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Identification of promising DNA GyrB inhibitors for Tuberculosis using pharmacophore-based virtual screening, molecular docking and molecular dynamics studies

机译:基于药物的虚拟筛选,分子对接和分子动力学研究,鉴定核心结核病的前景DNA毒品抑制剂

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摘要

In this study, we searched for potential DNA GyrB inhibitors using pharmacophore-based virtual screening followed by molecular docking and molecular dynamics simulation approaches. For this purpose, a set of 248 DNA GyrB inhibitors was collected from the literature and a well-validated pharmacophore model was generated. The best pharmacophore model explained that two each of hydrogen bond acceptors and hydrophobicity regions were critical for inhibition of DNA GyrB. Good statistical results of the pharmacophore model indicated that the model was robust in nature. Virtual screening of molecular databases revealed three molecules as potential antimycobacterial agents. The final screened promising compounds were evaluated in molecular docking and molecular dynamics simulation studies. In the molecular dynamics studies, RMSD and RMSF values undoubtedly explained that the screened compounds formed stable complexes with DNA GyrB. Therefore, it can be concluded that the compounds identified may have potential for the treatment of TB.
机译:在这项研究中,我们搜索了使用基于药物的虚拟筛选的潜在DNA GyrB抑制剂,然后进行分子对接和分子动力学模拟方法。为此目的,从文献中收集了一组248个DNA GyrB抑制剂,并产生了良好的验证的药物模型。最佳的药物模型解释说,每个氢键受体和疏水性区域中的两种对于抑制DNA GyrB至关重要。药效线模型的良好统计结果表明该模型本质上是强大的。分子数据库的虚拟筛选显示出三种分子作为潜在的抗微生物剂。在分子对接和分子动力学模拟研究中评估了最终筛选的有希望的化合物。在分子动力学研究中,RMSD和RMSF值无疑解释说,筛选的化合物与DNA陀螺形成稳定的络合物。因此,可以得出结论,所鉴定的化合物可能具有治疗TB的潜力。

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