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Use of Interaction Energies in QM/MM Free Energy Simulations

机译:在QM / MM自由能模拟中使用交互能量

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The use of the most accurate (i.e., QM or QM/MM) levels of theory for free energy simulations (FES) is typically not possible. Primarily, this is because the computational cost associated with the extensive configurational sampling needed for converging FES is prohibitive. To ensure the feasibility of QM-based FES, the "indirect" approach is generally taken, necessitating a free energy calculation between the MM and QM/MM potential energy surfaces. Ideally, this step is performed with standard free energy perturbation (Zwanzig's equation) as it only requires simulations be carried out at the low level of theory; however, work from several groups over the past few years has conclusively shown that Zwanzig's equation is ill-suited to this task. As such, many approximations have arisen to mitigate difficulties with Zwanzig's equation. One particularly popular notion is that the convergence of Zwanzig's equation can be improved by using interaction energy differences instead of total energy differences. Although problematic numerical fluctuations (a major problem when using Zwanzig's equation) are indeed reduced, our results and analysis demonstrate that this "interaction energy approximation" (IEA) is theoretically incorrect, and the implicit approximation invoked is spurious at best. Herein, we demonstrate this via solvation free energy calculations using IEA from two different low levels of theory to the same target high level. Results from this proof-ofconcept consistently yield the wrong results, deviating by similar to 1.5 kcal/mol from the rigorously obtained value.
机译:通常不可能使用最准确的(即QM或QM / mm)理论(FES)的理论。主要是,这是因为与收敛FE所需的广泛配置采样相关联的计算成本是禁止的。为了确保基于QM的FES的可行性,通常采用“间接”方法,需要在MM和QM / MM电位能表面之间进行自由能计算。理想情况下,该步骤是以标准的自由能量扰动(Zwanzig的等式)进行的,因为它只需要在低级别的理论下进行模拟;然而,在过去几年中的几个团体中的工作得出了得出结论,Zwanzig的等式对此任务不适合。因此,出现了许多近似,以减轻Zwanzig等式的困难。一种特别受欢迎的概念是,通过使用交互能量差异而不是总能量差异,可以改善Zwanzig等式的汇聚。虽然有问题的数值波动(使用Zwanzig等式时的主要问题)确实减少,但我们的结果和分析表明,这种“交互能量逼近”(IEA)是理论上不正确的,并且充其量的隐式近似是虚假的。在此,我们通过使用IEA从两个不同的低水平理论到同一目标高水平的溶剂化自由能量计算来证明这一点。该证明概念的结果一致地产生错误的结果,偏离类似于1.5千卡/摩尔,从严格获得的值。

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