Institute of Virology, Ulm University Hospital, Ulm, Germany.
PLoS One. 2010 Feb 11;5(2):e9174. doi: 10.1371/journal.pone.0009174.
Recombinant viruses labelled with fluorescent proteins are useful tools in molecular virology with multiple applications (e.g., studies on intracellular trafficking, protein localization, or gene activity). We generated by homologous recombination three recombinant cytomegaloviruses carrying the enhanced yellow fluorescent protein (EYFP) fused with the viral proteins IE-2, ppUL32 (pp150), and ppUL83 (pp65). In growth kinetics, the three viruses behaved all like wild type, even at low multiplicity of infection (MOI). The expression of all three fusion proteins was detected, and their respective localizations were the same as for the unmodified proteins in wild-type virus-infected cells. We established the in vivo measurement of fluorescence intensity and used the recombinant viruses to measure inhibition of viral replication by neutralizing antibodies or antiviral substances. The use of these viruses in a pilot screen based on fluorescence intensity and high-content analysis identified cellular kinase inhibitors that block viral replication. In summary, these viruses with individually EYFP-tagged proteins will be useful to study antiviral substances and the dynamics of viral infection in cell culture.
带有荧光蛋白的重组病毒是分子病毒学中非常有用的工具,具有多种应用(例如,用于研究细胞内运输、蛋白质定位或基因活性)。我们通过同源重组生成了三种携带增强型黄色荧光蛋白(EYFP)融合病毒蛋白 IE-2、ppUL32(pp150)和 ppUL83(pp65)的重组巨细胞病毒。在生长动力学方面,这三种病毒的行为均与野生型相同,即使在低感染复数(MOI)下也是如此。检测到所有三种融合蛋白的表达,并且它们在野生型病毒感染细胞中的定位与未修饰的蛋白相同。我们建立了荧光强度的体内测量方法,并使用重组病毒来测量中和抗体或抗病毒物质对病毒复制的抑制作用。基于荧光强度和高内涵分析的初步筛选使用这些病毒鉴定了阻断病毒复制的细胞激酶抑制剂。总之,这些带有单独 EYFP 标记蛋白的病毒将有助于研究抗病毒物质和病毒感染在细胞培养中的动态。