首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >T-cell receptor beta-chain usage in directly activated alloreactive CD4+ T cells: unrestricted Vbeta gene usage with CDR3 size limitations.
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T-cell receptor beta-chain usage in directly activated alloreactive CD4+ T cells: unrestricted Vbeta gene usage with CDR3 size limitations.

机译:在直接激活的同种反应性CD4 + T细胞中使用T细胞受体β链:不受限制的Vbeta基因在CDR3大小上的使用。

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BACKGROUND Alloreactive immune responses may engage both direct and indirect antigen allorecognition. This study focuses on T-cell receptor (TCR) beta-chain usage by in vitro generated alloreactive CD4+ T cells involved in direct allorecognition pathway.METHODS AND RESULTS We have established Lewis anti-Brown Norway rat CD4+ T-cell lines and confirmed their reactivities against cell-surface, but not soluble, alloantigens. TCR Vbeta-specific reverse-transcriptase polymerase chain reaction detected all 22 Vbeta genes in these cell lines at all stages, regardless of the lengths of in vitro stimulation. By using spectrotyping, we found that Vbeta complementarity determining region (CDR)3 length distribution pattern altered dramatically after repeated allostimulation. Such a skewed CDR3 distribution occurred in most Vbeta genes without any obvious preference, indicating that expansion occurred in all Vbeta expressing cells by allostimulation. Fluorescence-activated cell sorter analysis of Vbeta expression in alloreactive CD4+ T-cell lines with anti-Vbeta-specific monoclonal antibodies showed, quantitatively, similar percentages of individual Vbeta-expressing cells in the alloreactive pool after repeated allostimulation. To test whether preferential TCR Vbeta gene usage occurred in "high responder" cells, we sorted CD4+ T cells that underwent three or more divisions from primary mixed leukocyte reactions. Unlimited Vbeta usage with CDR3 alterations was observed, as in unsorted alloreactive T cells.CONCLUSION TCR Vbeta gene usage in directly alloreactive CD4+ T-cell population is unrestricted. Clonal expansion occurs in all Vbeta expressing T cells by allostimulation.
机译:背景技术变态反应性免疫应答可以参与直接和间接抗原变态反应识别。这项研究的重点是通过体外产生的同种异体反应性CD4 + T细胞参与直接等位基因识别途径来使用T细胞受体(TCR)β链。方法和结果我们已经建立了Lewis抗棕色挪威大鼠CD4 + T细胞系并证实了它们的反应性对抗细胞表面但非可溶性的同种抗原。无论体外刺激的时间长短,TCR Vbeta特异性逆转录酶聚合酶链反应都可以在所有阶段检测到这些细胞系中的所有22个Vbeta基因。通过使用分光光度法,我们发现Vbeta互补决定区(CDR)3长度分布模式在重复的同化刺激后发生了巨大变化。这种偏斜的CDR3分布出现在大多数Vbeta基因中,没有任何明显的偏爱,表明通过异源刺激在所有Vbeta表达细胞中都发生了扩增。荧光激活细胞分选仪分析具有抗Vbeta特异性单克隆抗体的同种反应性CD4 + T细胞系中Vbeta的表达,定量显示在重复同种刺激后,同种反应性库中表达Vbeta的单个细胞的百分比相似。为了测试在“高反应性”细胞中是否发生了优先的TCR Vbeta基因使用,我们对CD4 + T细胞进行了分类,这些细胞从原代混合白细胞反应中经历了三个或更多个分裂。与未分选的同种异体反应性T细胞一样,可以观察到无限制地使用带有CDR3改变的Vbeta。通过异源刺激在所有表达Vbeta的T细胞中发生克隆扩增。

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