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QSAR and Molecular Docking Studies of Oxadiazole-Ligated Pyrrole Derivatives as Enoyl-ACP (CoA) Reductase Inhibitors

机译:乙二唑连接的吡咯衍生物作为Enoyl-ACP(CoA)还原酶抑制剂的QSAR和分子对接研究

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摘要

A quantitative structure-activity relationship model was developed on a series of compounds containing oxadiazole-ligated pyrrole pharmacophore to identify key structural fragments required for anti-tubercular activity. Two-dimensional (2D) and three-dimensional (3D) QSAR studies were performed using multiple linear regression (MLR) analysis and k-nearest neighbour molecular field analysis (kNN-MFA), respectively. The developed QSAR models were found to be statistically significant with respect to training, cross-validation, and external validation. New chemical entities (NCEs) were designed based on the results of the 2D- and 3D-QSAR. NCEs were subjected to Lipinski’s screen to ensure the drug-like pharmacokinetic profile of the designed compounds in order to improve their bioavailability. Also, the binding ability of the NCEs with enoyl-ACP (CoA) reductase was assessed by docking.
机译:建立了一系列与恶二唑连接的吡咯药效团的化合物的定量构效关系模型,以鉴定抗结核活性所需的关键结构片段。分别使用多元线性回归(MLR)分析和k最近邻分子场分析(kNN-MFA)进行了二维(2D)和三维(3D)QSAR研究。发现已开发的QSAR模型在训练,交叉验证和外部验证方面具有统计学意义。根据2D-和3D-QSAR的结果设计了新的化学实体(NCE)。对NCE进行Lipinski筛选,以确保所设计化合物的类药物药代动力学特征,从而提高其生物利用度。而且,通过对接评估了NCE与烯酰-ACP(CoA)还原酶的结合能力。

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