免疫球蛋白独特型特异性t细胞的胸腺选择。

Thymus Pub Date : 1994-01-01
Z Dembić, S Weiss, B Bogen
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引用次数: 0

摘要

胸腺是发育中的t细胞分化和成熟的主要部位。t细胞库的多样性是在个体发育过程中通过编码克隆分布受体的t细胞受体基因片段的重排而产生的。大多数新产生的携带α - β - TCR的胸腺细胞在胸腺中死亡,至少是两个选择过程的结果。那些能与自身MHC抗原发生反应的存活(阳性选择),但前提是与相同或其他自身MHC(可能与自身肽络合)分子的结合亲和力不太高(阴性选择)。因此,每个在胸腺中获得功能能力的t细胞都应该具有一定程度的自身mhc特异性。我们对胸腺发育的理解是通过研究携带功能重排的TCR或Ig lambda轻链基因的转基因小鼠而得到的。为了研究阳性选择,我们分析了从t细胞克隆中分离出α - β TCR基因的转基因小鼠,该基因特异于与E(d) MHC II类分子结合的lambda 2(315) (lambda 2 Ig链的突变体)的独特型肽。结果表明,一些胸腺细胞的阳性选择可能是弱的,让人想起“生存斗争”,因为被选择的群体很小,并且具有高水平的转基因受体和辅助受体(CD4)分子。利用TCR和lambda 2(315)转基因小鼠的组合研究了胸腺耐受机制。Id特异性胸腺细胞的克隆缺失受产生位点和lambda 2(315)抗原浓度的影响。综上所述,单个胸腺细胞相互作用的快快度可能受到TCR、CD4或CD8、MHC分子和自身抗原等相互作用成分的表达水平的影响,而这种相互作用在选择性过程中起着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thymic selection of immunoglobulin idiotype specific T-cells.

The thymus is the major site for differentiation and maturation of developing T-cells. The diversity in the T-cell repertoire is generated during ontogeny by rearrangements of T-cell receptor gene segments that encode clonally distributed receptors. Most of the newly produced thymocytes that bear alpha beta TCR die in the thymus as a consequence of at least two selective processes. Those that can react to self MHC antigens survive (positive selection), but only if the binding affinity for the same or other self MHC (probably complexed with self peptides) molecules is not too high (negative selection). As a result, each T-cell that has acquired functional competence in the thymus should have a certain degree of self-MHC specificity. Our comprehension of thymic development has been aided by the study of transgenic mice that bear functionally rearranged TCR or Ig lambda light chain genes. To study positive selection we analyzed transgenic mice with alpha beta TCR genes isolated from a T-cell clone specific for an idiotypic peptide of lambda 2(315) (a mutant of the lambda 2 Ig chain) bound to the E(d) MHC class II molecule. The results suggest that positive selection of some thymocytes might be weak, reminiscent of a 'struggle for survival', since the selected population was small and had high levels of transgenic receptor and coreceptor (CD4) molecules. The thymic tolerance mechanism was also investigated using a combination of both TCR and lambda 2(315) transgenic mice. The clonal deletion of Id specific thymocytes was influenced by the production site as well as the concentration of the lambda 2(315) antigen. In conclusion, the interaction avidity of a single thymocyte, which is important for selective processes, might be affected by the expression levels of each interacting component: TCR, CD4 or CD8 and MHC molecule and self antigen.

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