributed for SAMPL4 blind prediction challenge and those in Free Solvation Database (FSD). The calculated hydration free energies with IHB effects are found to be in considerably better agreement with the experimental data than those without them. For example, the root mean square error of the estimation decreases from 2.56 to 1.66 and from 1.73 to 1.54 kcal/mol for SAMPL4 and FSD molecules, respectively, due to the extension of atomic parameter space to cope with IHBs.
These improvements are made possible by reducing the overestimation of attractive interactions between water and the solute molecules involving IHBs. The modified hydration free energy function is thus anticipated to be useful for estimating the desolvation cost for various organic molecules.
分子内氢键(IHBs)的形成可能会引起分子物理化学性质的显著变化。在扩展溶剂接触模型的框架内,我们研究了引入分子内氢键相互作用对估算分子水合自由能准确性的影响。
使用分配用于SAMPL4盲预测挑战的分子以及自由溶剂化数据库(FSD)中的分子,比较了包含和不包含分子内氢键参数的水合自由能函数的性能。发现包含分子内氢键效应计算得到的水合自由能与实验数据的一致性明显优于不包含分子内氢键效应的情况。例如,由于扩展了原子参数空间以处理分子内氢键,对于SAMPL4和FSD分子,估算的均方根误差分别从2.56降至1.66以及从1.73降至1.54千卡/摩尔。
通过减少对涉及分子内氢键的水与溶质分子之间吸引相互作用的高估,实现了这些改进。因此,改进后的水合自由能函数有望用于估算各种有机分子的去溶剂化成本。