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Screening Pipeline for Flavivirus Based Inhibitors for Zika Virus NS1

机译:用于Zika病毒NS1的黄病毒抑制剂的筛选管线

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In-silico pipeline is applied for identifying and designing novel inhibitors against ZIKV NS1 protein. Comparative molecular docking studies are performed to explore the binding of structurally diverse compounds to ZIKV NS1 by AutoDock/Vina and GOLD. The Zika virus (ZIKV) is a flavivirus, responsible for life-threatening infections and transmitted by Aedes mosquitoes in other organisms. It is associated with Guillain Barre Syndrome (GBS) and microcephaly. This epidemic increase in GBS and microcephaly convoyed the World Health Organization to affirm ZIKV a public health crisis. To combat the ZIKV infections, non-structural protein 1 (NS1), a major host-interaction molecule contributing towards replication, pathogenesis and immune evasion is targeted in the current study. For this purpose, a comprehensive study is required to develop potential novel antiviral inhibitors. Three compounds were identified through docking programs exhibiting properties which are non-toxic to human host and could inhibit the elusive ZIKV. Significant interaction with active site residues and H-bond interactions with the key residues were analyzed for these compounds using molecular dynamics simulation. Free energy calculation predicted higher affinity of Deoxycalyxin-A for ZIKV NS1. This study contributes towards fighting ZIKV infections and can help researchers in designing drug for the treatment of ZIKV.
机译:硅化管线用于鉴定和设计针对ZIKV NS1蛋白的新型抑制剂。进行比较分子对接研究以探索由Autodock / Vina和Gold探索结构各种化合物与Zikv NS1的结合。 Zika病毒(Zikv)是一种黄病毒,负责威胁危及生命的感染,并由Aedes蚊子在其他生物中传播。它与Guillain Barre综合征(GBS)和小头畸形有关。这种流行的GBS和MicroCephaly的增加将世界卫生组织归咎于ZIKV公共卫生危机。为了对抗ZIKV感染,非结构蛋白1(NS1),旨在复制,发病机制和免疫逃逸的主要宿主相互作用分子在目前的研究中靶向。为此目的,需要综合研究来开发潜在的新型抗病毒抑制剂。通过对接计划鉴定三种化合物,该方案表现出对人宿主无毒的性质,并且可以抑制难以捉摸的ZIKV。使用分子动力学模拟分析与这些化合物的与关键残留有活性位点残留物和H键相互作用的显着相互作用。自由能量计算预测脱氧钙霉素-A为ZIKV NS1的亲和力。这项研究有助于打击ZIKV感染,并可以帮助研究人员设计用于治疗ZIKV的药物。

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