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人T淋巴细胞上由基因座间重组形成的功能性T细胞受体链的表面表达。

Surface expression of functional T cell receptor chains formed by interlocus recombination on human T lymphocytes.

作者信息

Davodeau F, Peyrat M A, Gaschet J, Hallet M M, Triebel F, Vié H, Kabelitz D, Bonneville M

机构信息

Institut National de la Santé et de la Recherche Médicale (INSERM) U211, Institut de Biologie, Nantes, France.

出版信息

J Exp Med. 1994 Nov 1;180(5):1685-91. doi: 10.1084/jem.180.5.1685.

Abstract

Structural diversity of lymphocyte antigen receptors (the immunoglobulin [Ig] of B cells and the alpha/beta or gamma/delta T cell receptor [TCR] of T cells) is generated through somatic rearrangements of V, D, and J gene segments. Classically, these recombination events involve gene segments from the same Ig or TCR locus. However, occurrence of "trans" rearrangements between distinct loci has also been described, although in no instances was the surface expression of the corresponding protein under normal physiological conditions demonstrated. Here we show that hybrid TCR genes generated by trans rearrangement between V gamma and (D) J beta elements are translated into functional antigen receptor chains, paired with TCR alpha chains. Like classical alpha/beta T cells, cells expressing these hybrid TCR chains express either CD4 or CD8 coreceptors and are frequently alloreactive. These results have several implications in terms of T cell repertoire selection and relationships between TCR structure and specificity. First, they suggest that TCR alloreactivity is determined by the repertoire selection processes operating during lymphocyte development rather than by structural features specific to V alpha V beta regions. Second, they suggest the existence of close structural relationships between gamma/delta and alpha/beta TCR and more particularly, between V gamma and V beta regions. Finally, since a significant fraction of PBL (at least 1/10(4)) expressed hybrid TCR chains on their surface, these observations indicate that trans rearrangements significantly contribute to the combinatorial diversification of the peripheral immune repertoire.

摘要

淋巴细胞抗原受体(B细胞的免疫球蛋白[Ig]以及T细胞的α/β或γ/δT细胞受体[TCR])的结构多样性是通过V、D和J基因片段的体细胞重排产生的。传统上,这些重组事件涉及来自同一Ig或TCR基因座的基因片段。然而,也有报道称不同基因座之间会发生“跨”重排,尽管在正常生理条件下没有实例证明相应蛋白质的表面表达情况。在此,我们表明由Vγ和(D)Jβ元件之间的跨重排产生的杂交TCR基因可被翻译为功能性抗原受体链,并与TCRα链配对。与经典的α/βT细胞一样,表达这些杂交TCR链的细胞表达CD4或CD8共受体,并且经常具有同种异体反应性。这些结果在T细胞库选择以及TCR结构与特异性之间的关系方面具有若干意义。首先,它们表明TCR同种异体反应性是由淋巴细胞发育过程中起作用的库选择过程决定的,而不是由VαVβ区域特有的结构特征决定的。其次,它们表明γ/δ和α/βTCR之间,尤其是Vγ和Vβ区域之间存在密切的结构关系。最后,由于相当一部分外周血淋巴细胞(至少1/10⁴)在其表面表达杂交TCR链,这些观察结果表明跨重排在外周免疫库的组合多样化中起重要作用。

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