首页> 外文期刊>Monatshefte fur Chemie >Insight into crucial inhibitor-enzyme interaction of arylamides as novel direct inhibitors of the enoyl ACP reductase (InhA) from Mycobacterium tuberculosis: computer-aided molecular design
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Insight into crucial inhibitor-enzyme interaction of arylamides as novel direct inhibitors of the enoyl ACP reductase (InhA) from Mycobacterium tuberculosis: computer-aided molecular design

机译:作为结核分枝杆菌烯酰ACP还原酶(InhA)的新型直接抑制剂的芳基酰胺的关键抑制剂-酶相互作用的见解:计算机辅助分子设计

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The enoyl ACP reductase enzyme (InhA) involved in the type II fatty acid biosynthesis pathway of Mycobacterium tuberculosis is an attractive target enzyme for antitubercular drug development. Arylamide derivatives are a novel class of InhA inhibitors used to overcome the drug-resistance problem of isoniazid, the frontline drug for tuberculosis treatment. Their remarkable property of inhibiting the InhA enzyme directly without requiring any coenzyme, makes them especially appropriate for the design of new antibacterials. In order to find a sound binding conformation for the different arylamide analogs, molecular docking experiments were performed with subsequent QSAR investigations. The X-ray conformation of one arylamide within its cocrystallized complex with InhA was used as a starting conformation for the docking experiments. The results thus obtained are perfectly consistent (rmsd = 0.73 A) with the results from X-ray analysis. A thorough investigation of the arylamide binding modes with InhA provided ample information about structural requirements for appropriate inhibitor-enzyme interactions. Three different QSAR models were established using two three-dimensional (CoMFA and CoMSIA) and one two-dimensional (HQSAR) techniques. With statistically ensured models, the QSAR results obtained had high correlation coefficients between molecular structure properties of 28 arylamide derivatives and their biological activity. Molecular fragment contributions to the biological activity of arylamides could be obtained from the HQSAR model. Finally, a graphic interpretation designed in different contour maps provided coincident information about the ligand-receptor interaction thus offering guidelines for syntheses of novel analogs with enhanced biological activity.
机译:参与结核分枝杆菌II型脂肪酸生物合成途径的烯酰ACP还原酶(InhA)是抗结核药物开发的有吸引力的目标酶。芳基酰胺衍生物是一类新的InhA抑制剂,可用于克服异烟肼的耐药性问题,异烟肼是治疗结核病的一线药物。它们不需任何辅酶即可直接抑制InhA酶的卓越性能,使其特别适合于新型抗菌素的设计。为了找到不同芳基酰胺类似物的声音结合构象,进行了分子对接实验,随后进行了QSAR研究。一种芳基酰胺在与InhA共结晶的复合物中的X射线构象用作对接实验的起始构象。由此获得的结果与X射线分析的结果完全一致(均方根= 0.73 A)。对InhA对芳基酰胺结合模式的彻底研究提供了有关适当的抑制剂与酶相互作用的结构要求的充分信息。使用两种三维(CoMFA和CoMSIA)和一种二维(HQSAR)技术建立了三种不同的QSAR模型。使用统计上可靠的模型,获得的QSAR结果在28种芳基酰胺衍生物的分子结构性质与其生物学活性之间具有较高的相关系数。可以从HQSAR模型获得分子片段对芳基酰胺生物活性的贡献。最后,在不同轮廓图中设计的图形解释提供了有关配体-受体相互作用的一致信息,从而为合成具有增强生物活性的类似物提供了指导。

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