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TCR-CD3复合物的物理解离伴随受体连接。

Physical dissociation of the TCR-CD3 complex accompanies receptor ligation.

作者信息

Kishimoto H, Kubo R T, Yorifuji H, Nakayama T, Asano Y, Tada T

机构信息

Research Institute for Biological Sciences, Science University of Tokyo, Chiba, Japan.

出版信息

J Exp Med. 1995 Dec 1;182(6):1997-2006. doi: 10.1084/jem.182.6.1997.

Abstract

Recent studies indicate that there may be functional uncoupling of the TCR-CD3 complex and suggest that the TCR-CD3 complex is composed of two parallel signal-transducing units, one made of gamma delta epsilon chains and the other of zeta chains. To elucidate the molecular mechanisms that may explain the functional uncoupling of TCR and CD3, we have analyzed their expression by using flow cytometry as well as immunochemical means both before and after stimulation with anti-TCR-beta, anti-CD3 epsilon, anti-CD2, staphylococcal enterotoxin B, and ionomycin. We present evidence that TCR physically dissociates from CD3 after stimulation of the TCR-CD3 complex. Stimulation with anti-CD3 resulted in down-modulation of TCR within 45 min whereas CD3 epsilon was still expressed on the cell surface as detected by flow cytometry. However, the cell surface expression of TCR and CD3 was not affected when cells were stimulated with anti-TCR-beta under the same conditions. In the case of anti-CD3 treatment of T cells, the TCR down-modulation appeared to be due to the internalization of TCR, as determined by immunoelectron microscopy. Immunochemical analysis of cells after stimulation with either anti-TCR or anti-CD3 mAbs revealed that the overall protein levels of TCR and CD3 were similar. More interestingly, the dissociation of the TCR-CD3 complex was observed with both treatments and occurred in a manner that the TCR and the associated TCR-zeta chain dissociated as a unit from CD3. These results provide the first report of physical dissociation of TCR and CD3 after stimulation through the TCR-CD3 complex. The results also suggest that the signal transduction pathway triggered by TCR may differ from that induced by CD3.

摘要

近期研究表明,TCR-CD3复合物可能存在功能解偶联现象,并提示TCR-CD3复合物由两个平行的信号转导单元组成,一个由γδε链构成,另一个由ζ链构成。为阐明可能解释TCR与CD3功能解偶联的分子机制,我们在用抗TCR-β、抗CD3ε、抗CD2、葡萄球菌肠毒素B和离子霉素刺激前后,通过流式细胞术以及免疫化学方法分析了它们的表达情况。我们提供的证据表明,在TCR-CD3复合物受到刺激后,TCR会与CD3发生物理性解离。用抗CD3刺激后,45分钟内TCR出现下调,而通过流式细胞术检测发现CD3ε仍表达于细胞表面。然而,在相同条件下用抗TCR-β刺激细胞时,TCR和CD3的细胞表面表达并未受到影响。在用抗CD3处理T细胞的情况下,TCR下调似乎是由于TCR的内化,这是通过免疫电子显微镜确定的。用抗TCR或抗CD3单克隆抗体刺激后的细胞免疫化学分析表明,TCR和CD3的总体蛋白水平相似。更有趣的是,两种处理均观察到TCR-CD3复合物的解离,且解离方式为TCR与相关的TCR-ζ链作为一个单元与CD3解离。这些结果首次报道了通过TCR-CD3复合物刺激后TCR与CD3的物理性解离。结果还提示,由TCR触发的信号转导途径可能与由CD3诱导的途径不同。

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