Department of Physics, University of Idaho, Moscow, ID 83844-0903, USA.
J Comput Chem. 2011 Jan 15;32(1):134-41. doi: 10.1002/jcc.21609.
This report details an approach to improve the accuracy of free energy difference estimates using thermodynamic integration data (slope of the free energy with respect to the switching variable λ) and its application to calculating solvation free energy. The central idea is to utilize polynomial fitting schemes to approximate the thermodynamic integration data to improve the accuracy of the free energy difference estimates. Previously, we introduced the use of polynomial regression technique to fit thermodynamic integration data (Shyu and Ytreberg, J Comput Chem, 2009, 30, 2297). In this report we introduce polynomial and spline interpolation techniques. Two systems with analytically solvable relative free energies are used to test the accuracy of the interpolation approach. We also use both interpolation and regression methods to determine a small molecule solvation free energy. Our simulations show that, using such polynomial techniques and nonequidistant λ values, the solvation free energy can be estimated with high accuracy without using soft-core scaling and separate simulations for Lennard-Jones and partial charges. The results from our study suggest that these polynomial techniques, especially with use of nonequidistant λ values, improve the accuracy for ΔF estimates without demanding additional simulations. We also provide general guidelines for use of polynomial fitting to estimate free energy. To allow researchers to immediately utilize these methods, free software and documentation is provided via http://www.phys.uidaho.edu/ytreberg/software.
本报告详细介绍了一种利用热力学积分数据(自由能相对于切换变量 λ 的斜率)来提高自由能差估计精度的方法,并将其应用于计算溶剂化自由能。其核心思想是利用多项式拟合方案来逼近热力学积分数据,以提高自由能差估计的准确性。此前,我们引入了多项式回归技术来拟合热力学积分数据(Shyu 和 Ytreberg,J Comput Chem,2009,30,2297)。在本报告中,我们介绍了多项式和样条插值技术。使用两个具有解析可解相对自由能的系统来测试插值方法的准确性。我们还使用插值和回归方法来确定小分子的溶剂化自由能。我们的模拟表明,使用这种多项式技术和非等距 λ 值,可以在不使用软核缩放和单独模拟 Lennard-Jones 和部分电荷的情况下,以高精度估计溶剂化自由能。我们的研究结果表明,这些多项式技术,特别是使用非等距 λ 值,可以在不要求额外模拟的情况下提高 ΔF 估计的准确性。我们还提供了使用多项式拟合来估计自由能的一般指南。为了允许研究人员立即利用这些方法,通过 http://www.phys.uidaho.edu/ytreberg/software 提供了免费的软件和文档。