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二、通过非平衡炼金术模拟计算药物-受体系统中的解离自由能:应用于FK506相关亲免素配体

II. Dissociation free energies in drug-receptor systems via nonequilibrium alchemical simulations: application to the FK506-related immunophilin ligands.

作者信息

Nerattini Francesca, Chelli Riccardo, Procacci Piero

机构信息

Department of Physics, University of Vienna, Austria.

Department of Chemistry, University of Florence, Italy.

出版信息

Phys Chem Chem Phys. 2016 Jun 1;18(22):15005-18. doi: 10.1039/c5cp05521k.

Abstract

The recently proposed fast switching double annihilation (FS-DAM) [Cardelli et al., J. Chem. Theory Comput., 2015, 11, 423] is aimed at computing the absolute standard dissociation free energies for the chemical equilibrium RL ⇌ R + L occurring in solution through molecular dynamics (MD) simulations at the atomistic level. The technique is based on the production of fast nonequilibrium annihilation trajectories of one of the species (the ligand) in the solvated RL complex and in the bulk solvent. As detailed in the companion theoretical paper, the free energies of these two nonequilibrium annihilation processes are recovered by using an unbiased unidirectional estimate derived from the Crooks theorem exploiting the inherent Gaussian nature of the annihilation work. The FS-DAM technique was successfully applied to the evaluation of the dissociation free energy of the complexes of Zn(ii) cations with an inhibitor of the Tumor Necrosis Factor α converting enzyme. Here we apply the technique to a real drug-receptor system, by satisfactorily reproducing the experimental dissociation free energies of FK506-related bulky ligands towards the native FKBP12 enzyme and by predicting the dissociation constants for the same ligands towards the mutant I56D. The effect of such mutations on the binding affinity of FK506-related ligands is relevant for assessing the thermodynamic forces regulating molecular recognition in FKBP12 inhibition.

摘要

最近提出的快速切换双湮灭(FS-DAM)[卡德利等人,《化学理论与计算杂志》,2015年,11卷,423页]旨在通过原子水平的分子动力学(MD)模拟来计算溶液中发生的化学平衡RL⇌R + L的绝对标准解离自由能。该技术基于在溶剂化的RL络合物和本体溶剂中生成其中一种物种(配体)的快速非平衡湮灭轨迹。正如配套理论论文中所详述的,这两个非平衡湮灭过程的自由能是通过使用从克鲁克斯定理推导出来的无偏单向估计来恢复的,该估计利用了湮灭功固有的高斯性质。FS-DAM技术已成功应用于评估锌(II)阳离子与肿瘤坏死因子α转换酶抑制剂络合物的解离自由能。在此,我们将该技术应用于一个实际的药物-受体系统,通过令人满意地重现FK506相关大体积配体对天然FKBP12酶的实验解离自由能,并预测相同配体对突变体I56D的解离常数。这种突变对FK506相关配体结合亲和力的影响对于评估调节FKBP12抑制中分子识别的热力学力具有重要意义。

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