Institute for Pharmaceutical and Medicinal Chemistry, Department of Mathematics and Natural Sciences, Heinrich-Heine-University, 40225 Düsseldorf, Germany.
J Comput Chem. 2013 Apr 30;34(11):965-73. doi: 10.1002/jcc.23218. Epub 2013 Jan 3.
In the later stages of drug design projects, accurately predicting relative binding affinities of chemically similar compounds to a biomolecular target is of utmost importance for making decisions based on the ranking of such compounds. So far, the extensive application of binding free energy approaches has been hampered by the complex and time-consuming setup of such calculations. We introduce the free energy workflow (FEW) tool that facilitates setup and execution of binding free energy calculations with the AMBER suite for multiple ligands. FEW allows performing free energy calculations according to the implicit solvent molecular mechanics (MM-PB(GB)SA), the linear interaction energy, and the thermodynamic integration approaches. We describe the tool's architecture and functionality and demonstrate in a show case study on Factor Xa inhibitors that the time needed for the preparation and analysis of free energy calculations is considerably reduced with FEW compared to a fully manual procedure.
在药物设计项目的后期阶段,准确预测化学相似化合物与生物分子靶标相对结合亲和力对于根据这些化合物的排名做出决策至关重要。到目前为止,由于这些计算的复杂和耗时的设置,结合自由能方法的广泛应用受到了阻碍。我们引入了自由能工作流程 (FEW) 工具,该工具可简化 AMBER 套件中多个配体的结合自由能计算的设置和执行。FEW 允许根据隐式溶剂分子力学 (MM-PB(GB)SA)、线性相互作用能和热力学积分方法进行自由能计算。我们描述了该工具的架构和功能,并在 Factor Xa 抑制剂的案例研究中证明,与完全手动过程相比,使用 FEW 可大大减少准备和分析自由能计算所需的时间。