首页> 美国卫生研究院文献>The Journal of Experimental Medicine >In vivo expansion of HLA-B35 alloreactive T cells sharing homologous T cell receptors: evidence for maintenance of an oligoclonally dominated allospecificity by persistent stimulation with an autologous MHC/peptide complex
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In vivo expansion of HLA-B35 alloreactive T cells sharing homologous T cell receptors: evidence for maintenance of an oligoclonally dominated allospecificity by persistent stimulation with an autologous MHC/peptide complex

机译:共享同源T细胞受体的HLA-B35同种异体性T细胞的体内扩增:通过自体MHC /肽复合物的持续刺激维持寡克隆控制的同种异体的证据

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摘要

The nature of alloantigens seen by T lymphocytes, in particular the role of peptides in allorecognition, has been studied intensively whereas knowledge about the in vivo emergence, diversity, and the structural basis of specificity of alloreactive T cells is very limited. Here we describe human T cell clones that recognize HLA-B35 alloantigens in a peptide-dependent manner. TCR sequence analysis revealed that several of these allospecific clones utilize homologous TCR: they all express TCRAV2S3J36C1 and TCRBV4S1J2S7C2 chains with highly related CDR3 sequences. Thus peptide-specific alloreactivity is reflected in homologous CDR3 sequences in a manner similar to that described for T cells that recognize nominal peptide/self-MHC complexes. The in vivo frequency of this TCR specificity was studied in unstimulated PBL of the responding cell donor who was not sensitized against HLA-B35. The vast majority (approximately 75%) of the VA2S3J36 junctional regions obtained from two samples of PBL, isolated at a 9-yr interval, encode CDR3 identical or homologous to those of the functionally characterized HLA-B35 allospecific T cells. These data are most easily explained by a model of alloreactivity in which persistent or recurrent exposure to a foreign peptide/self-MHC complex led to the in vivo expansion and long-term maintenance of specific T cells that show fortuitous crossrecognition of an HLA-B35/peptide complex and dominate the alloresponse against HLA-B35.
机译:T淋巴细胞所见同种抗原的性质,特别是肽在同种异体认知中的作用已得到深入研究,而有关同种反应性T细胞的体内出现,多样性和特异性的结构基础的知识却非常有限。在这里,我们描述了以肽依赖方式识别HLA-B35同种抗原的人T细胞克隆。 TCR序列分析显示,这些同种异体克隆中有几个利用同源TCR:它们都表达具有高度相关CDR3序列的TCRAV2S3J36C1和TCRBV4S1J2S7C2链。因此,肽特异性同种异体反应以与针对识别标称肽/自身-MHC复合物的T细胞所述相似的方式反映在同源CDR3序列中。在未对HLA-B35敏感的应答细胞供体的未刺激PBL中研究了这种TCR特异性的体内频率。从两个间隔9年的PBL样品中获得的VA2S3J36连接区域的绝大多数(大约75%)编码与功能特征化的HLA-B35同种异体T细胞相同或同源的CDR3。这些数据最容易由同种异体反应模型解释,其中持续或反复暴露于外源肽/自身MHC复合物导致特定T细胞在体内扩增和长期维持,这表明HLA-B35具有偶然的交叉识别作用肽复合物,并主导针对HLA-B35的过敏反应。

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