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Non-nucleosidic inhibition of Herpes simplex virus DNA polymerase: mechanistic insights into the anti-herpetic mode of action of herbal drug withaferin A

机译:单纯疱疹病毒DNA聚合酶的非核苷抑制作用:机械学洞察到草药用铁蛋白A的抗疱疹作用方式

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BackgroundHerpes Simplex Virus 1 and 2 causes several infections in humans including cold sores and encephalitis. Previous antiviral studies on herpes viruses have focussed on developing nucleoside analogues that can inhibit viral polymerase and terminate the replicating viral DNA. However, these drugs bear an intrinsic non-specificity as they can also inhibit cellular polymerase apart from the viral one. The present study is an attempt to elucidate the action mechanism of naturally occurring withaferin A in inhibiting viral DNA polymerase, thus providing an evidence for its development as a novel anti-herpetic drug.ResultsWithaferin A was found to bind very similarly to that of the previously reported 4-oxo-DHQ inhibitor. Withaferin A was observed binding to the residues Gln 617, Gln 618, Asn 815 and Tyr 818, all of which are crucial to the proper functioning of the polymerase. A comparison of the conformation obtained from docking and the molecular dynamics simulations shows that substantial changes in the binding conformations have occurred. These results indicate that the initial receptor-ligand interaction observed after docking can be limited due to the receptor rigid docking algorithm and that the conformations and interactions observed after simulation runs are more energetically favoured.ConclusionsWe have performed docking and molecular dynamics simulation studies to elucidate the binding mechanism of prospective herbal drug withaferin A onto the structure of DNA polymerase of Herpes simplex virus. Our docking simulations results give high binding affinity of the ligand to the receptor. Long de novo MD simulations for 10 ns performed allowed us to evaluate the dynamic behaviour of the system studied and corroborate the docking results, as well as identify key residues in the enzyme-inhibitor interactions. The present MD simulations support the hypothesis that withaferin A is a potential ligand to target/inhibit DNA polymerase of the Herpes simplex virus. Results of these studies will also guide the design of selective inhibitors of DNA POL with high specificity and potent activity in order to strengthen the therapeutic arsenal available today against the dangerous biological warfare agent represented by Herpes Simplex Virus.
机译:背景单纯疱疹病毒1和2在人类中引起多种感染,包括唇疱疹和脑炎。以前对疱疹病毒的抗病毒研究集中在开发可抑制病毒聚合酶并终止复制病毒DNA的核苷类似物。但是,这些药物具有内在的非特异性,因为它们也可以抑制病毒以外的细胞聚合酶。本研究是试图阐明天然存在的fererin A抑制病毒DNA聚合酶的作用机理,从而为其发展成为一种新型的抗疱疹药物提供了证据。结果发现witherferin A的结合与以前的非常相似。报道了4-氧代-DHQ抑制剂。观察到Withaferin A与残基Gln 617,Gln 618,Asn 815和Tyr 818结合,所有这些残基对聚合酶的正常功能至关重要。从对接和分子动力学模拟获得的构象的比较表明,结合构象已发生实质性变化。这些结果表明,由于受体刚性对接算法的缘故,对接后观察到的初始受体-配体相互作用可能受到限制,并且在模拟运行后观察到的构象和相互作用更加有力。结论我们已经进行了对接和分子动力学模拟研究,以阐明草药Aferin A与单纯疱疹病毒DNA聚合酶结构的结合机制我们的对接模拟结果给出了配体与受体的高结合亲和力。进行了10 ns的从头开始的MD长期仿真,我们可以评估所研究系统的动态行为并确认对接结果,并确定酶-抑制剂相互作用中的关键残基。目前的MD模拟支持以下假设,即枯草杆菌素A是靶向/抑制单纯疱疹病毒DNA聚合酶的潜在配体。这些研究结果也将指导具有高特异性和强活性的DNA POL选择性抑制剂的设计,以增强当今对抗由单纯疱疹病毒代表的危险生物战剂的治疗性阿森纳。

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