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Fusion of a fluorescent protein to the pUL25 minor capsid protein of pseudorabies virus allows live-cell capsid imaging with negligible impact on infection

机译:将荧光蛋白与pUL25融合 伪狂犬病病毒的小衣壳蛋白 允许活细胞衣壳成像可忽略不计 对感染的影响

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摘要

In order to resolve the location and activity of submicroscopic viruses in living cells, viral proteins are often fused to fluorescent proteins (FPs) and visualized by microscopy. In this study, we describe the fusion of FPs to three proteins of pseudorabies virus (PRV) that allowed imaging of capsids in living cells. Included in this study are the first recombinant PRV strains expressing FP–pUL25 fusions based on a design applied to herpes simplex virus type 1 by Homa and colleagues. The properties of each reporter virus were compared in both in vitro and in vivo infection models. PRV strains expressing FP–pUL25 and FP–pUL36 preserved wild-type properties better than traditional FP–pUL35 isolates in assays of plaque size and virulence in mice. The utility of these strains in studies of axon transport, nuclear dynamics and viral particle composition are documented.
机译:为了解决亚显微病毒在活细胞中的位置和活性,通常将病毒蛋白与荧光蛋白(FPs)融合并通过显微镜观察。在这项研究中,我们描述了FP与伪狂犬病病毒(PRV)的三种蛋白质的融合,从而使活细胞中的衣壳成像成为可能。这项研究包括第一批表达FP–pUL25融合蛋白的重组PRV菌株,该菌株基于Homa及其同事应用于1型单纯疱疹病毒的设计。在体外和体内感染模型中都比较了每种报告病毒的特性。表达FP–pUL25和FP–pUL36的PRV株在小鼠斑块大小和毒力测定中的野生型特性优于传统FP–pUL35分离株。这些菌株在轴突运输,核动力学和病毒颗粒组成的研究中的效用已记录。

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