首页> 外文期刊>Antimicrobial agents and chemotherapy. >Novel real-time monitoring system for human cytomegalovirus-infected cells in vitro that uses a green fluorescent protein-PML-expressing cell line.
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Novel real-time monitoring system for human cytomegalovirus-infected cells in vitro that uses a green fluorescent protein-PML-expressing cell line.

机译:使用绿色荧光蛋白-PML表达细胞系的新型体外人巨细胞病毒感染细胞实时监控系统。

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Promyelocytic leukemia (PML) bodies are discrete nuclear foci that are intimately associated with many DNA viruses. In human cytomegalovirus (HCMV) infection, the IE1 (for "immediate-early 1") protein has a marked effect on PML bodies via de-SUMOylation of PML protein. Here, we report a novel real-time monitoring system for HCMV-infected cells using a newly established cell line (SE/15) that stably expresses green fluorescent protein (GFP)-PML protein. In SE/15 cells, HCMV infection causes specific and efficient dispersion of GFP-PML bodies in an IE1-dependent manner, allowing the infected cells to be monitored by fluorescence microscopy without immunostaining. Since a specific change in the detergent solubility of GFP-PML occurs upon infection, the infected cells can be quantified by GFP fluorescence measurement after extraction. With this assay, the inhibitory effects of heparin and neutralizing antibodies were determined in small-scale cultures, indicating its usefulness for screening inhibitory reagents for laboratory virus strains. Furthermore, we established a sensitive imaging assay by counting the number of nuclei containing dispersed GFP-PML, which is applicable for titration of slow-growing clinical isolates. In all strains tested, the virus titers estimated by the GFP-PML imaging assay were well correlated with the plaque-forming cell numbers determined in human embryonic lung cells. Coculture of SE/15 cells and HCMV-infected fibroblasts permitted a rapid and reliable method for estimating the 50% inhibitory concentration values of drugs for clinical isolates in susceptibility testing. Taken together, these results demonstrate the development of a rapid, sensitive, quantitative, and specific detection system for HCMV-infected cells involving a simple procedure that can be used for titration of low-titer clinical isolates.
机译:早幼粒细胞白血病(PML)体是与许多DNA病毒密切相关的离散核灶。在人类巨细胞病毒(HCMV)感染中,IE1(用于“立即早期1”)蛋白通过PML蛋白的脱SUMOylation对PML体具有显着影响。在这里,我们报告使用新型建立的细胞系(SE / 15)稳定表达绿色荧光蛋白(GFP)-PML蛋白的HCMV感染细胞的新型实时监控系统。在SE / 15细胞中,HCMV感染以IE1依赖性方式引起GFP-PML体的特异性和有效分散,从而允许通过荧光显微镜对感染的细胞进行监测而无需进行免疫染色。由于感染时会发生GFP-PML的去污剂溶解度发生特定变化,因此提取后可通过GFP荧光测量来定量感染的细胞。通过该测定,在小规模培养中确定了肝素和中和抗体的抑制作用,表明其可用于筛选实验室病毒株的抑制剂。此外,我们通过计算包含分散的GFP-PML的核数建立了灵敏的成像分析方法,该方法适用于滴定缓慢生长的临床分离株。在所有测试的菌株中,通过GFP-PML成像分析估计的病毒滴度与在人胚肺细胞中测定的噬斑形成细胞数量具有良好的相关性。 SE / 15细胞和HCMV感染的成纤维细胞的共培养允许快速,可靠的方法来评估药敏试验中临床分离株药物的50%抑制浓度值。综上所述,这些结果证明了针对HCMV感染细胞的快速,灵敏,定量和特异检测系统的开发,涉及一种可用于滴定低滴度临床分离株的简单程序。

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