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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Host-Guest Relative Binding Affinities at Density-Functional Theory Level from Semiempirical Molecular Dynamics Simulations
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Host-Guest Relative Binding Affinities at Density-Functional Theory Level from Semiempirical Molecular Dynamics Simulations

机译:半透明分子动力学模拟中密度函数理论水平的宿主 - 访客相对结合亲和力

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Relative free energies for the binding of nine cyclic carboxylate ligands to the octa-acid deep-cavity host were calculated at the combined density-functional theory and molecular mechanics (DFT/MM) level of theory. The DFT calculations employed the BLYP functional and the 6-31G* basis set for the ligand. We employed free-energy perturbations (FEP) with the reference-potential approach and used molecular dynamics (MD) simulations with the semiempirical quantum mechanical (SQM) PM6-DH+ method for the ligand as an intermediate level between MM and DFT/MM to improve the convergence. Thus, the relative binding free energy of two ligands was first calculated at the MM level by an alchemical transformation from one ligand to another in both the bound and unbound states. Then, for each ligand the free-energy correction for going from the MM to the SQM/MM potentials was calculated using explicit SQM/MM MD simulations. Finally, the free-energy correction for going from the SQM/MM to the DFT/MM potentials was estimated with FEP without running any DFT/MM simulations. Instead, the free energy was calculated by singlestep exponential averaging (ssEA) or employing the cumulant approximation to the second order (CA). The results show that CA converges much better than ssEA, and with 500-4500 DFT/MM single-point energy calculations, converged free energies with a precision of 0.3 kJ/mol can be obtained. These free energies reproduce the experimental binding free energy differences with a mean absolute deviation of 3.4 kJ/mol, a correlation (R-2) of 0.97, and correct signs for all of the eight free-energy differences. This is appreciably better than the results obtained at the SQM/MM level of theory and also slightly better than those obtained with MM. We show that the convergence of the SQM/MM -> DFT/MM perturbations can be monitored by the use of Wu and Kofke's bias metric Pi and by the standard deviation of the difference between the SQM/MM and DFT/MM energies. Finally, we show that the use of the intermediate SQM/MM MD simulations improves the convergence of the free energies by a factor of at least two, compared to doing direct MM -> DFT/MM perturbations.
机译:在组合的密度 - 功能理论和分子力学(DFT / MM)理论上,计算与九环羧酸盐配体与八藻羧酸盐配体结合到八藻羧酸盐配体的相对电能。 DFT计算采用Blyp功能和6-31g *为配体设定。我们使用具有参考电位方法的自由能扰动(FEP),并使用用于配体的半透明量子机械(SQM)PM6-DH +方法的分子动力学(MD)模拟作为MM和DFT / mm之间的中间水平,以改善收敛。因此,首先通过从一个配体的脱氮和未结合的状态中从一个配体到另一个配体的脱氧型转化来计算两个配体的相对结合能量。然后,对于每个配体,使用显式SQM / mm MD模拟计算从MM到SQM / MM电位的自由能校正。最后,使用FEP估计从SQM / MM到DFT / MM电位的自由能校正,而不运行任何DFT / MM模拟。相反,通过Singlestep指数平均(SSEA)计算自由能量,或者使用累积近似到二阶(CA)。结果表明,CA会收敛比SSEA好,500-4500 DFT / MM单点能量计算,可以获得精度为0.3kJ / mol的可收敛能量。这些游离能量再现了与3.4kJ / mol的平均绝对偏差的实验结合能量差,相关性(R-2)为0.97,以及所有八个自由能差异的正确迹象。这比在理论的SQM / mm水平上获得的结果更好,并且也比用mM获得的结果略好。我们表明,可以通过使用Wu和Kofke的偏置度量PI和SQM / MM和DFT / MM能量之间的差异的标准偏差来监测SQM / MM - > DFT / MM扰动的收敛。最后,我们表明,与执行Direct MM - > DFT / MM扰动相比,使用中间SQM / MM MD模拟的使用提高了自由能量至少两个的因子。

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