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Recombinant influenza virus with a pandemic H2N2 polymerase complex has a higher adaptive potential than one with seasonal H2N2 polymerase complex

机译:具有大流行H2N2聚合酶复合物的重组流感病毒具有比具有季节性H2N2聚合酶复合物的重组流感病毒更高的适应性潜力

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摘要

The reassortment of influenza viral gene segments plays a key role in the genesis of pandemic strains. All of the last three pandemic viruses contained reassorted polymerase complexes with subunits derived from animal viruses, suggesting that the acquisition of a reassorted polymerase complex might have a role in generating these pandemic viruses. Here, we studied polymerase activities of the pandemic H2N2, seasonal H2N2 and pandemic H3N2 viruses. We observed that the viral ribonucleoprotein (vRNP) of pandemic H2N2 virus has a highly robust activity. The polymerase activity of seasonal H2N2 viruses, however, was much reduced. We further identified three mutations (PB2-I114V, PB1-S261N and PA-D383N) responsible for the reduced activity. To determine the potential impact of viral polymerase activity on the viral life cycle, recombinant H3N2 viruses carrying pandemic and seasonal H2N2 vRNP were studied in cell cultures supplemented with oseltamivir carboxylate and tested for their abilities to develop adaptive or resistant mutations. It was found that the recombinant virus with pandemic H2N2 vRNP was more capable of restoring the viral fitness than the one with seasonal vRNP. These results suggest that a robust vRNP is advantageous to influenza virus to cope with a new selection pressure.
机译:流感病毒基因片段的重排在大流行毒株的发生中起关键作用。最近三种大流行病毒均包含重新分类的聚合酶复合物和源自动物病毒的亚基,这表明获得重新分类的聚合酶复合物可能在产生这些大流行病毒中起作用。在这里,我们研究了大流行H2N2,季节性H2N2和大流行H3N2病毒的聚合酶活性。我们观察到大流行的H2N2病毒的病毒核糖核蛋白(vRNP)具有高度稳定的活性。但是,季节性H2N2病毒的聚合酶活性大大降低了。我们进一步确定了导致活性降低的三个突变(PB2-I114V,PB1-S261N和PA-D383N)。为了确定病毒聚合酶活性对病毒生命周期的潜在影响,在补充了奥司他韦羧酸盐的细胞培养物中研究了携带大流行和季节性H2N2 vRNP的重组H3N2病毒,并测试了它们产生适应性或抗性突变的能力。发现具有大流行H2N2 vRNP的重组病毒比具有季节性vRNP的重组病毒更能恢复病毒适应性。这些结果表明,强大的vRNP有利于流感病毒应对新的选择压力。

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