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Computer-Based De Novo Designs of Tripeptides as Novel Neuraminidase Inhibitors

机译:基于计算机的从头设计三肽作为新型神经氨酸酶抑制剂。

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The latest influenza A (H1N1) pandemic attracted worldwide attention and called for the urgent development of novel antiviral drugs.Here,seven tripeptides are designed and explored as neuraminidase (NA) inhibitors on the structural basis of known inhibitors.Their interactions with NA are studied and compared with each other,using flexible docking and molecular dynamics simulations (InsightII 2005).The various composed tripeptides have respective binding specificities and their interaction energies with NA decrease in the order of FRI > FRV > FRT > FHV > FRS > FRG > YRV (letters corresponding to amino acid code).The Arg and Phe portions of the tripeptides play important roles during the binding process:Arg has strong electrostatic interactions with the key residues Asp151,Glu119,Glu227 and Glu277,whereas Phe fits well in the hydrophobic cave within the NA active site.Owing to the introduction of hydrophobic property,the interaction energies of FRV and FRI are larger; in particular,FRI demonstrates the best binding quality and shows potential as a lead compound.In addition,the influence of the chemical states of the terminal amino acids are clarified:it is revealed that the charged states of the N-terminus (NH3+) and C-terminus (COO-) are crucial for the tripeptide inhibitory activities and longer peptides may not be appropriate.In addition,the medium inhibiting activity by acetylation of the N-terminus indicates the possible chemical modifications of FRI.Experimental efforts are expected in order to actualize the tripeptides as potent NA inhibitors in the near future.
机译:最新的甲型H1N1流感大流行引起了全世界的关注,并呼吁紧急开发新型抗病毒药物。在此基础上,在已知抑制剂的结构基础上设计并探索了七种三肽作为神经氨酸酶(NA)抑制剂,并研究了它们与NA的相互作用。并通过灵活的对接和分子动力学模拟进行比较(InsightII 2005)。各种组成的三肽具有各自的结合特异性,并且其与NA的相互作用能按FRI> FRV> FRT> FHV> FRS> FRG> YRV的顺序降低。 (对应于氨基酸代码的字母)。三肽的Arg和Phe部分在结合过程中起重要作用:Arg与关键残基Asp151,Glu119,Glu227和Glu277具有很强的静电相互作用,而Phe很好地适合于疏水洞由于疏水性的引入,FRV和FRI的相互作用能更大;特别是,FRI表现出最好的结合质量,并显示出作为先导化合物的潜力。此外,澄清了末端氨基酸的化学状态的影响:揭示了N端(NH3 +)和C端(COO-)对于三肽的抑制活性至关重要,较长的肽可能不合适。在不久的将来将三肽实现为有效的NA抑制剂。

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