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In Silico Elucidation and Inhibition Studies of Selected Phytoligands Against Mitogen-Activated Protein Kinases of Protozoan Parasites

机译:在计算机上阐明和选择的植物配体对原生动物寄生虫的丝裂原活化蛋白激酶的抑制作用。

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Parasitic MAPKs exhibiting significant divergence with humans and playing an imperative role in parasitic metabolic activities have been exploited from several years as important targets for development of novel therapeutics. In addition, the emergence of the drug-resistant variants of parasitic diseases in the recent years has aroused a great need for the development of potent inhibitors against them. In the present study, we selected the metabolically active MAPKs LmxMPK4, PfMAP2 and TbMAPK5 of the three parasitic protozoans Leishmania mexicana, Plasmodium falciparum and Trypanosoma brucei, respectively. The homology modeling technique was used to develop the 3D structures of these proteins, and the same was validated by PROCHECK, ERRAT, ProQ and ProSA web servers to check the reliability. Ten phytoligands were employed for molecular docking studies with these proteins to search for potent phytoligand as a broad spectrum inhibitor. In this regard, two phytoligands (aspidocarpine for LmxMPK4 and TbMAPK5 and cubebin for PfMAP2) were found to be more effective inhibitors, in terms of robust binding energy, strong inhibition constant and better interactions between protein-ligand complexes. Furthermore, predicted ADME and toxicity properties suggested that these identified phytoligands exhibited comparable results to control drugs potentiating them as persuasive therapeutic agents for Leishmania, Trypanosoma and Plasmodium sp.
机译:表现出与人的显着差异并在寄生代谢活动中起着必不可少的作用的寄生MAPKs作为新疗法的重要开发目标已被使用了数年。此外,近年来,寄生虫病的耐药变体的出现引起了对开发针对它们的有效抑制剂的强烈需求。在本研究中,我们分别选择了三个寄生性原生动物墨西哥利什曼原虫,恶性疟原虫和布鲁氏锥虫的代谢活性MAPKs LmxMPK4,PfMAP2和TbMAPK5。同源性建模技术用于开发这些蛋白质的3D结构,并通过PROCHECK,ERRAT,ProQ和ProSA网络服务器进行了验证,以检查其可靠性。十个植物配体被用于与这些蛋白质的分子对接研究,以寻找有效的植物配体作为广谱抑制剂。在这方面,就健壮的结合能,强大的抑制常数和蛋白质-配体复合物之间更好的相互作用而言,发现两种植物配体(LmxMPK4和TbMAPK5的aspidocarpine和PfMAP2的立方体)是更有效的抑制剂。此外,预测的ADME和毒性特性表明,这些鉴定出的植物配体表现出可比的结果,可以控制增强其作为利什曼原虫,锥虫和疟原虫sp的说服性治疗剂的药物。

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