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Local structural changes of the influenza A virus ribonucleoprotein complex by single mutations in the specific residues involved in efficient genome packaging

机译:流感的局部结构变化在有效基因组包装中的单一突变中的单次突变在有效基因组包装中的单次突变变化

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摘要

The influenza A virus genome consists of eight single-stranded negative-sense RNA segments. The noncoding regions located at the 3'- and 5'- ends of each segment are necessary for genome packaging, and the terminal coding regions are required to precisely bundle the eight segments. However, the nucleotide residues important for genome bundling are not defined. Here, we introduced premature termination codons in the hemagglutinin (HA) or matrix protein 2 (M2) gene and constructed virus libraries containing random sequences in the terminal coding regions. Using these virus libraries, we identified nucleotide residues involved in efficient virus propagation. Viral genome packaging was impaired in viruses that contained single mutations at these identified residues. Furthermore, these single mutations altered the local structure of the viral ribonucleoprotein complex. Our results show that specific nucleotide residues in the viral protein coding region are involved in forming the precise structure of the viral ribonucleoprotein complex.
机译:流感病毒基因组由八个单链的阴性感测RNA段组成。位于每个段的3'-和5'-末端的非编码区所必需的基因组包装,和终端编码区需要精确捆绑八个段。然而,未定义对基因组捆绑重要的核苷酸残基。这里,我们引入了血凝素(HA)或基质蛋白2(M2)基因的过早终止密码子,并在终端编码区中含有随机序列的构建病毒文库。使用这些病毒文库,我们确定了有效病毒繁殖中涉及的核苷酸残基。病毒基因组包装在这些鉴定的残留物中含有单一突变的病毒中受损。此外,这些单一突变改变了病毒核糖核蛋白复合物的局部结构。我们的结果表明,病毒蛋白编码区的特定核苷酸残基涉及形成病毒核糖核蛋白复合物的精确结构。

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