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Combined Molecular Docking, 3D-QSAR, and Pharmacophore Model: Design of Novel Tubulin Polymerization Inhibitors by Binding to Colchicine-binding Site

机译:结合的分子对接,3D-QSAR和药理模型:通过与秋水仙碱结合位点结合设计新型微管蛋白聚合抑制剂。

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Interference with dynamic equilibrium of microtubule-tubulin has proven to be a useful tactics in the clinic. Based on investigation into the structure-activity relationship (SAR) studies of tubulin polymerization inhibitors obtained from several worldwide groups, we attempted to design 691 compounds covering several main heterocyclic scaffolds as novel colchicine-site inhibitors (CSIs). Evaluated by a series of combination of commonly used computer methods such as molecular docking, 3D-QSAR, and pharmacophore model, we can obtain the ultimate 16 target compounds derived from five important basic scaffolds in the field of medicinal chemistry. Among these compounds, compound A-132 with in silico moderate activity was synthesized, and subsequently validated for preliminary inhibition of tubulin polymerization by immunofluorescence assay. In additional, the work of synthesis and validation of biological activity for other 15 various structure compounds will be completed in our laboratory. This study not only developed a hierarchical strategy to screen novel tubulin inhibitors effectively, but also widened the spectrum of chemical structures of canonical CSIs.
机译:已经证明干扰微管-微管蛋白的动态平衡是临床上的有用策略。基于对从世界各地的几个组织获得的微管蛋白聚合抑制剂的结构-活性关系(SAR)研究的调查,我们尝试设计涵盖几种主要杂环骨架的691种化合物作为新型秋水仙碱位抑制剂(CSIs)。通过将分子对接,3D-QSAR和药效基团模型等常用计算机方法进行一系列的组合评估,我们可以从药物化学领域的五个重要基础支架中获得最终的16种目标化合物。在这些化合物中,合成了具有计算机活性的计算机活性化合物A-132,随后通过免疫荧光分析验证了其对微管蛋白聚合的初步抑制作用。此外,其他15种不同结构的化合物的合成和生物活性的验证工作将在我们的实验室中完成。这项研究不仅开发了有效筛选新型微管蛋白抑制剂的分级策略,而且拓宽了标准CSI的化学结构范围。

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