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Effects of Influenza A Virus NS1 Protein on Protein Expression: the NS1 Protein Enhances Translation and Is Not Required for Shutoff of Host Protein Synthesis

机译:甲型流感病毒NS1蛋白对蛋白表达的影响:NS1蛋白增强翻译不需要关闭宿主蛋白合成

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摘要

The influenza A virus NS1 protein, a virus-encoded alpha/beta interferon (IFN-α/β) antagonist, appears to be a key regulator of protein expression in infected cells. We now show that NS1 protein expression results in enhancement of reporter gene activity from transfected plasmids. This effect appears to be mediated at the translational level, and it is reminiscent of the activity of the adenoviral virus-associated I (VAI) RNA, a known inhibitor of the antiviral, IFN-induced, PKR protein. To study the effects of the NS1 protein on viral and cellular protein synthesis during influenza A virus infection, we used recombinant influenza viruses lacking the NS1 gene (delNS1) or expressing truncated NS1 proteins. Our results demonstrate that the NS1 protein is required for efficient viral protein synthesis in COS-7 cells. This activity maps to the amino-terminal domain of the NS1 protein, since cells infected with wild-type virus or with a mutant virus expressing a truncated NS1 protein—lacking approximately half of its carboxy-terminal end—showed similar kinetics of viral and cellular protein expression. Interestingly, no major differences in host cell protein synthesis shutoff or in viral protein expression were found among NS1 mutant viruses in Vero cells. Thus, another viral component(s) different from the NS1 protein is responsible for the inhibition of host protein synthesis during viral infection. In contrast to the earlier proposal suggesting that the NS1 protein regulates the levels of spliced M2 mRNA, no effects on M2 protein accumulation were seen in Vero cells infected with delNS1 virus.
机译:甲型流感病毒NS1蛋白是一种病毒编码的α/β干扰素(IFN-α/β)拮抗剂,似乎是感染细胞中蛋白质表达的关键调节剂。我们现在显示NS1蛋白表达导致转染质粒的报告基因活性增强。这种作用似乎是在翻译水平上介导的,它使人联想到与腺病毒相关的I(VAI)RNA(一种已知的抗病毒,IFN诱导的PKR蛋白抑制剂)的活性。为了研究甲型流感病毒感染期间NS1蛋白对病毒和细胞蛋白合成的影响,我们使用了缺乏NS1基因(delNS1)或表达截短的NS1蛋白的重组流感病毒。我们的结果表明,NS1蛋白是在COS-7细胞中高效病毒蛋白合成所必需的。此活性映射到NS1蛋白的氨基末端结构域,因为感染了野生型病毒或表达截短的NS1蛋白的突变病毒的细胞(缺少其羧基末端的一半)显示出相似的病毒和细胞动力学蛋白表达。有趣的是,在Vero细胞中的NS1突变病毒中,在宿主细胞蛋白质合成关闭或病毒蛋白质表达方面没有发现主要差异。因此,不同于NS1蛋白的另一种病毒组分负责病毒感染期间宿主蛋白合成的抑制。与早期的提议表明NS1蛋白调节剪接的M2 mRNA的水平相反,在感染了delNS1病毒的Vero细胞中未观察到对M2蛋白积累的影响。

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