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首页> 外文期刊>Journal of Immunological Methods >A stable marker for specific T-cells: a TCR alpha/green fluorescent protein (GFP) fusionprotein reconstitutes a functionally active TCR complex.
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A stable marker for specific T-cells: a TCR alpha/green fluorescent protein (GFP) fusionprotein reconstitutes a functionally active TCR complex.

机译:特定T细胞的稳定标记物:TCRα/绿色荧光蛋白(GFP)融合蛋白可重构功能活跃的TCR复合物。

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The detection of antigen specific clonal T-cell populations in vivo during T-cell selection and an immune responses is often hampered due to the lack of suitable clonotype specific monoclonal antibodies. In order to determine the potential usefulness of green fluorescent protein (GFP) to follow specific T-cells in vivo, we decided to express and analyze the function of a T-cell receptor (TCR) alpha chain-GFP fusionprotein. The TCRalpha and beta chain cDNAs of a Leishmania major-specific murine T helper 2 cell clone were cloned and inserted into the pHSE3' expression vector. Simultaneously, a TCRalpha expression vector was constructed containing a C-terminal in frame fusion with the open reading frame of the enhanced GFP (EGFP). TCRalpha/TCRbeta or TCRalpha-EGFP/TCRbeta constructs were expressed in T-cell hybridoma cells 58alpha(-)beta(-) which lack an endogenous TCR but still express CD3 components. The TCRalpha-EGFP fusionprotein was detected with the expected molecular weight by immunoprecipitation and Western Blot analysis. Surface staining of TCR components was detected in transfectants expressing the wild type TCR heterodimer and, with only a slight reduction in intensity, also in those expressing the TCR-EGFP complex. Hence, expression and transport to the outer cell membrane is possible despite the 27 kD C-terminal extension of the TCRalpha. Most importantly, the EGFP-tagged TCR was functional since the transfectants produced IL-2 in response to stimulation via their TCR. Thus, TCR-EGFP constructs represent attractive tools to study posttranslational regulation of TCR expression and ligand-induced TCR clustering as well as the fate of antigen specific T-cells during tolerance induction and immunity in transgenic mouse models.
机译:由于缺乏合适的克隆型特异性单克隆抗体,在T细胞选择和免疫应答期间体内抗原特异性克隆T细胞群体的检测常常受到阻碍。为了确定绿色荧光蛋白(GFP)在体内跟随特定T细胞的潜在有用性,我们决定表达和分析T细胞受体(TCR)α链-GFP融合蛋白的功能。克隆了利什曼原虫主要鼠类T辅助细胞2细胞克隆的TCRalpha和β链cDNA,并将其插入pHSE3'表达载体。同时,构建了TCRα表达载体,其包含与增强型GFP(EGFP)的开放阅读框的C末端框内融合。 TCRalpha / TCRbeta或TCRalpha-EGFP / TCRbeta构建体在缺乏内源TCR但仍表达CD3成分的T细胞杂交瘤细胞58alpha(-)beta(-)中表达。通过免疫沉淀和蛋白质印迹分析以预期的分子量检测到TCRalpha-EGFP融合蛋白。在表达野生型TCR异二聚体的转染子中检测到TCR成分的表面染色,并且在表达TCR-EGFP复合物的转染子中,仅强度略有降低。因此,尽管TCRalpha的27 kD C端延伸,表达和运输到细胞外膜仍是可能的。最重要的是,带EGFP标签的TCR具有功能性,因为转染子通过其TCR刺激产生IL-2。因此,TCR-EGFP构建体是研究TCR表达和配体诱导的TCR簇的翻译后调控以及抗原特异性T细胞在耐受性诱导和免疫转基因小鼠模型中的命运的研究的有吸引力的工具。

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