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Structure of the yellow fever NS5 protein reveals conserved drug targets shared among flaviviruses

机译:黄热病NS5蛋白的结构揭示了黄病毒中共享的保守药物靶标

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Yellow fever virus (YFV) is responsible for devastating outbreaks of Yellow fever (YF) in humans and is associated with high mortality rates. Recent large epidemics and epizootics and exponential increases in the numbers of YF cases in humans and non-human primates highlight the increasing threat YFV poses, despite the availability of an effective YFV vaccine. YFV is the first human virus discovered, but the structures of several of the viral proteins remain poorly understood. Here we report the structure of the full-length NS5 protein, a key enzyme for the replication of flaviviruses that contains both a methyltransferase domain and an RNA dependent RNA polymerase domain, at 3.1 angstrom resolution. The viral polymerase adopts right-hand fold, demonstrating the similarities of the Yellow fever, Dengue and Zika polymerases. Together this data suggests NS5 as a prime and ideal target for the design of pan-flavivirus inhibitors.
机译:黄热病病毒(YFV)负责人类的黄热病(YF)的爆发,并且与高死亡率有关。 最近的大型流行病和对指数增加了人类和非人类和非人类灵长类动物的数量,突出了越来越多的威胁YFV姿势,尽管有效的YFV疫苗。 YFV是第一个发现的人类病毒,但是几种病毒蛋白的结构仍然明白很差。 在这里,我们报告了全长NS5蛋白的结构,是用于复制的黄病毒复制的关键酶,其含有甲基转移酶结构域和RNA依赖性RNA聚合结构域,在3.1埃分辨率下。 病毒聚合酶采用右折叠,展示黄热,登革热和Zika聚合酶的相似性。 这些数据共同建议NS5作为Pan-Flavivirus抑制剂设计的主要和理想目标。

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