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Molecular Docking Study of Aminoacyl-tRNA Synthetases with Ligand Molecules from Four Different Scaffolds

机译:四种不同支架上的配体分子合成氨酰基-tRNA的分子对接研究

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Aminoacyl-tRNA synthetases (aaRSs) play vital roles in protein biosynthesis of living organisms and are interesting antibacterial drug targets. In order to find out new inhibitor candidate molecules as antibacterial agent, the binding modes of the candidate molecules were investigated at the active sites of aaRSs by molecular docking study. The docking simulations were performed with 48 compounds from four different scaffolds into the eight different aaRSs. The results show that scaffolds 3 and 4 compounds have consistently better binding capabilities, specifically for HisRS (E. coli) and IleRS (S. aureus). The binding modes of the best compounds with the proteins were well compatible with those of two ligands in crystal structures. Therefore, we expect that the final compounds we present may have reasonable aaRS inhibitory activity.
机译:氨酰基-tRNA合成酶(aaRSs)在活生物体的蛋白质生物合成中起着至关重要的作用,并且是有趣的抗菌药物靶标。为了发现新的抑制剂候选分子作为抗菌剂,通过分子对接研究在aaRSs的活性位点研究了候选分子的结合方式。对接模拟是使用来自四个不同支架的48种化合物进入八个不同aaRS进行的。结果表明,支架3和4化合物始终具有更好的结合能力,特别是对HisRS(大肠杆菌)和IleRS(金黄色葡萄球菌)而言。最佳化合物与蛋白质的结合方式与晶体结构中两个配体的结合方式完全兼容。因此,我们希望我们最终的化合物可能具有合理的aaRS抑制活性。

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