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首页> 外文期刊>FEBS Letters >Empirical free energy as a target function in docking and design: application to HIV‐1 protease inhibitors
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Empirical free energy as a target function in docking and design: application to HIV‐1 protease inhibitors

机译:经验自由能作为对接和设计的目标功能:在HIV-1蛋白酶抑制剂中的应用

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摘要

>Structure-based drug design requires the development of efficient computer programs for exploring the structural compatibility of various flexible ligands with a given receptor. While various algorithms are available for finding docked conformations, selecting a target function that can reliably score the conformations remains a serious problem. We show that the use of an empirical free energy evaluation method, originally developed to characterize protein-protein interactions, can substantially improve the efficacy of search algorithms. In addition to the molecular mechanics interaction energy, the function takes account of solvation and side chain conformational entropy, while remaining simple enough to replace the incomplete target functions used in many drug docking and design procedures. The free energy function is used here in conjunction with a simple site mapping-fragment assembly algorithm, for docking the MVT-101 non-peptide inhibitor to HIV-1 protease. In particular, we predict the bound structure with an all atom RMSD of 1.21 Å, compared to 1.69 Å using an energy target function, and also accurately predict the free energy shifts obtained with a series of five trimeric hydroxyethylene isostere analogs.
机译:>基于结构的药物设计要求开发有效的计算机程序,以探索各种柔性配体与给定受体的结构相容性。尽管有各种算法可用于找到对接的构象,但是选择能够可靠地对构象评分的目标函数仍然是一个严重的问题。我们表明,最初开发用于表征蛋白质-蛋白质相互作用的经验性自由能评估方法可以大大提高搜索算法的效率。除了分子力学相互作用能外,该功能还考虑了溶剂化和侧链构象熵,同时保持足够简单,可以取代许多药物对接和设计程序中使用的不完全目标功能。在此,自由能函数与简单的位点定位图片段组装算法结合使用,用于将MVT-101非肽抑制剂与HIV-1蛋白酶对接。特别是,我们使用能量目标函数预测了全原子RMSD为1.21Å的键合结构,而使用能量目标函数则为1.69Å,并且还精确地预测了一系列五个三聚羟基乙烯等排异构体类似物获得的自由能位移。

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