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Avian Influenza A Virus Polymerase Recruits Cellular RNA Helicase eIF4A3 to Promote Viral mRNA Splicing and Spliced mRNA Nuclear Export

机译:禽流感病毒聚合酶募集细胞RNA解旋酶eIF4A3促进病毒mRNA剪接和剪接的mRNA核输出

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摘要

The influenza A virus replicates in a broad range of avian and mammalian species by hijacking cellular factors and processes. Avian influenza A viruses (AIVs) generally propagated poorly in mammalian cells, but some mutants of virus-encoded RNA polymerase components, especially PB2 subunit, can overcome host restriction. Host factors associated with PB2 may be essential for efficient AIV replication in mammalian cells. Here, we infected human cells with the PB2 Flag-tagged replication-competent recombinant AIV and identified cellular proteins that coprecipitate with PB2 protein by mass spectrometry. We confirmed one of the coprecipitating host factors, DEAD-box protein eIF4A3, that interacts with viral PB2, PB1, and NP proteins. Depletion of endogenous eIF4A3 significantly reduced virus replication. Later studies showed that eIF4A3 is essential for viral RNA polymerase activity and viral RNAs synthesis. Upon systematic dissection of the influenza virus progeny mRNA generation, from pre-mRNA processing to nuclear export, we found that the depletion of eIF4A3 resulted in significant defects in the ratio of M2 to M1 and NS2 to NS1, and the proportion of viral spliced mRNA in the nucleus increased, indicating that eIF4A3 plays a significant function in viral nascent intron mRNA splicing and spliced mRNA (M2 and NS2) nuclear export. Additionally, we confirmed that in specific deletion of eIF4A3, the synthesis of reduced NS2 can significantly impair neo-synthetized viral ribonucleoprotein (vRNP) nuclear export. Taken together, our findings revealed that eIF4A3 is a key mediator of AIV polymerase activity, mRNA splicing, and spliced mRNA nuclear export.
机译:通过劫持细胞因子和过程,甲型流感病毒可在多种鸟类和哺乳动物中复制。甲型禽流感病毒(AIV)通常在哺乳动物细胞中繁殖不良,但某些病毒编码的RNA聚合酶成分的突变体,尤其是PB2亚基,可以克服宿主的限制。与PB2相关的宿主因子对于哺乳动物细胞中有效AIV复制可能至关重要。在这里,我们用PB2标记复制功能的重组AIV感染人细胞,并通过质谱鉴定了与PB2蛋白共沉淀的细胞蛋白。我们证实了共同沉淀的宿主因子之一,DEAD-box蛋白eIF4A3与病毒PB2,PB1和NP蛋白相互作用。内源性eIF4A3的耗竭显着减少了病毒复制。后来的研究表明,eIF4A3对于病毒RNA聚合酶活性和病毒RNA合成至关重要。从前mRNA加工到核输出,系统分析了流感病毒后代的mRNA生成后,我们发现eIF4A3的耗竭导致M2与M1的比例和NS2与NS1的比例以及病毒剪接的mRNA的比例出现重大缺陷在细胞核中的增加,表明eIF4A3在病毒新生内含子mRNA剪接和剪接的mRNA(M2和NS2)核输出中起重要作用。此外,我们证实,在eIF4A3的特定缺失中,还原型NS2的合成可显着削弱新合成的病毒核糖核蛋白(vRNP)的核输出。综上所述,我们的发现表明eIF4A3是AIV聚合酶活性,mRNA剪接和剪接的mRNA核输出的关键介体。

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