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首页> 外文期刊>Journal of King Saud University >Repurposing benzimidazole and benzothiazole derivatives as potential inhibitors of SARS-CoV-2: DFT, QSAR, molecular docking, molecular dynamics simulation, and in-silico pharmacokinetic and toxicity studies
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Repurposing benzimidazole and benzothiazole derivatives as potential inhibitors of SARS-CoV-2: DFT, QSAR, molecular docking, molecular dynamics simulation, and in-silico pharmacokinetic and toxicity studies

机译:将苯并咪唑和苯并噻唑衍生物作为SARS-COV-2的潜在抑制剂:DFT,QSAR,分子对接,分子动力学模拟和 In-silico:斜体>药代动力学和毒性研究

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Density Functional Theory (DFT) and Quantitative Structure-Activity Relationship (QSAR) studies were performed on four benzimidazoles (compounds 1–4) and two benzothiazoles (compounds 5 and 6), previously synthesized by our group. The compounds were also investigated for their binding affinity and interactions with the SARS-CoV-2 Mpro(PDB ID: 6LU7) and the human angiotensin-converting enzyme 2 (ACE2) receptor (PDB ID: 6?M18) using a molecular docking approach. Compounds 1, 2, and 3 were found to bind with equal affinity to both targets. Compound 1 showed the highest predictive docking scores, and was further subjected to molecular dynamics (MD) simulation to explain protein stability, ligand properties, and protein–ligand interactions. All compounds were assessed for their structural, physico-chemical, pharmacokinetic, and toxicological properties. Our results suggest that the investigated compounds are potential new drug leads to target SARS-CoV-2.
机译:密度函数理论(DFT)和定量结构 - 活性关系(QSAR)研究是对四个苯并咪唑(化合物1-4)和两种苯并噻唑(化合物5和6)进行,先前由我们的组合成。 还研究了化合物的结合亲和力,并使用分子对接方法与SARS-COV-2MPRO(PDB ID:6LO7)和人血管紧张素转换酶2(ACE2)受体(ACE2)受体(PDB ID:6≤M18)的结合亲和力和相互作用 。 发现化合物1,2和3与两种靶标结合。 化合物1显示了最高的预测对接分数,进一步进行了分子动力学(MD)模拟,以解释蛋白质稳定性,配体性质和蛋白质 - 配体相互作用。 评估所有化合物的结构,物理化学,药代动力学和毒理学性质。 我们的研究结果表明,研究的化合物是潜在的新药,以靶向SARS-COV-2。

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