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首页> 外文期刊>Journal of chemical information and modeling >Toward an Optimal Docking and Free Energy Calculation Scheme in Ligand Design with Application to COX-1 Inhibitors
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Toward an Optimal Docking and Free Energy Calculation Scheme in Ligand Design with Application to COX-1 Inhibitors

机译:配体设计中的最佳对接和自由能计算方案及其对COX-1抑制剂的应用

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Cyclooxygenase-1 (COX-1) is one of the main targets of most pain-relieving pharmaceuticals. Although the enzyme is well characterized, it is known to be a difficult target for automated molecular docking and scoring. We collected from the literature a structurally diverse set of 45 nonsteroidal anti-inflammatory drugs (NSAIDs) and COX-2-selective inhibitors (coxibs) with a wide range of binding affinities for COX-1. The binding of this data set to a homology model of human COX-1 was analyzed with different combinations of molecular docking algorithms, scoring functions, and the linear interaction energy (LIE) method for estimating binding affinities. It is found that the computational protocols for estimation of binding affinities are extremely sensitive to the initial orientations of the ligands in the binding pocket. To overcome this limitation, we propose a systematic exploration of docking poses using the LIE calculations as a postscoring function. This scheme yields predictions in excellent agreement with experiment, with a mean unsigned error of 0.9 kcal/mol for binding free energies and structures of high quality. A significant improvement of the results is also seen when averaging over experimental data from several independent measurements.
机译:环氧合酶-1(COX-1)是大多数止痛药物的主要靶标之一。尽管该酶已被很好地表征,但已知它是自动分子对接和评分的困难目标。我们从文献中收集了45种非甾体类抗炎药(NSAID)和COX-2选择性抑制剂(coxibs),它们具有对COX-1广泛的结合亲和力。使用分子对接算法,评分功能和线性亲和力(LIE)方法估计结合亲和力的不同组合,分析了该数据集与人COX-1同源模型的结合。发现用于估计结合亲和力的计算方案对结合口袋中配体的初始取向极为敏感。为了克服此限制,我们建议使用LIE计算作为后记数功能来系统地研究对接姿势。该方案产生的预测与实验非常吻合,结合自由能和高质量结构的平均无符号误差为0.9 kcal / mol。将来自多个独立测量的实验数据取平均值时,也可以看到结果的显着改善。

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