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Development of Polarizable Models for Molecular Mechanical Calculations IV: van der Waals parameterization

机译:用于分子机械计算的可极化模型IV:Van der Waals参数化

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摘要

In the previous publications of this series, we presented a set of Thole induced dipole interaction models using four types of screening functions. In this work, we document our effort to refine the van der Waals parameters for the Thole polarizable models. Following the philosophy of AMBER force field development, the van der Waals (vdW) parameters were tuned for the Thole model with linear screening function to reproduce both the ab initio interaction energies and the experimental densities of pure liquids. An in-house genetic algorithm was applied to maximize the fitness of “chromosomes” which is a function of the root-mean-square errors (RMSE) of interaction energy and liquid density. To efficiently explore the vdW parameter space, a novel approach was developed to estimate the liquid densities for a given vdW parameter set using the mean residue-residue interaction energies through interpolation/extrapolation. This approach allowed the costly molecular dynamics simulations be performed at the end of each optimization cycle only and eliminated the simulations during the cycle.Test results show notable improvements over the original AMBER FF99 vdW parameter set as indicated by the reduction in errors of the calculated pure liquid density (d), heat of vaporization (Hvap) and hydration energy. The average percent error (APE) of the densities of 59 pure liquids was reduced from 5.33% to 2.97%; the RMSE of Hvap was reduced from 1.98 kcal/mol to 1.38 kcal/mol; the RMSE of solvation free energies of 15 compounds was reduced from 1.56 kcal/mol to 1.38 kcal/mol. For the interaction energies of 1639 dimers, the overall performance of the optimized vdW set is slightly better than the original FF99 vdW set (RMSE of 1.56 versus 1.63 kcal/mol).The optimized vdW parameter set was also evaluated for the exponential screening function used in the Amoeba force field to assess its applicability for different types of screening functions. Encouragingly, comparable performance was observed when the optimized vdW set was combined with Thole Amoeba-like polarizable model, particularly for the interaction energy and liquid density calculations. Thus, the optimized vdW set is applicable to both types of Thole models with either linear or Amoeba-like screening functions.
机译:在本系列的先前出版物中,我们使用四种类型的筛选功能提出了一组旋流诱导的偶极交互模型。在这项工作中,我们记录了我们的努力,为Thole可极化模型提供van der Waals参数。在琥珀色的哲学田间开发之后,用线性筛选功能调整van der WAALS(VDW)参数,以再现AB Initio相互作用能量和纯液体的实验密度。应用内部遗传算法以最大化“染色体”的适应性,其是相互作用能量和液体密度的根均方误差(RMSE)的函数。为了有效地探索VDW参数空间,开发了一种新的方法来估计通过插值/外插的平均残留物 - 残基相互作用能量来估计给定VDW参数集的液体密度。这种方法允许在每个优化周期的末尾进行昂贵的分子动力学模拟,并在循环期间消除了模拟。最终结果显示了原始琥珀色FF99 VDW参数的显着改进,如所计算的纯粹错误的减少所示液体密度(d),蒸发热(HVAP)和水化能量。 59纯液体密度的平均误差(APE)从5.33%降低至2.97%; HVAP的RMSE从1.98千卡/摩尔降至1.38千卡/摩尔; 15种化合物的溶剂化自由能量的RMSE从1.56千卡/摩尔降低至1.38kcal / mol。对于1639二维的交互能量,优化的VDW集的整体性能略好于原始FF99 VDW集(RMSE为1.56与1.63 kcal / mol)。还评估了所使用的指数筛选功能的优化VDW参数集在Amoeba力领域,以评估其对不同类型的筛选功能的适用性。当优化的VDW集合与旋泳AmoEba的可极化模型相结合时,观察到,观察到相当的性能,特别是对于相互作用和液体密度计算。因此,优化的VDW集适用于具有线性或AmoEBA的筛选功能的两种类型的晶尔模型。

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