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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A Reliable Docking/Scoring Scheme Based on the Semiempirical Quantum Mechanical PM6-DH2 Method Accurately Covering Dispersion and H-Bonding: HIV-1 Protease with 22 Ligands
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A Reliable Docking/Scoring Scheme Based on the Semiempirical Quantum Mechanical PM6-DH2 Method Accurately Covering Dispersion and H-Bonding: HIV-1 Protease with 22 Ligands

机译:基于半经验量子力学PM6-DH2方法的精确对接/计分方案,该方法准确地覆盖了22个配体的色散和H键:HIV-1蛋白酶

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In this study, we introduce a fast and reliable rescoring scheme for docked complexes based on a semiempirical quantum mechanical PM6-DH2 method. The method utilizes a PM6-based Hamiltonian with corrections for dispersion energy and hydrogen bonds. The total score is constructed as the sum of the PM6-DH2 interaction enthalpy, the empirical force field (AMBER) interaction entropy, and the sum of the deformation (PM6-DH2, SMD) and the desolvation (SMD) energies of the ligand. The main advantage of the procedure is the fact that we do not add any empirical parameter for either an individual component of the total score or an individual protein-ligand complex. This rescoring method is applied to a very challenging system, namely, the HIV-1 protease with a set of ligands. As opposed to the conventional DOCK procedure, the PM6-DH2 rescoring based on all of the terms distinguishes between binders and nonbinders and provides a reliable correlation of the theoretical and experimental binding free energies. Such a dramatic improvement, resulting from the PM6-DH2 rescoring of all the complexes, provides a valuable yet inexpensive tool for rational drug discovery and de novo ligand design.
机译:在这项研究中,我们介绍了一种基于半经验量子力学PM6-DH2方法的快速可靠的对接配合物计价方案。该方法利用了基于PM6的哈密顿量,并对分散能和氢键进行了校正。总分由PM6-DH2相互作用焓,经验力场(AMBER)相互作用熵以及配体的形变(PM6-DH2,SMD)和去溶剂化(SMD)能之和构成。该程序的主要优点是,我们不会为总分的单个组成部分或单个蛋白质-配体复合物添加任何经验参数。该计分方法应用于具有挑战性的系统,即带有一组配体的HIV-1蛋白酶。与常规的DOCK程序相反,基于所有术语的PM6-DH2评分在结合剂和非结合剂之间进行区分,并提供了理论和实验结合自由能的可靠关联。所有复合物的PM6-DH2评分都可以带来如此显着的进步,为合理的药物发现和从头配体设计提供了宝贵而又廉价的工具。

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