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Screening bioactives reveals nanchangmycin as a broad spectrum antiviral active against Zika virus

机译:筛选生物活性物质显示南昌霉素是针对寨卡病毒的广谱抗病毒活性物质

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摘要

Zika virus is an emerging arthropod-borne flavivirus for which there are no vaccines or specific therapeutics. We screened a library of 2000 ‘bioactive’ compounds for their ability to block Zika virus infection in three distinct cell-types with two different strains of Zika virus. Using a microscopy-based assay, we validated 38 drugs that inhibited Zika virus infection, including FDA approved nucleoside analogs. Cells expressing high levels of the attachment factor AXL can be protected from infection with receptor tyrosine kinase inhibitors, while placental-derived cells that lack AXL expression are insensitive to this inhibition. Importantly, we identified nanchangmycin as a potent inhibitor of Zika virus entry across all cell types tested including physiologically relevant primary cells. Nanchanmycin was also active against other medically relevant viruses including West Nile, dengue, and chikungunya virus that use a similar route of entry. This study provides a resource of small molecules to study Zika virus pathogenesis.
机译:Zika病毒是一种新兴的节肢动物传播的黄病毒,尚无疫苗或特效疗法。我们筛选了一个包含2000种“生物活性”化合物的库,以了解它们在两种不同的Zika病毒株中可在三种不同的细胞类型中阻止Zika病毒感染的能力。使用基于显微镜的分析,我们验证了38种抑制Zika病毒感染的药物,包括FDA批准的核苷类似物。可以保护表达高水平附着因子AXL的细胞免受受体酪氨酸激酶抑制剂的感染,而缺乏AXL表达的胎盘来源的细胞对此抑制不敏感。重要的是,我们确定南昌霉素是在所有测试的细胞类型(包括生理相关的原代细胞)中寨卡病毒进入的有效抑制剂。 Nanchanmycin对具有类似进入途径的其他医学相关病毒(包括西尼罗河,登革热和基孔肯雅病毒)也具有活性。这项研究提供了小分子资源来研究寨卡病毒的发病机理。

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