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非T细胞中人TCR/CD3复合物细胞表面表达的要求。

Requirements for cell surface expression of the human TCR/CD3 complex in non-T cells.

作者信息

Hall C, Berkhout B, Alarcon B, Sancho J, Wileman T, Terhorst C

机构信息

Laboratory of Molecular Immunology, Dana-Farber Cancer Institute, Boston, MA 02115.

出版信息

Int Immunol. 1991 Apr;3(4):359-68. doi: 10.1093/intimm/3.4.359.

Abstract

The T-cell antigen receptor (TCR) consists of a glycoprotein heterodimer (alpha/beta or gamma/delta) which is non-covalently associated with at least four or five invariant polypeptides (CD3 gamma, delta, epsilon, zeta and eta). In T-cell variants lacking TCR alpha, beta or zeta, it has been shown that incomplete TCR/CD3 complexes are retained within the cell. To examine requirements for cell surface expression of TCR/CD3, we transfected COS monkey kidney cells with cDNAs encoding TCR alpha, beta and CD3 gamma, delta, epsilon and zeta. We report that cell surface appearance of TCR/CD3 on COS cells requires coordinate expression of all six proteins. In the absence of the zeta chain, subcomplexes comprising from two to five chains were readily demonstrable in COS cells, but they failed to reach the cell surface or to acquire N-linked oligosaccharide side chains indicating failure to reach the medial Golgi. Pulse-chase metabolic labelling of transfected COS cells showed that three chains (CD3 gamma, CD3 epsilon, and zeta) were stable while three (TCR alpha, TCR beta and CD3 delta) were rapidly degraded. In two- and three-chain co-transfections specific intracellular subcomplexes were formed between TCR alpha and CD3 gamma, TCR alpha and CD3 delta, or TCR beta and CD3 epsilon. Binary subcomplexes having at least one stable chain (CD3 epsilon - TCR beta) were stable while one formed by two unstable chains (TCR alpha - CD3 delta) was still degraded. Assembly of the TCR/CD3 complex in COS cells thus appears centered around the metabolically stable CD3 gamma and CD3 epsilon proteins. Site-specific mutations of the negatively-charged transmembrane amino acid of residues of the CD3 chains to alanines served to either abolish (for TCR alpha - CD3 delta and TCR beta - CD3 epsilon) or diminish (for TCR alpha -CD3 gamma) these TCR-CD3 interactions. These mutations had no effect, however, on CD3-CD3 interactions or upon synthesis, metabolism, or intracellular distributions of the CD3 proteins. The transmembrane domains of CD3 gamma, delta, and epsilon thus appear to play a major role in associations of CD3 with TCR chains.

摘要

T细胞抗原受体(TCR)由一种糖蛋白异二聚体(α/β或γ/δ)组成,它与至少四到五种恒定多肽(CD3γ、δ、ε、ζ和η)非共价结合。在缺乏TCRα、β或ζ的T细胞变体中,已表明不完全的TCR/CD3复合物保留在细胞内。为了研究TCR/CD3细胞表面表达的条件,我们用编码TCRα、β以及CD3γ、δ、ε和ζ的cDNA转染了COS猴肾细胞。我们报告,COS细胞上TCR/CD3的细胞表面出现需要所有六种蛋白质的协同表达。在缺乏ζ链的情况下,由两到五条链组成的亚复合物在COS细胞中很容易被证实,但它们未能到达细胞表面,也未能获得N-连接寡糖侧链,这表明未能到达高尔基体中部。对转染的COS细胞进行脉冲追踪代谢标记显示,三条链(CD3γ、CD3ε和ζ)是稳定的,而三条链(TCRα、TCRβ和CD3δ)迅速降解。在双链和三链共转染中,TCRα与CD3γ、TCRα与CD3δ或TCRβ与CD3ε之间形成了特定的细胞内亚复合物。具有至少一条稳定链(CD3ε - TCRβ)的二元亚复合物是稳定的,而由两条不稳定链(TCRα - CD3δ)形成的亚复合物仍会降解。因此,COS细胞中TCR/CD3复合物的组装似乎以代谢稳定的CD3γ和CD3ε蛋白为中心。将CD3链残基带负电荷的跨膜氨基酸位点特异性突变为丙氨酸,要么消除了(对于TCRα - CD3δ和TCRβ - CD3ε)要么减弱了(对于TCRα - CD3γ)这些TCR - CD3相互作用。然而,这些突变对CD3 - CD3相互作用或CD3蛋白的合成、代谢或细胞内分布没有影响。因此,CD3γ、δ和ε的跨膜结构域似乎在CD3与TCR链的结合中起主要作用。

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