Institut für Physikalische Chemie, Universität Karlsruhe, Karlsruhe, Germany.
J Comput Chem. 2011 Nov 30;32(15):3253-63. doi: 10.1002/jcc.21909. Epub 2011 Aug 27.
Molecular dynamics-based free energy calculations allow the determination of a variety of thermodynamic quantities from computer simulations of small molecules. Thermodynamic integration (TI) calculations can suffer from instabilities during the creation or annihilation of particles. This "singularity" problem can be addressed with "soft-core" potential functions which keep pairwise interaction energies finite for all configurations and provide smooth free energy curves. "One-step" transformations, in which electrostatic and van der Waals forces are simultaneously modified, can be simpler and less expensive than "two-step" transformations in which these properties are changed in separate calculations. Here, we study solvation free energies for molecules of different hydrophobicity using both models. We provide recommended values for the two parameters α(LJ) and β(C) controlling the behavior of the soft-core Lennard-Jones and Coulomb potentials and compare one- and two-step transformations with regard to their suitability for numerical integration. For many types of transformations, the one-step procedure offers a convenient and accurate approach to free energy estimates.
基于分子动力学的自由能计算可以从小分子的计算机模拟中确定各种热力学量。热力学积分 (TI) 计算在粒子的产生或湮灭过程中可能会出现不稳定性。这个“奇点”问题可以通过“软核”势函数来解决,该函数可以使所有构型的对相互作用能保持有限,并提供平滑的自由能曲线。“一步”变换,其中静电和范德华力同时被修改,可以比“两步”变换更简单和更便宜,“两步”变换中这些性质在单独的计算中改变。在这里,我们使用这两种模型研究不同疏水性分子的溶剂化自由能。我们为控制软核 Lennard-Jones 和库仑势的行为的两个参数 α(LJ) 和 β(C) 提供了推荐值,并比较了一步和两步变换在数值积分方面的适用性。对于许多类型的变换,一步程序提供了一种方便且准确的自由能估计方法。