Dietrich J, Neisig A, Hou X, Wegener A M, Gajhede M, Geisler C
Institute of Medical Microbiology and Immunology, University of Copenhagen, Panum Institute, Denmark.
J Cell Biol. 1996 Feb;132(3):299-310. doi: 10.1083/jcb.132.3.299.
The T cell receptor (TCR) consists of the Ti alpha beta heterodimer and the associated CD3 gamma delta epsilon and zeta 2 chains. The structural relationships between the subunits of the TCR complex are still not fully known. In this study we examined the role of the extracellular (EC), transmembrane (TM), and cytoplasmic (CY) domain of CD3 gamma in assembly and cell surface expression of the complete TCR in human T cells. A computer model indicated that the EC domain of CD3 gamma folds as an Ig domain. Based on this model and on alignment studies, two potential interaction sites were predicted in the EC domain of CD3 gamma. Site-directed mutagenesis demonstrated that these sites play a crucial role in TCR assembly probably by binding to CD3 epsilon. Mutagenesis of N-linked glycosylation sites showed that glycosylation of CD3 gamma is not required for TCR assembly and expression. In contrast, treatment of T cells with tunicamycin suggested that N-linked glycosylation of CD3 delta is required for TCR assembly. Site-directed mutagenesis of the acidic amino acid in the TM domain of CD3 gamma demonstrated that this residue is involved in TCR assembly probably by binding to Ti beta. Deletion of the entire CY domain of CD3 gamma did not prevent assembly and expression of the TCR. In conclusion, this study demonstrated that specific TCR interaction sites exist in both the EC and TM domain of CD3 gamma. Furthermore, the study indicated that, in contrast to CD3 gamma, glycosylation of CD3 delta is required for TCR assembly and expression.
T细胞受体(TCR)由Tiαβ异二聚体以及相关的CD3γδε和ζ2链组成。TCR复合物各亚基之间的结构关系仍未完全明确。在本研究中,我们检测了CD3γ的胞外(EC)、跨膜(TM)和胞质(CY)结构域在人T细胞中完整TCR组装和细胞表面表达中的作用。一个计算机模型显示,CD3γ的EC结构域折叠成一个免疫球蛋白(Ig)结构域。基于该模型及序列比对研究,在CD3γ的EC结构域中预测出两个潜在的相互作用位点。定点诱变表明,这些位点可能通过与CD3ε结合,在TCR组装中起关键作用。N-连接糖基化位点的诱变显示,CD3γ的糖基化对于TCR的组装和表达并非必需。相反,用衣霉素处理T细胞表明,CD3δ的N-连接糖基化对于TCR组装是必需的。对CD3γ的TM结构域中的酸性氨基酸进行定点诱变表明,该残基可能通过与Tiβ结合而参与TCR组装。缺失CD3γ的整个CY结构域并不妨碍TCR的组装和表达。总之,本研究表明在CD3γ的EC和TM结构域中均存在特定的TCR相互作用位点。此外,该研究表明,与CD3γ不同,CD3δ的糖基化对于TCR组装和表达是必需的。