首页> 外文期刊>Journal of chemical theory and computation: JCTC >Binding Energy Distribution Analysis Method (BEDAM) for Estimation of Protein Ligand Binding Affinities
【24h】

Binding Energy Distribution Analysis Method (BEDAM) for Estimation of Protein Ligand Binding Affinities

机译:估计蛋白质配体结合亲和力的结合能分布分析方法(BEDAM)

获取原文
获取原文并翻译 | 示例
       

摘要

The binding energy distribution analysis method (BEDAM) for the computation of receptor-ligand standard binding free energies with implicit solvation is presented. The method is based on a well-established statistical mechanics theory of molecular association. It is shown that, in the context of implicit solvation, the theory is homologous to the test particle method of solvation thermodynamics with the solute-solvent potential represented by the effective binding energy of the protein-ligand complex. Accordingly, in BEDAM the binding constant is computed by means of a weighted integral of the probability distribution of the binding energy obtained in the canonical ensemble in which the ligand is positioned in the binding site but the receptor and the ligand interact only with the solvent continuum. It is shown that the binding energy distribution encodes all of the physical effects of binding. The balance between binding enthalpy and entropy is seen in our formalism as a balance between favorable and unfavorable binding modes which are coupled through the normalization of the binding energy distribution function. An efficient computational protocol for the binding energy distribution based on the AGBNP2 implicit solvent model, parallel Hamiltonian replica exchange sampling, and histogram reweighting is developed. Applications of the method to a set of known binders and nonbinders of the L99A and L99A/ M102Q mutants of T4 lysozyme receptor are illustrated. The method is able to discriminate without error binders from nonbinders, and the computed standard binding free energies of the binders are found to be in good agreement with experimental measurements. Analysis of the results reveals that the binding affinities of these systems reflect the contributions from multiple conformations spanning a wide range of binding energies.
机译:提出了结合能分布分析方法(BEDAM),用于计算含隐溶剂化的受体-配体标准结合自由能。该方法基于完善的分子缔合统计力学理论。结果表明,在隐式溶剂化的背景下,该理论与溶剂化热力学的测试粒子方法是同源的,其溶质-溶剂势以蛋白质-配体复合物的有效结合能表示。因此,在BEDAM中,结合常数是通过在规范集合中获得的结合能的概率分布的加权积分来计算的,在规范集合中,配体位于结合位点,但受体和配体仅与溶剂连续体相互作用。结果表明,结合能分布编码了结合的所有物理效应。在我们的形式主义中,结合焓和熵之间的平衡被视为通过结合能分布函数的归一化而耦合的有利和不利结合模式之间的平衡。开发了一种基于AGBNP2隐式溶剂模型,并行汉密尔顿副本交换采样和直方图重加权的结合能分布的高效计算协议。说明了该方法对一组已知的T4溶菌酶受体的L99A和L99A / M102Q突变体的结合剂和非结合剂的应用。该方法能够无错误地将粘合剂与非粘合剂区分开,并且发现所计算的粘合剂的标准结合自由能与实验测量值非常吻合。结果分析表明,这些系统的结合亲和力反映了跨越广泛结合能的多种构象的贡献。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号