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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Potential human cholesterol esterase inhibitor design: benefits from the molecular dynamics simulations and pharmacophore modeling studies.
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Potential human cholesterol esterase inhibitor design: benefits from the molecular dynamics simulations and pharmacophore modeling studies.

机译:潜在的人类胆固醇酯酶抑制剂设计:得益于分子动力学模拟和药效团建模研究。

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摘要

Human pancreatic cholesterol esterase (hCEase) is one of the lipases found to involve in the digestion of large and broad spectrum of substrates including triglycerides, phospholipids, cholesteryl esters, etc. The presence of bile salts is found to be very important for the activation of hCEase. Molecular dynamic simulations were performed for the apoform and bile salt complexed form of hCEase using the co-ordinates of two bile salts from bovine CEase. The stability of the systems throughout the simulation time was checked and two representative structures from the highly populated regions were selected using cluster analysis. These two representative structures were used in pharmacophore model generation. The generated pharmacophore models were validated and used in database screening. The screened hits were refined for their drug-like properties based on Lipinski's rule of five and ADMET properties. The drug-like compounds were further refined by molecular docking simulation using GOLD program based on the GOLD fitness score, mode of binding, and molecular interactions with the active site amino acids. Finally, three hits of novel scaffolds were selected as potential leads to be used in novel and potent hCEase inhibitor design. The stability of binding modes and molecular interactions of these final hits were re-assured by molecular dynamics simulations.
机译:人胰胆固醇酯酶(hCEase)是一种脂肪酶,被发现与大范围和广谱的底物(包括甘油三酸酯,磷脂,胆固醇酯等)的消化有关。发现胆汁盐的存在对于激活胰蛋白酶非常重要。 hCEase。使用来自牛CEase的两种胆汁盐的坐标,对hCEase的脱辅基和胆汁盐复合形式进行了分子动力学模拟。在整个仿真时间内检查了系统的稳定性,并使用聚类分析从人口稠密的地区中选择了两个代表性结构。这两个代表性结构被用于药效团模型的产生。生成的药效团模型经过验证,并用于数据库筛选。根据Lipinski的5条法则和ADMET属性,筛选出的命中品具有类似药物的特性。基于GOLD适应度评分,结合模式以及与活性位点氨基酸的分子相互作用,使用GOLD程序通过分子对接模拟进一步精制类药物化合物。最后,选择了三个命中新型支架作为潜在的潜在线索,可用于新型有效的hCEase抑制剂设计。这些最终命中的结合模式和分子相互作用的稳定性通过分子动力学模拟得到了保证。

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