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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Force matching as a stepping stone to QM/MM CB[8] host/guest binding free energies: a SAMPL6 cautionary tale
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Force matching as a stepping stone to QM/MM CB[8] host/guest binding free energies: a SAMPL6 cautionary tale

机译:力匹配作为跨脚石头到qm / mm cb [8]主机/访客装订免费能量:a sampl6警告故事

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Use of quantum mechanical/molecular mechanical (QM/MM) methods in binding free energy calculations, particularly in the SAMPL challenge, often fail to achieve improvement over standard additive (MM) force fields. Frequently, the implementation is through use of reference potentials, or the so-called “indirect approach”, and inherently relies on sufficient overlap existing between MM and QM/MM configurational spaces. This?overlap is generally?poor, particularly for the use of free energy perturbation to perform the MM to QM/MM free energy correction at the end states of interest (e.g., bound and unbound states). However, by utilizing MM parameters that best reproduce forces obtained at the desired QM level of theory, it is possible to lessen the configurational disparity between MM and QM/MM. To this end, we sought to use force matching to generate MM parameters for the SAMPL6 CB[8] host–guest binding challenge, classically compute binding free energies, and apply energetic end state corrections to obtain QM/MM binding free energy differences. For the standard set of 11 molecules and the bonus set (including three additional challenge molecules), error statistics, such as the root mean square deviation (RMSE) were moderately poor (5.5 and 5.4 kcal/mol). Correlation statistics, however, were in the top two for both standard and bonus set submissions ( $$R^{2}$$ R 2 of 0.42 and 0.26, $$au$$ τ of 0.64 and 0.47 respectively). High RMSE and moderate correlation strongly indicated the presence of systematic error. Identifiable issues were ameliorated for two of the guest molecules, resulting in a reduction of error and pointing to strong prospects for the?future use of this methodology.
机译:使用量子机械/分子机械(QM / mm)方法在结合的可自由能量计算中,特别是在SAMPL挑战中,通常不能达到标准添加剂(MM)力场的改善。通常,实现是通过使用参考电位,或所谓的“间接方法”,并且固有地依赖于存在于MM和QM / MM配置空间之间的充分重叠。这通常是困难的?差,特别是在利息的结束状态下使用自由能量扰动来执行MM到QM / MM的自由能量校正(例如,结合和未结合状态)。然而,通过利用在理论上获得所需的QM水平获得的最佳再现力的MM参数,可以减少MM和QM / mm之间的配置视差。为此,我们寻求使用强制匹配来为SAMPL6 CB [8]主机绑定挑战的MM参数,经典计算无绑定能量,并施加能量最终状态校正以获得QM / mm绑定无限能量差异。对于11种分子的标准组和奖励集(包括三个额外挑战分子),误差统计数据,例如根均方偏差(RMSE)适度差(5.5和5.4千卡/摩尔)。然而,相关统计数据位于标准和奖励集中的前两个($$ ^ {2} $$ r r r r r r 2,$$ tau $$τ0.64和0.47)。强烈的RMSE和中等相关强烈指出了系统误差的存在。可识别的问题对于两位客体分子进行了改善,导致错误的误差和指向强烈的前景?未来使用这种方法。

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