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Replication-Competent Influenza A and B Viruses Expressing a Fluorescent Dynamic Timer Protein for In Vitro and In Vivo Studies

机译:具有复制能力的甲型和乙型流感病毒表达荧光动态计时器蛋白,用于体内和体外研究

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摘要

Influenza A and B viruses (IAV and IBV, respectively) cause annual seasonal human respiratory disease epidemics. In addition, IAVs have been implicated in occasional pandemics with inordinate health and economic consequences. Studying influenza viruses in vitro or in vivo requires the use of laborious secondary methodologies to identify infected cells. To circumvent this requirement, replication-competent infectious influenza viruses expressing an easily traceable fluorescent reporter protein can be used. Timer is a fluorescent protein that undergoes a time-dependent color emission conversion from green to red. The rate of spectral change is independent of Timer protein concentration and can be used to chronologically measure the duration of its expression. Here, we describe the generation of replication-competent IAV and IBV where the viral non-structural protein 1 (NS1) was fused to the fluorescent dynamic Timer protein. Timer-expressing IAV and IBV displayed similar plaque phenotypes and growth kinetics to wild-type viruses in tissue culture. Within infected cells, Timer’s spectral shift can be used to measure the rate and cell-to-cell spread of infection using fluorescent microscopy, plate readers, or flow cytometry. The progression of Timer-expressing IAV infection was also evaluated in a mouse model, demonstrating the feasibility to characterize IAV cell-to-cell infections in vivo. By providing the ability to chronologically track viral spread, Timer-expressing influenza viruses are an excellent option to evaluate the in vitro and in vivo dynamics of viral infection.
机译:甲型和乙型流感病毒(分别为IAV和IBV)引起年度季节性人类呼吸道疾病大流行。此外,IAV已牵连偶尔的大流行,对健康和经济造成了严重后果。在体外或体内研究流感病毒需要使用费力的辅助方法来鉴定感染的细胞。为了避免这一要求,可以使用表达易于追踪的荧光报告蛋白的具有复制能力的传染性流感病毒。计时器是一种荧光蛋白,它会随时间从绿色到红色进行颜色发射转换。光谱变化率与Timer蛋白浓度无关,可用于按时间顺序测量其表达的持续时间。在这里,我们描述了复制型IAV和IBV的产生,其中病毒非结构蛋白1(NS1)与荧光动态Timer蛋白融合。表达定时器的IAV和IBV在组织培养中显示出与野生型病毒相似的噬菌斑表型和生长动力学。在被感染的细胞中,Timer的光谱偏移可用于通过荧光显微镜,酶标仪或流式细胞仪测量感染的速率和细胞间传播。还在小鼠模型中评估了表达定时器的IAV感染的进程,证明了在体内表征IAV细胞间感染的可行性。通过提供按时间顺序跟踪病毒扩散的功能,表达计时器的流感病毒是评估病毒感染的体外和体内动态的极佳选择。

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