Relative solvation free energies calculated using an ab initio QM/MM-based free energy perturbation method: dependence of results on simulation length

被引:0
|
作者
M. Rami Reddy
Mark D. Erion
机构
[1] Metabasis Therapeutics,
[2] Inc.,undefined
关键词
Relative solvation free energies; Starting configurations; MD simulations; Quantum mechanical; QM/MM; Thread method;
D O I
暂无
中图分类号
学科分类号
摘要
Molecular dynamics (MD) simulations in conjunction with thermodynamic perturbation approach was used to calculate relative solvation free energies of five pairs of small molecules, namely; (1) methanol to ethane, (2) acetone to acetamide, (3) phenol to benzene, (4) 1,1,1 trichloroethane to ethane, and (5) phenylalanine to isoleucine. Two studies were performed to evaluate the dependence of the convergence of these calculations on MD simulation length and starting configuration. In the first study, each transformation started from the same well-equilibrated configuration and the simulation length was varied from 230 to 2,540 ps. The results indicated that for transformations involving small structural changes, a simulation length of 860 ps is sufficient to obtain satisfactory convergence. In contrast, transformations involving relatively large structural changes, such as phenylalanine to isoleucine, require a significantly longer simulation length (>2,540 ps) to obtain satisfactory convergence. In the second study, the transformation was completed starting from three different configurations and using in each case 860 ps of MD simulation. The results from this study suggest that performing one long simulation may be better than averaging results from three different simulations using a shorter simulation length and three different starting configurations.
引用
收藏
页码:837 / 843
页数:6
相关论文
共 32 条
  • [31] Estimation of relative free energies of binding using pre-computed ensembles based on the single-step free energy perturbation and the site-identification by Ligand competitive saturation approaches
    Raman, E. Prabhu
    Lakkaraju, Sirish Kaushik
    Denny, Rajiah Aldrin
    MacKerell, Alexander D., Jr.
    JOURNAL OF COMPUTATIONAL CHEMISTRY, 2017, 38 (15) : 1238 - 1251
  • [32] A Free-Energy Perturbation Method Based on Monte Carlo Simulations Using Quantum Mechanical Calculations (QM/MC/FEP Method): Application to Highly Solvent-Dependent Reactions
    Hori, Kenji
    Yamaguchi, Toru
    Uezu, Keita
    Sumimoto, Michinori
    JOURNAL OF COMPUTATIONAL CHEMISTRY, 2011, 32 (05) : 778 - 786