首页> 外文期刊>Molecular & cellular proteomics: MCP >Quantitative proteomics using stable isotope labeling with amino acids in cell culture reveals changes in the cytoplasmic, nuclear, and nucleolar proteomes in Vero cells infected with the coronavirus infectious bronchitis virus.
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Quantitative proteomics using stable isotope labeling with amino acids in cell culture reveals changes in the cytoplasmic, nuclear, and nucleolar proteomes in Vero cells infected with the coronavirus infectious bronchitis virus.

机译:在细胞培养物中使用稳定同位素标记氨基酸的定量蛋白质组学揭示了感染冠状病毒感染性支气管炎病毒的Vero细胞中细胞质,核和核仁蛋白质组的变化。

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Virus-host interactions involve complex interplay between viral and host factors, rendering them an ideal target for proteomic analysis. Here we detail a high throughput quantitative proteomics analysis of Vero cells infected with the coronavirus infectious bronchitis virus (IBV), a positive strand RNA virus that replicates in the cytoplasm. Stable isotope labeling with amino acids in cell culture (SILAC) was used in conjunction with LC-MS/MS to identify and quantify 1830 cellular and two viral proteins from IBV-infected cells. Fractionation of cells into cytoplasmic, nuclear, and nucleolar extracts was used to reduce sample complexity and provide information on the trafficking of proteins between the different compartments. Each fraction showed a proportion of proteins exhibiting >or=2-fold changes in abundance. Ingenuity Pathway Analysis revealed that proteins that changed in response to infection could be grouped into different functional categories. These included proteins regulated by NF-kappaB- and AP-1-dependent pathways and proteins involved in the cytoskeleton and molecular motors. A luciferase-based reporter gene assay was used to validate the up-regulation of AP-1- and NF-kappaB-dependent transcription in IBV-infected cells and confirmed using immunofluorescence. Immunofluorescence was used to validate changes in the subcellular localization of vimentin and myosin VI in IBV-infected cells. The proteomics analysis also confirmed the presence of the viral nucleocapsid protein as localizing in the cytoplasm, nucleus, and nucleolus and the viral membrane protein in the cytoplasmic fraction. This research is the first application of SILAC to study total host cell proteome changes in response to positive sense RNA virus infection and illustrates the versatility of this technique as applied to infectious disease research.
机译:病毒-宿​​主相互作用涉及病毒和宿主因素之间的复杂相互作用,使它们成为蛋白质组学分析的理想目标。在这里,我们详细介绍了感染冠状病毒感染性支气管炎病毒(IBV)(在细胞质中复制的正链RNA病毒)的Vero细胞的高通量定量蛋白质组学分析。在细胞培养物中用氨基酸进行稳定同位素标记(SILAC)与LC-MS / MS结合使用,可以鉴定和定量IBV感染细胞中的1830种细胞蛋白和两种病毒蛋白。将细胞分为细胞质提取物,核提取物和核仁提取物可减少样品的复杂性,并提供有关不同区室之间蛋白质运输的信息。每个部分显示一定比例的蛋白质,其丰度变化≥2倍。创造力途径分析表明,响应感染而发生变化的蛋白质可以分为不同的功能类别。这些包括受NF-κB和AP-1依赖性途径调节的蛋白质,以及参与细胞骨架和分子运动的蛋白质。基于萤光素酶的报告基因检测用于验证IBV感染细胞中AP-1-和NF-kappaB依赖性转录的上调,并使用免疫荧光进行确认。免疫荧光用于验证波形蛋白和肌球蛋白VI在IBV感染细胞中的亚细胞定位变化。蛋白质组学分析还证实,病毒核衣壳蛋白的存在与细胞质部分中的细胞质,细胞核和核仁以及病毒膜蛋白有关。这项研究是SILAC首次用于研究对阳性RNA病毒感染有反应的总宿主细胞蛋白质组变化,并说明了该技术在传染病研究中的多功能性。

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