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Visualization of feline calicivirus replication in real-time with recombinant viruses engineered to express fluorescent reporter proteins.

机译:利用重组病毒可实时可视化猫杯状病毒的复制,该重组病毒经改造可表达荧光报告蛋白。

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摘要

Caliciviruses are non-enveloped, icosahedral viruses with a single-stranded, positive sense RNA genome. Transposon-mediated insertional mutagenesis was used to insert a transprimer sequence into random sites of an infectious full-length cDNA clone of the feline calicivirus (FCV) genome. A site in the LC gene (encoding the capsid leader protein) of the FCV genome was identified that could tolerate foreign insertions, and two viable recombinant FCV variants expressing LC fused either to AcGFP, or DsRedFP were recovered. The effects of the insertions on LC processing, RNA replication, and stability of the viral genome were analyzed, and the progression of a calicivirus single infection and co-infection were captured by real-time imaging fluorescent microscopy. The ability to engineer viable recombinant caliciviruses expressing foreign markers enables new approaches to investigate virus and host cell interactions, as well as studies of viral recombination, one of the driving forces of calicivirus evolution.
机译:杯状病毒是具有单链阳性正义RNA基因组的非包膜二十面体病毒。转座子介导的插入诱变用于将反引物序列插入猫杯状病毒(FCV)基因组的感染性全长cDNA克隆的随机位点。在FCV基因组的LC基因(编码衣壳前导蛋白)中发现了一个位点,该位点可以耐受外源插入,并回收了表达LC的两个可行重组FCV变异体,融合了AcGFP或DsRedFP。分析了插入对LC加工,RNA复制和病毒基因组稳定性的影响,并通过实时成像荧光显微镜捕获了杯状病毒单次感染和共感染的进程。工程表达表达外源标记的重组杯状病毒的能力使研究病毒和宿主细胞相互作用的新方法,以及对杯状病毒进化驱动力之一的病毒重组的研究成为可能。

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