α / β异二聚体t细胞受体在胸腺细胞分化早期的表达。

M L Toribio, A de la Hera, J R Regueiro, C Márquez, M A Marcos, R Bragado, A Arnaiz-Villena, C Martínez
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引用次数: 0

摘要

胸腺内T淋巴细胞的分化导致获得由克隆分布的α / β异二聚体T细胞受体(TcR)介导的mhc限制性特异性功能。编码克隆型受体(Ti) α和β亚基的基因在胸腺个体发育过程中重排,并与单态CD3复合物相关表达。因此,在t细胞发育过程中调控功能性TcR的表达对于确定涉及t细胞获得和选择的个体发生事件至关重要。目前的观点支持cd3 - α / β异二聚体是在发育中的胸腺细胞的个体发育晚期获得的,这些胸腺细胞已经表达CD4和/或CD8表面分子,而CD4- CD8-早期前体,代表了胚胎胸腺的主要群体,尚未表达α / β TcR。然而,最近在胸腺细胞和不受mhc限制的外周T细胞中,在这种“双阴性”亚群的表面发现了一种新的cd3相关的γ / δ异二聚体,这表明在T细胞发育过程中,α / β和γ / δ异二聚体受体在不同胸腺亚群的表面独立表达。与这些结果相反,我们在这里报告了CD3+1-4-8-成人胸腺细胞的主要比例,包括在早期的“双阴性”亚群中,表达α / β异二聚体受体,通过流式细胞术分析使用针对α / β TcR复合物的框架单克隆抗体(WT.31)进行评估。这些和先前的数据表明,CD3+1-4-8-“双阴性”胸腺细胞在CD3+1-4+8-/CD3+1-4-8+成熟T细胞与CD3-1-4-8-早期胸腺原细胞分化过程中构成了一个功能性的中间个体形成阶段,进一步支持了CD3+1-4-8-过渡亚群作为携带α / β tcr的成熟T细胞的直接胸腺内前体的相关性。因此,我们从DNA、RNA和蛋白质水平分析了这些不同胸腺亚群中α / β TcR表达的发育调控,并根据功能和表型标准进行了定义。我们的研究结果表明,在早期胸腺细胞阶段,多重Ti β基因重排和β RNA信息已经很明显。此外,与成熟胸腺细胞中观察到的相似,在CD3+1-4-8-胸腺细胞中也存在相对水平的Ti α和Ti β功能RNA转录物的表达。根据这些数据,使用特异性抗ti α抗血清的免疫沉淀分析显示,α和β分子在CD3+“双阴性”和成熟胸腺细胞上表达,但在胸腺原细胞中不表达
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alpha/beta heterodimeric T-cell receptor expression early in thymocyte differentiation.

The differentiation of T lymphocytes inside the thymus results in the acquisition of MHC-restricted specific functions mediated by clonally distributed alpha/beta heterodimeric T-cell receptors (TcR). Genes encoding the alpha and beta subunits of the clonotypic receptor (Ti) are rearranged during thymic ontogeny and expressed in association with the monomorphic CD3 complex. The regulation of the expression of functional TcR along T-cell development is thus crucial to establish the ontogenic events involved in the acquisition and selection of T-cell repertoires. Current views support that CD3-alpha/beta heterodimers are acquired late in ontogeny on developing thymocytes already expressing CD4 and/or CD8 surface molecules, whereas CD4- CD8- early precursors, representing the major population in the embryonic thymus, do not yet express the alpha/beta TcR. However, a novel CD3-associated gamma/delta heterodimer has been recently identified on the surface of this "double negative" subset both in thymocytes and in MHC-unrestricted peripheral T cells, suggesting that alpha/beta and gamma/delta heterodimeric receptors are independently expressed on the surface of distinct thymic subpopulations during T-cell development. In contrast to these results, we report here that a major proportion of CD3+1-4-8- adult human thymocytes, included within the early "double negative" subset, express alpha/beta heterodimeric receptors, as assessed by flow cytometric analysis using a frame-work monoclonal antibody (WT.31) against the alpha/beta TcR complex. These and previous data showing that CD3+1-4-8- "double negative" thymocytes constitute a functional intermediate ontogenic stage in the differentiation of CD3+1-4+8-/CD3+1-4-8+ mature T cells from CD3-1-4-8- early prothymocytes further support the relevance of the CD3+1-4-8- transitional subset as immediate intrathymic precursors of alpha/beta TcR-bearing mature T cells. Therefore, developmental regulation of alpha/beta TcR expression was analyzed at the DNA, RNA, and protein levels in those different thymic subpopulations, defined by both functional and phenotypic criteria. Our results demonstrate that multiple Ti beta gene rearrangements and beta RNA messages are already evident at the early prothymocyte stage. Moreover, expression of relative levels of both Ti alpha and Ti beta functional RNA transcripts, similar to those observed in mature thymic cells, were also present in CD3+1-4-8- thymocytes. According with these data, immunoprecipitation analysis using a specific anti-Ti alpha antisera revealed that both alpha and beta molecules are expressed on CD3+ "double negative" and mature thymocytes, but not in prothymocytes

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