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Skewed T-cell receptor repertoire, decreased thymic output, and predominance of terminally differentiated T cells in ataxia telangiectasia

机译:共济失调毛细血管扩张症中偏斜的T细胞受体库,胸腺输出减少和末端分化T细胞占优势

摘要

Ataxia telangiectasia (A-T), a genetic disorder caused by the homozygous mutation of the ATM gene, frequently associates with variable degrees of cellular and humoral immunodeficiency. However, the immune defects occurring in patients with A-T are still poorly characterized. Here we show that the T-cell receptor (TCR) variable beta (BV)-chain repertoire of 9 A-T patients was restricted by diffuse expansions of some variable genes prevalently occurring within the CD4 subset and clustering to certain TCRBV genes (eg, 5.1, 11, 14, and 23). In addition, the study of the third complementarity-determining region (CDR3) showed, in all patients, significantly altered profiles in most BV genes examined suggesting diffuse oligoclonal expansions. The sequencing of TCR CDR3 regions revealed completely normal V(D)J coding joints and confirmed a reduced diversity of the antigen-receptor repertoire. The B-cell repertoire bias similarly restricted and skewed by diffuse oligoclonal expansions with normal V(D)J joints. Thymic output, evaluated by measuring TCR rearrangement excision circles, was extremely low. The majority of peripheral T cells had the phenotype and the function of effector memory cells, indicating that in vivo they are able to respond normally by terminal differentiation to antigenic stimulation. These results indicate that ATM mutation limits the generation of a wide repertoire of normally functioning T and B cells. (C) 2002 by The American Society of Hematology.
机译:共济失调毛细血管扩张症(A-T)是一种由ATM基因纯合突变引起的遗传性疾病,通常与细胞和体液免疫缺陷程度不一有关。但是,在A-T患者中发生的免疫缺陷的特征仍然很差。在这里,我们显示了9名AT患者的T细胞受体(TCR)可变β(BV)链库受到一些普遍存在于CD4子集中并聚集到某些TCRBV基因(例如5.1, 11、14和23)。此外,对第三个互补决定区(CDR3)的研究显示,在所有患者中,大多数检查的BV基因的分布均发生了显着变化,表明存在弥漫性寡克隆扩增。 TCR CDR3区域的测序揭示了完全正常的V(D)J编码关节,并证实抗原受体库的多样性降低。 B细胞库的偏见同样受到正常V(D)J关节的弥漫性寡克隆扩张的限制和倾斜。通过测量TCR重排切除圆圈评估的胸腺输出非常低。大多数外周T细胞具有效应记忆细胞的表型和功能,表明在体内它们能够通过终末分化对抗原刺激正常反应。这些结果表明,ATM突变限制了正常运行的T细胞和B细胞的广泛组成。 (C)2002年,美国血液学学会。

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