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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Predictions of Hydration Free Energies from All-Atom Molecular Dynamics Simulations
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Predictions of Hydration Free Energies from All-Atom Molecular Dynamics Simulations

机译:从全原子分子动力学模拟预测无水合能

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Here,we computed the aqueous solvation(hydration)free energies of 52 small drag-like molecules using an all-atom force field in explicit water.This differs from previous studies in that(1)this was a blind test(in an event called SAMPL sponsored by OpenEye Software)and(2)the test compounds were considerably more challenging than have been used in the past in typical solvation tests of all-atom models.Overall,we found good correlations with experimental values which were subsequently made available,but the variances are large compared to those in previous tests.We tested several different charge models and found that several standard charge models performed relatively well.We found that hypervalent sulfur and phosphorus compounds are not well handled using current force field parameters and suggest several other possible systematic errors.Overall,blind tests like these appear to provide significant opportunities for improving force fields and solvent models.
机译:在这里,我们使用显原子水中的全原子力场计算了52个小阻力状小分子的水合(水合)自由能。这与以前的研究不同之处在于(1)这是一个盲测(在称为(2)测试化合物比过去在全原子模型的典型溶剂化测试中使用的化合物更具挑战性。总的来说,我们发现与后来获得的实验值具有良好的相关性,但是与以前的测试相比,差异较大。我们测试了几种不同的电荷模型,发现几种标准电荷模型的性能相对较好。我们发现使用当前的力场参数无法很好地处理高价硫和磷化合物,并提出了其他几种可能的方法系统错误。像这样的总体盲测试似乎为改善力场和溶剂模型提供了重要机会。

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