首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Pharmacophore generation, atom-based 3D-QSAR, molecular docking and molecular dynamics simulation studies on benzamide analogues as FtsZ inhibitors
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Pharmacophore generation, atom-based 3D-QSAR, molecular docking and molecular dynamics simulation studies on benzamide analogues as FtsZ inhibitors

机译:Pharmacophore生成,基于原子的3D-QSAR,分子对接和分子动力学模拟与FTSZ抑制剂相似的苯甲酰胺类似物

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FtsZ is an appealing target for the design of antimicrobial agent that can be used to defeat the multidrug-resistant bacterial pathogens. Pharmacophore modelling, molecular docking and molecular dynamics (MD) simulation studies were performed on a series of three-substituted benzamide derivatives. In the present study a five-featured pharmacophore model with one hydrogen bond acceptors, one hydrogen bond donors, one hydrophobic and two aromatic rings was developed using 97 molecules having MIC values ranging from .07 to 957M. A statistically significant 3D-QSAR model was obtained using this pharmacophore hypothesis with a good correlation coefficient (R-2=.8319), cross validated coefficient (Q(2)=.6213) and a high Fisher ratio (F=103.9) with three component PLS factor. A good correlation between experimental and predicted activity of the training (R-2=.83) and test set (R-2=.67) molecules were displayed by ADHRR.1682 model. The generated model was further validated by enrichment studies using the decoy test and MAE-based criteria to measure the efficiency of the model. The docking studies of all selected inhibitors in the active site of FtsZ protein showed crucial hydrogen bond interactions with Val 207, Asn 263, Leu 209, Gly 205 and Asn-299 residues. The binding free energies of these inhibitors were calculated by the molecular mechanics/generalized born surface area VSGB 2.0 method. Finally, a 15ns MD simulation was done to confirm the stability of the 4DXD-ligand complex. On a wider scope, the prospect of present work provides insight in designing molecules with better selective FtsZ inhibitory potential.
机译:FTSZ是一种吸引人的抗微生物剂的靶向,可用于击败多药物抗性细菌病原体。在一系列三取代的苯甲酰胺衍生物上进行了药物模型,分子对接和分子动力学(MD)模拟研究。在本研究中,使用具有麦克风值的MIC值范围为0.07至957m的MIC值,开发了一种具有一个氢键受体,一种氢键供体,一种氢键供体,一种疏水和两个芳环的五种精选的药效模型。使用该药镜的假设获得统计学上显着的3D QSAR模型,具有良好的相关系数(R-2 = .8319),交叉验证系数(Q(2)=。6213)和高渔民比(F = 103.9)三个组分PLS因子。 ADHRR.1682模型显示了训练(R-2 = .83)和试验组(R-2 = .67)分子的实验和预测活动之间的良好相关性。通过使用诱饵研究和基于MAE的标准进一步通过富集研究进一步验证所生成的模型,以测量模型的效率。 FTSZ蛋白的活性位点中所有选定抑制剂的对接研究显示了与Val 207,Asn 263,Leu 209,Gly 205和Asn-299残基的关键氢键相互作用。通过分子力学/广义出生的表面积VSGB2.0方法计算这些抑制剂的粘合剂能量。最后,完成了15ns的MD模拟以确认4DXD-配体络合物的稳定性。在更广泛的范围内,现有工作的前景在设计具有更好的选择性FTSZ抑制潜力的分子方面提供了洞察力。

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