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Diversity of the RNA Polymerase in the H7N9 Influenza A Virus

机译:H7N9甲型流感病毒中RNA聚合酶的多样性

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A novel influenza virus of the H7N9 subtype has infected more than 350 people in China since 19 February 2013. Evolutionary analysis indicates that the virus is a reassortant originated from H7, N9 and H9N2 avian influenza viruses, and bears some amino acids associated with mammalian receptor binding, raising concern over the possibility of a new influenza pandemic. Besides HA and NA, the mutation of the polymerase is known to have an important role in virulence, host adaptation and transmissibility in mammalians. In this article, the annotation of the polymerase protein domain associated with molecular function has been highlighted, suggesting the combination of RNA polymerase of H7N9 viruses is still not stable for host adaptation. In addition, the mutation hallmarks in polymerase gene of H7N9 are compared, providing the potential determinants of the evolution in the H7N9 influenza A virus.
机译:自2013年2月19日以来,一种新型的H7N9亚型流感病毒已在​​中国感染了350多人。进化分析表明,该病毒是源自H7,N9和H9N2禽流感病毒的重配体,并带有一些与哺乳动物受体相关的氨基酸具有约束力,引起人们对新的流感大流行可能性的关注。除HA和NA外,已知聚合酶的突变在哺乳动物的毒力,宿主适应性和传播性方面也起重要作用。在本文中,突出了与分子功能相关的聚合酶蛋白结构域的注释,表明H7N9病毒的RNA聚合酶的组合对于宿主适应仍然不稳定。此外,比较了H7N9聚合酶基因中的突变特征,为H7N9甲型流感病毒的进化提供了潜在的决定因素。

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