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Influenza virus polymerase confers independence of the cellular cap-binding factor eIF4E for viral mRNA translation

机译:流感病毒聚合酶赋予细胞帽结合因子eIF4E病毒mRNA翻译的独立性

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摘要

The influenza virus mRNAs are structurally similar to cellular mRNAs nevertheless; the virus promotes selective translation of viral mRNAs despite the inhibition of host cell protein synthesis. The infection proceeds normally upon functional impairment of eIF4E cap-binding protein, but requires functional eIF4A helicase and eIF4G factor. Here, we have studied whether the presence of cis elements in viral mRNAs or the action of viral proteins is responsible for this eIF4E-independence. The eIF4E protein is required for viral mRNA translation in vitro, indicating that cis-acting RNA sequences are not involved in this process. We also show that PB2 viral polymerase subunit interacts with the eIF4G protein. In addition, a chimeric mRNA containing viral UTR sequences transcribed by the viral polymerase out of the infection is successfully translated independently of an impaired eIF4E factor. These data support that the viral polymerase is responsible for the eIF4E independence of influenza virus mRNA translation.
机译:然而,流感病毒的mRNA在结构上与细胞mRNA相似。尽管抑制了宿主细胞蛋白质的合成,该病毒仍能促进病毒mRNA的选择性翻译。感染通常在eIF4E帽结合蛋白功能受损时进行,但需要功能性eIF4A解旋酶和eIF4G因子。在这里,我们研究了病毒mRNA中顺式元件的存在或病毒蛋白的作用是否是这种eIF4E独立性的原因。 eIF4E蛋白是体外病毒mRNA翻译所必需的,表明顺式作用RNA序列不参与此过程。我们还显示PB2病毒聚合酶亚基与eIF4G蛋白相互作用。另外,包含病毒UTR序列的嵌合mRNA被病毒聚合酶转录出感染,成功地独立于受损的eIF4E因子进行了翻译。这些数据支持病毒聚合酶负责流感病毒mRNA翻译的eIF4E独立性。

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