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Target Based Designing of Anthracenone Derivatives as Tubulin Polymerization Inhibiting Agents: 3D QSAR and Docking Approach

机译:蒽醌衍生物作为微管蛋白聚合抑制剂的目标设计:3D QSAR和对接方法

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摘要

Novel anthracenone derivatives were designed through in silico studies including 3D QSAR, pharmacophore mapping, and molecular docking approaches. Tubulin protein was explored for the residues imperative for activity by analyzing the binding pattern of colchicine and selected compounds of anthracenone derivatives in the active domain. The docking methodology applied in the study was first validated by comparative evaluation of the predicted and experimental inhibitory activity. Furthermore, the essential features responsible for the activity were established by carrying out pharmacophore mapping studies. 3D QSAR studies were carried out for a series of 1,5- and 1,8-disubstituted10-benzylidene-10H-anthracen-9-ones and 10-(2-oxo-2-phenylethylidene)-10H-anthracen-9-one derivatives for their antiproliferation activity. Based on the pattern recognition studies obtained from QSAR results, ten novel compounds were designed and docked in the active domain of tubulin protein. One of the novel designed compounds “N1” exhibited binding energy −9.69 kcal/mol and predicted Ki 78.32 nM which was found to be better than colchicine.
机译:通过包括3D QSAR,药效团作图和分子对接方法在内的计算机研究,设计了新型蒽醌衍生物。通过分析秋水仙碱与活性域中蒽醌衍生物的选择化合物的结合模式,探索了微管蛋白蛋白中活性必需的残基。该研究中应用的对接方法首先通过对预测和实验抑制活性的比较评估来验证。此外,通过进行药效基团作图研究,确定了负责该活性的基本特征。对一系列1,5-和1,8-二取代的10-亚苄基-10H-蒽-9-和10-(2-氧代-2-苯基亚乙基)-10H-蒽-9-进行了3D QSAR研究衍生物具有抗增殖活性。基于从QSAR结果获得的模式识别研究,设计了十种新化合物并将其停在微管蛋白蛋白的活性域中。一种新颖设计的化合物“ N1”的结合能为-9.69 kcal / mol,预测的Ki为78.32 nM,被发现优于秋水仙碱。

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