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Mechanistic Insights into Zika Virus NS3 Helicase Inhibition by Epigallocatechin-3-Gallate

机译:通过EPigallocateChin-3-gallate进入Zika病毒NS3 Helicase抑制的机械洞察力

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Since 2007, repeated outbreaks of Zika virus (ZIKV) have affected millions of people worldwide and created a global health concern with major complications like microcephaly and Guillain Barre’s syndrome. To date, there is not a single Zika-specific licensed drug present in the market. However, in recent months, several antiviral molecules have been screened against ZIKV. Among those, (?)-epigallocatechin-3-gallate (EGCG), a green tea polyphenol, has shown great virucidal potential against flaviviruses including ZIKV. The mechanistic understanding of EGCG-targeting viral proteins is not yet entirely deciphered except that little is known about its interaction with viral envelope protein and viral protease. We designed our current study to find inhibitory actions of EGCG against ZIKV NS3 helicase. NS3 helicase performs a significant role in viral replication by unwinding RNA after hydrolyzing NTP. We employed molecular docking and simulation approach and found significant interactions at the ATPase site and also at the RNA binding site. Further, the enzymatic assay has shown significant inhibition of NTPase activity with an IC_(50) value of 295.7 nM and Ki of 0.387 ± 0.034 μM. Our study suggests the possibility that EGCG could be considered as a prime backbone molecule for further broad-spectrum inhibitor development against ZIKV and other flaviviruses.
机译:自2007年以来,重复爆发Zika病毒(ZIKV)在全球范围内影响了数百万人,并创造了一种全球健康问题,与小透视和Guillain Barre的综合征等主要并发症。迄今为止,市场上没有单一的Zika特异性许可药物。然而,最近几个月,已经针对ZIKV筛查了几个抗病毒分子。其中,(?) - Epigallocatechin-3-gallate(EGCG),绿茶多酚,对包括ZIKV的黄病毒的近似的病毒潜力显示出良好的植血。除了关于其与病毒包膜蛋白和病毒蛋白酶的相互作用时,尚未完全破译EGCG靶向病毒蛋白的机械理解。我们设计了目前的研究,以发现EGCG对ZIKV NS3螺旋酶的抑制作用。 NS3 Helicase通过在水解后通过展开RNA进行病毒复制对病毒复制进行显着作用。我们使用分子对接和仿真方法,发现ATP酶位点和RNA结合位点的显着相互作用。此外,酶测定表明,具有0.387±0.034μm的IC_(50)值的IC_(50)值的IC_(50)值显着抑制NTPASE活性。我们的研究表明,EGCG可以被认为是对ZIKV和其他黄病毒的进一步广谱抑制剂发育的主要骨架分子。

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