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A seven plasmid-based system for the rescue of influenza C virus

机译:一个基于七个质粒的系统,用于拯救丙型流感病毒

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摘要

We report the establishment of a reverse-genetics system for the rescue of recombinant influenza C/JJ/50 virus from seven plasmids. The nucleotide sequence of the whole C/JJ/50 genome was determined and full-length cDNAs were cloned into an RNA pol I/pol II-based bidirectional vector. Transfection of Vero cells and subsequent amplification on MDCK cells yielded viral HA titres of 128. The utility of this bidirectional approach was proved by generating a reassortant virus encoding the NS segment from strain C/JHB/1/66 and a virus with mutations in the noncoding ends of PB1. The latter virus, which has a base-pair mutation within the proposed double-stranded region of the PB1 termini, exhibited impaired replication. In conclusion, our efficient seven-plasmid system for the rescue of recombinant influenza C virus may be used to study the influenza C virus life cycle in more detail and for generation of influenza C virus-based vectors.
机译:我们报告了建立反向遗传系统,用于从七个质粒中拯救重组C / JJ / 50型流感病毒。确定了整个C / JJ / 50基因组的核苷酸序列,并将全长cDNA克隆到基于RNA pol I / pol II的双向载体中。 Vero细胞的转染和随后在MDCK细胞上的扩增产生了128的病毒HA滴度。这种双向方法的实用性通过从菌株C / JHB / 1/66产生编码NS片段的重配病毒和一种在其上带有突变的病毒来证明。 PB1的非编码端。后一种病毒在PB1末端的拟议双链区域内具有碱基对突变,其复制受损。总之,我们用于挽救重组C型流感病毒的有效七质粒系统可用于更详细地研究C型流感病毒的生命周期,并用于生成基于C型流感病毒的载体。

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