Takahama Y, Sugaya K, Tsuda S, Hasegawa T, Hashimoto Y
Institute of Immunology, Syntex, Ibaraki, Japan.
J Immunol. 1995 Jun 1;154(11):5862-9.
Transgenic expression of the beta-chain of T cell antigen-receptor (TCR) is known to induce the generation of CD4+ CD8+ thymocytes in the immunodeficient scid mouse, in which thymocyte development is otherwise arrested at CD4- CD8- cells. It is not clear, however, whether or not the thymocyte development is controlled by ligand engagement of the TCR-beta complex on the cell surface. In the present study, we have examined how the engagement by Ab of the TCR-beta complex expressed on the TCR-beta-transgenic scid fetal thymocytes can regulate the generation of CD4+ CD8+ thymocytes. Organ cultures of CD4- CD8- day 14 fetal thymocytes from the TCR-beta-transgenic scid mice resulted in the generation of CD4- CD8+ and then CD4+ CD8+ cells. The initial step from CD40- CD8- cells to CD4- CD8+ cells was enhanced by the addition of anti-TCR-beta Ab, whereas the subsequent step from CD4- CD8+ cells to CD4+ CD8+ cells was markedly inhibited by anti-TCR-beta Ab. These results indicate that ligand engagement of the TCR-beta complex can positively and negatively regulate the early thymocyte development. Moreover, the finding that engagement of TCR-beta complex inhibits the generation of CD4+ CD8+ cells suggests that the induction of CD4+ CD8+ thymocytes by the TCR-beta transgene is not an immediate consequence of cell-surface engagement of the TCR-beta complex but requires liberation from the continued TCR-beta signaling.
已知在免疫缺陷的scid小鼠中,T细胞抗原受体(TCR)β链的转基因表达可诱导CD4+CD8+胸腺细胞的产生,在该小鼠中,胸腺细胞发育在其他方面会停滞于CD4-CD8-细胞阶段。然而,尚不清楚胸腺细胞发育是否受细胞表面TCR-β复合物的配体结合调控。在本研究中,我们检测了抗体与TCR-β转基因scid胎儿胸腺细胞表面表达的TCR-β复合物结合后,如何调节CD4+CD8+胸腺细胞的产生。来自TCR-β转基因scid小鼠的第14天CD4-CD8-胎儿胸腺细胞的器官培养导致了CD4-CD8+细胞的产生,随后是CD4+CD8+细胞的产生。从CD4-CD8-细胞到CD4-CD8+细胞的初始步骤通过添加抗TCR-β抗体得到增强,而从CD4-CD8+细胞到CD4+CD8+细胞的后续步骤则被抗TCR-β抗体显著抑制。这些结果表明,TCR-β复合物的配体结合可对早期胸腺细胞发育产生正向和负向调节。此外,TCR-β复合物结合抑制CD4+CD8+细胞产生这一发现表明,TCR-β转基因诱导CD4+CD8+胸腺细胞并非TCR-β复合物在细胞表面结合的直接结果,而是需要从持续的TCR-β信号中释放出来。