Wilson A, Capone M, MacDonald H R
Ludwig Institute for Cancer Research, Lausanne Branch, University of Lausanne,Ch. Des Boveresses 155, 1066 Epalinges, Switzerland.
Int Immunol. 1999 Oct;11(10):1641-50. doi: 10.1093/intimm/11.10.1641.
During adult thymus development immature CD4(-)CD8(-) [double-negative (DN)] precursor cells pass through four phenotypically distinct stages defined by expression of CD44 and CD25: CD44(hi)CD25(-) (DN1), CD44(hi)CD25(+) (DN2), CD44(lo)CD25(+) (DN3) and CD44(lo)CD25(-) (DN4). Although it is well established that the TCR beta, gamma and delta genes are rearranged and expressed in association with the CD3 components in DN thymocytes, the precise timing of expression of the TCR and CD3 proteins has not been determined. In this report we have utilized a sensitive intracellular (ic) staining technique to analyze the expression of ic CD3epsilon, TCR beta and TCR gammadelta proteins in immature DN subsets. As expected from previous studies of TCR beta rearrangement and mRNA expression, icTCR beta(+) cells were first detected in the DN3 subset and their proportion increased thereafter. Surprisingly, however, both icCD3epsilon(+) and icTCR gammadelta(+) cells were detected at later stages of development than was predicted by molecular studies. In particular icCD3epsilon protein expression coincided with the transition from the DN2 to DN3 stage of development, whereas icTCR gammadelta protein expression was only detected in a minor subset of DN4 cells. The implications of these findings for alphabeta lineage divergence will be discussed.
在成年胸腺发育过程中,未成熟的CD4(-)CD8(-) [双阴性(DN)]前体细胞会经历由CD44和CD25表达所定义的四个表型不同的阶段:CD44(hi)CD25(-) (DN1)、CD44(hi)CD25(+) (DN2)、CD44(lo)CD25(+) (DN3)和CD44(lo)CD25(-) (DN4)。尽管已经明确TCRβ、γ和δ基因在DN胸腺细胞中与CD3成分一起进行重排和表达,但TCR和CD3蛋白表达的确切时间尚未确定。在本报告中,我们利用一种灵敏的细胞内(ic)染色技术来分析未成熟DN亚群中ic CD3ε、TCRβ和TCRγδ蛋白的表达。正如先前对TCRβ重排和mRNA表达研究所预期的那样,icTCRβ(+)细胞首先在DN3亚群中被检测到,并且其比例随后增加。然而,令人惊讶的是,icCD3ε(+)和icTCRγδ(+)细胞在发育后期才被检测到,这比分子研究预测的要晚。特别是icCD3ε蛋白表达与从DN2到DN3发育阶段的转变同时发生,而icTCRγδ蛋白表达仅在一小部分DN4细胞中被检测到。将讨论这些发现对αβ谱系分化的影响。