Aoe T, Okamoto Y, Arase H, Ikuta K, Miyazaki J, Ono S, Otuji M, Ohno H, Miyatake S, Saito T
Division of Molecular Genetics, Center for Biomedical Science, Chiba University School of Medicine, 1-8-1, Inohana, Chuo-ku, Chiba 260, Japan.
Int Immunol. 1996 Jul;8(7):1055-66. doi: 10.1093/intimm/8.7.1055.
Antigen recognition signals by the TCR are transduced through activation motifs present in the cytoplasmic region of CD3 chains. In vitro analysis has suggested that the CD3zeta chain mediates different signals from other CD3 chains. To analyze the in vivo function of CD3zeta-mediated signals for T cell development, mice expressing a mutant CD3zeta chain lacking all the activation motifs were generated by introducing the transgene into zeta-knockout mice. Mature CD4(+) single-positive (SP) thymocytes in these mice were greater in number than in zeta-deficient mice, and the promoted differentiation was indicated by the changes of CD69 and HSA phenotypes. We found that even in the absence of activation motifs in CD3zeta, these mature cells became functional, being able to induce Ca2+ mobilization and proliferation upon stimulation. On the other hand, CD4(-)CD8(-) double-negative (DN) thymocytes, most of which were arrested at the CD44(-)CD25(+) stage similarly to those in zeta-deficient mice, could not be promoted for differentiation into CD4(+)CD8(+) double-positive thymocytes in these mice in spite of the fact that the expression of the transgene in DN thymocytes was higher than that of zeta in wild-type mice. These results demonstrate the preferential dependence of the promotion of development and/or expansion of DN thymocytes rather than mature thymocytes upon the activation signals through the zeta chain and suggest differential requirements of TCR signaling for mature SP and immature DN thymocyte developments in vivo.
TCR的抗原识别信号通过CD3链胞质区存在的激活基序进行转导。体外分析表明,CD3ζ链介导的信号与其他CD3链不同。为了分析CD3ζ介导的信号在T细胞发育中的体内功能,通过将转基因导入ζ基因敲除小鼠中,培育出表达缺乏所有激活基序的突变型CD3ζ链的小鼠。这些小鼠中的成熟CD4(+)单阳性(SP)胸腺细胞数量比ζ基因缺陷小鼠中的多,并且CD69和HSA表型的变化表明分化得到了促进。我们发现,即使CD3ζ中没有激活基序,这些成熟细胞仍具有功能,在受到刺激时能够诱导Ca2+动员和增殖。另一方面,CD4(-)CD8(-)双阴性(DN)胸腺细胞,其中大多数与ζ基因缺陷小鼠中的细胞一样停滞在CD44(-)CD25(+)阶段,尽管转基因在DN胸腺细胞中的表达高于野生型小鼠中ζ的表达,但在这些小鼠中仍不能促进其分化为CD4(+)CD8(+)双阳性胸腺细胞。这些结果表明,DN胸腺细胞而非成熟胸腺细胞的发育促进和/或扩增对通过ζ链的激活信号具有优先依赖性,并提示体内成熟SP和未成熟DN胸腺细胞发育对TCR信号的需求存在差异。