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首页> 外文期刊>Online journal of biological sciences >Designing of Disulfide Cyclic Peptide for Inhibiting Polymerase A and B1 (PAC-PB1N) in H1N1 Virus using Molecular Simulation Approach | Science Publications
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Designing of Disulfide Cyclic Peptide for Inhibiting Polymerase A and B1 (PAC-PB1N) in H1N1 Virus using Molecular Simulation Approach | Science Publications

机译:使用分子模拟方法设计抑制H1N1病毒中聚合酶A和B1(PAC-PB1N)的二硫键环肽科学出版物

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> >The drug resistance A/H1N1 flu virus is emerging rapidly. Therefore, looking for potential therapy is very important. PB2, PB and PA are subunits of viral RNA-dependent RNA polymerase (RdRp). They play an important role in viral replication. The PA and PB1 binding sites can be considered as potential targets for the development of new influenza drugs. The peptide inhibitors can be designed specifically due to their high-preferred activity. In this study, the cyclic peptide ligands were designed based on the crystal structure of PAC-PB1N in the surface of the molecule, resulting 1728 cyclopentadienyl compounds. The MOE 2008.10 software was utilized for molecular docking and dynamics simulation approach, while Lipinski’s Rules of Five were utilized to evaluate the feasibility of drug candidates. Thus, molecular dynamics simulation was applied, in order to facilitate the interaction between the ligand and enzyme. The simulations have successfully produced two cyclopentyl peptides, namely CKKTC and CKTTC, which results in both ligands providing a potent inhibitor of polymerase PAC-PB1N of Influenza A/2009 (H1N1).
机译: > >耐药性A / H1N1流感病毒正在迅速出现。因此,寻找潜在的治疗方法非常重要。 PB2,PB和PA是病毒RNA依赖性RNA聚合酶(RdRp)的亚基。它们在病毒复制中起重要作用。 PA和PB1结合位点可被视为开发新型流感药物的潜在靶标。由于它们的高优先活性,可以专门设计肽抑制剂。本研究基于分子表面PA C -PB1 N 的晶体结构设计环肽配体,得到1728个环戊二烯基化合物。 MOE 2008.10软件用于分子对接和动力学模拟方法,而Lipinski的“五则规则”用于评估候选药物的可行性。因此,为了促进配体与酶之间的相互作用,进行了分子动力学模拟。模拟成功地产生了两种环戊基肽,即CKKTC和CKTTC,这两种配体均提供了有效的A / 2009流感聚合酶PA C -PB1 N 抑制剂。 H1N1)。

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