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甲型和乙型流感病毒通过兼容的病毒包装信号进行型间重配。

Influenza A and B virus intertypic reassortment through compatible viral packaging signals.

作者信息

Baker Steven F, Nogales Aitor, Finch Courtney, Tuffy Kevin M, Domm William, Perez Daniel R, Topham David J, Martínez-Sobrido Luis

机构信息

Department of Microbiology and Immunology, University of Rochester, Rochester, New York, USA.

Department of Veterinary Medicine, University of Maryland College Park, and Virginia-Maryland Regional College of Veterinary Medicine, College Park, Maryland, USA.

出版信息

J Virol. 2014 Sep;88(18):10778-91. doi: 10.1128/JVI.01440-14. Epub 2014 Jul 9.

Abstract

UNLABELLED

Influenza A and B viruses cocirculate in humans and together cause disease and seasonal epidemics. These two types of influenza viruses are evolutionarily divergent, and exchange of genetic segments inside coinfected cells occurs frequently within types but never between influenza A and B viruses. Possible mechanisms inhibiting the intertypic reassortment of genetic segments could be due to incompatible protein functions of segment homologs, a lack of processing of heterotypic segments by influenza virus RNA-dependent RNA polymerase, an inhibitory effect of viral proteins on heterotypic virus function, or an inability to specifically incorporate heterotypic segments into budding virions. Here, we demonstrate that the full-length hemagglutinin (HA) of prototype influenza B viruses can complement the function of multiple influenza A viruses. We show that viral noncoding regions were sufficient to drive gene expression for either type A or B influenza virus with its cognate or heterotypic polymerase. The native influenza B virus HA segment could not be incorporated into influenza A virus virions. However, by adding the influenza A virus packaging signals to full-length influenza B virus glycoproteins, we rescued influenza A viruses that possessed HA, NA, or both HA and NA of influenza B virus. Furthermore, we show that, similar to single-cycle infectious influenza A virus, influenza B virus cannot incorporate heterotypic transgenes due to packaging signal incompatibilities. Altogether, these results demonstrate that the lack of influenza A and B virus reassortants can be attributed at least in part to incompatibilities in the virus-specific packaging signals required for effective segment incorporation into nascent virions.

IMPORTANCE

Reassortment of influenza A or B viruses provides an evolutionary strategy leading to unique genotypes, which can spawn influenza A viruses with pandemic potential. However, the mechanism preventing intertypic reassortment or gene exchange between influenza A and B viruses is not well understood. Nucleotides comprising the coding termini of each influenza A virus gene segment are required for specific segment incorporation during budding. Whether influenza B virus shares a similar selective packaging strategy or if packaging signals prevent intertypic reassortment remains unknown. Here, we provide evidence suggesting a similar mechanism of influenza B virus genome packaging. Furthermore, by appending influenza A virus packaging signals onto influenza B virus segments, we rescued recombinant influenza A/B viruses that could reassort in vitro with another influenza A virus. These findings suggest that the divergent evolution of packaging signals aids with the speciation of influenza A and B viruses and is in part responsible for the lack of intertypic viral reassortment.

摘要

未标记

甲型和乙型流感病毒在人群中共同传播,一起引发疾病和季节性流行。这两种流感病毒在进化上存在差异,在共感染细胞内,基因片段的交换在同型病毒之间频繁发生,但在甲型和乙型流感病毒之间从未发生过。抑制基因片段异型重配的可能机制可能是由于片段同源物的蛋白功能不兼容、流感病毒RNA依赖性RNA聚合酶对异型片段缺乏加工、病毒蛋白对异型病毒功能的抑制作用,或者无法将异型片段特异性地整合到出芽的病毒颗粒中。在此,我们证明了原型乙型流感病毒的全长血凝素(HA)可以补充多种甲型流感病毒的功能。我们发现病毒非编码区足以驱动甲型或乙型流感病毒利用其同源或异型聚合酶进行基因表达。天然的乙型流感病毒HA片段不能整合到甲型流感病毒颗粒中。然而,通过将甲型流感病毒包装信号添加到全长乙型流感病毒糖蛋白上,我们拯救出了具有乙型流感病毒HA、NA或同时具有HA和NA的甲型流感病毒。此外,我们表明,与单循环感染性甲型流感病毒类似,由于包装信号不兼容,乙型流感病毒不能整合异型转基因。总之,这些结果表明,甲型和乙型流感病毒重组体的缺乏至少部分可归因于有效片段整合到新生病毒颗粒中所需的病毒特异性包装信号不兼容。

重要性

甲型或乙型流感病毒的重配提供了一种进化策略,可产生独特的基因型,这可能产生具有大流行潜力的甲型流感病毒。然而,阻止甲型和乙型流感病毒之间异型重配或基因交换的机制尚不清楚。在出芽过程中,每个甲型流感病毒基因片段的编码末端的核苷酸是特异性片段整合所必需的。乙型流感病毒是否具有类似的选择性包装策略,或者包装信号是否阻止异型重配仍不清楚。在此,我们提供的证据表明乙型流感病毒基因组包装机制类似。此外,通过将甲型流感病毒包装信号附加到乙型流感病毒片段上,我们拯救出了可在体外与另一种甲型流感病毒重配的重组甲型/乙型流感病毒。这些发现表明包装信号的趋异进化有助于甲型和乙型流感病毒的物种形成,并且部分导致了异型病毒重配的缺乏。

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