首页> 外文期刊>Frontiers in Chemistry >Discovery of Novel Bovine Viral Diarrhea Inhibitors Using Structure-Based Virtual Screening on the Envelope Protein E2
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Discovery of Novel Bovine Viral Diarrhea Inhibitors Using Structure-Based Virtual Screening on the Envelope Protein E2

机译:发现新的牛病毒性腹泻抑制剂使用基于结构的虚拟筛选的信封蛋白E2上。

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Bovine viral diarrhea virus (BVDV) is a member of the genus Pestivirus within the family Flaviviridae. BVDV causes both acute and persistent infections in cattle, leading to substantial financial losses to the livestock industry each year. The global prevalence of persistent BVDV infection and the lack of a highly effective antiviral therapy have spurred intensive efforts to discover and develop novel anti-BVDV therapies in the pharmaceutical industry. Antiviral targeting of virus envelope proteins is an effective strategy for therapeutic intervention of viral infections. We performed prospective small-molecule high-throughput docking to identify molecules that likely bind to the region delimited by domains I and II of the envelope protein E2 of BVDV. Several structurally different compounds were purchased or synthesized, and assayed for antiviral activity against BVDV. Five of the selected compounds were active displaying IC50 values in the low- to mid-micromolar range. For these compounds, their possible binding determinants were characterized by molecular dynamics simulations. A common pattern of interactions between active molecules and aminoacid residues in the binding site in E2 was observed. These findings could offer a better understanding of the interaction of BVDV E2 with these inhibitors, as well as benefit the discovery of novel and more potent BVDV antivirals.
机译:牛病毒性腹泻病毒(BVDV)是黄病毒科中瘟病毒属的成员。 BVDV引起牛的急性和持续感染,每年给畜牧业造成可观的经济损失。持续存在的BVDV感染在全球范围内普遍存在,并且缺乏高效的抗病毒治疗,促使人们在制药业中进行大量努力以发现和开发新的抗BVDV治疗方法。抗病毒包膜蛋白的抗病毒靶向是治疗病毒感染的有效策略。我们进行了预期的小分子高通量对接,以鉴定可能与BVDV包膜蛋白E2的结构域I和II界定的区域结合的分子。购买或合成了几种结构上不同的化合物,并测定了其对BVDV的抗病毒活性。选定的化合物中有五种具有活性,显示其低至中微摩尔范围的IC50值。对于这些化合物,通过分子动力学模拟表征了它们可能的结合决定簇。观察到活性分子与E2结合位点中氨基酸残基之间相互作用的共同模式。这些发现可以更好地理解BVDV E2与这些抑制剂的相互作用,并有助于发现新型更有效的BVDV抗病毒药物。

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