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人类CD8 + T细胞对巨细胞病毒和EB病毒反应中的TCRβ链共享

TCR beta-chain sharing in human CD8+ T cell responses to cytomegalovirus and EBV.

作者信息

Venturi Vanessa, Chin Hui Yee, Asher Tedi E, Ladell Kristin, Scheinberg Phillip, Bornstein Ethan, van Bockel David, Kelleher Anthony D, Douek Daniel C, Price David A, Davenport Miles P

机构信息

Complex Systems in Biology Group, Centre for Vascular Research, University of New South Wales, Kensington, Australia;

出版信息

J Immunol. 2008 Dec 1;181(11):7853-62. doi: 10.4049/jimmunol.181.11.7853.

Abstract

The CD8(+) TCR repertoires specific for many immunogenic epitopes of CMV and EBV are dominated by a few TCR clonotypes and involve public TCRs that are shared between many MHC-matched individuals. In previous studies, we demonstrated that the observed sharing of epitope-specific TCRbeta chains between individuals is strongly associated with TCRbeta production frequency, and that a process of convergent recombination facilitates the more efficient production of some TCRbeta sequences. In this study, we analyzed a total of 2836 TCRbeta sequences from 23 CMV-infected and 10 EBV-infected individuals to investigate the factors that influence the sharing of TCRbeta sequences in the CD8(+) T cell responses to two immunodominant HLA-A*0201-restricted epitopes from these viruses. The most shared TCRbeta amino acid sequences were found to have two features that indicate efficient TCRbeta production, as follows: 1) they required fewer nucleotide additions, and 2) they were encoded by a greater variety of nucleotide sequences. We used simulations of random V(D)J recombination to demonstrate that the in silico TCRbeta production frequency was predictive of the extent to which both TCRbeta nucleotide and amino acid sequences were shared in vivo. These results suggest that TCRbeta production frequency plays an important role in the interindividual sharing of TCRbeta sequences within CD8(+) T cell responses specific for CMV and EBV.

摘要

针对巨细胞病毒(CMV)和EB病毒许多免疫原性表位的CD8(+)T细胞受体(TCR)库由少数TCR克隆型主导,并涉及许多MHC匹配个体之间共享的公共TCR。在先前的研究中,我们证明个体之间观察到的表位特异性TCRβ链共享与TCRβ产生频率密切相关,并且趋同重组过程促进了某些TCRβ序列的更高效产生。在本研究中,我们分析了来自23名CMV感染个体和10名EBV感染个体的总共2836条TCRβ序列,以研究影响CD8(+)T细胞对这些病毒的两个免疫显性HLA-A*0201限制性表位反应中TCRβ序列共享的因素。发现共享程度最高的TCRβ氨基酸序列具有两个表明TCRβ高效产生的特征,如下:1)它们需要较少的核苷酸添加,以及2)它们由更多种类的核苷酸序列编码。我们使用随机V(D)J重组模拟来证明,计算机模拟的TCRβ产生频率可预测体内TCRβ核苷酸和氨基酸序列的共享程度。这些结果表明,TCRβ产生频率在针对CMV和EBV的CD8(+)T细胞反应中TCRβ序列的个体间共享中起重要作用。

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