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包含T细胞受体的ζ链和η链以及Fc受体γ链的二硫键连接的二聚体家族。

Family of disulphide-linked dimers containing the zeta and eta chains of the T-cell receptor and the gamma chain of Fc receptors.

作者信息

Orloff D G, Ra C S, Frank S J, Klausner R D, Kinet J P

机构信息

Cell Biology and Metabolism Branch, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Nature. 1990 Sep 13;347(6289):189-91. doi: 10.1038/347189a0.

Abstract

Stimulation of T cells by antigen activates many signalling pathways. The capacity for this range of biochemical responses may reside in the complex structure of the seven-chain T-cell antigen receptor (TCR). In addition to the complexity shared by all TCRs, coexpression of zeta (zeta) and the distinct but related eta (eta) chains creates structural diversity among the TCR complexes expressed on a given cell. In most murine T cells that we have studied, about 90% of the heptameric receptor complexes contain a zeta zeta disulphide homodimer, whereas 10% contain a zeta eta disulphide heterodimer. Recent studies suggest that zeta has a critical role in allowing antigen to activate the cell, whereas eta expression has been correlated with the capacity for antigen-induced phosphoinositide turnover. A third zeta-related protein, the gamma (gamma) chain of the Fc epsilon and some Fc gamma receptors, exists as a disulphide homodimer in those complexes. The structural relatedness of zeta and gamma is emphasized by the recent demonstration of zeta zeta in association with CD16 in TCR-negative natural killer cells. Here we identify T cells lacking Fc receptors but coexpressing zeta, gamma, and eta, document the formation of novel heterodimers between zeta and gamma and between eta and gamma and show their association with the TCR. A greater range of homologous coupling structures than previously thought may be one way of achieving the variety of TCR-mediated (and possibly Fc receptor-mediated) biochemical responses and effector functions.

摘要

抗原刺激T细胞可激活多种信号通路。这种一系列生化反应的能力可能存在于七链T细胞抗原受体(TCR)的复杂结构中。除了所有TCR共有的复杂性外,ζ(zeta)链和独特但相关的η(eta)链的共表达在给定细胞上表达的TCR复合物之间产生了结构多样性。在我们研究的大多数小鼠T细胞中,约90%的七聚体受体复合物含有ζζ二硫键同源二聚体,而10%含有ζη二硫键异源二聚体。最近的研究表明,ζ在抗原激活细胞方面起关键作用,而η的表达与抗原诱导的磷酸肌醇周转能力相关。第三种与ζ相关的蛋白,即Fcε和一些Fcγ受体的γ(gamma)链,在这些复合物中以二硫键同源二聚体形式存在。ζ和γ的结构相关性通过最近在TCR阴性自然杀伤细胞中ζζ与CD16结合的证明得到强调。在这里,我们鉴定出缺乏Fc受体但共表达ζ、γ和η的T细胞,记录了ζ与γ之间以及η与γ之间新型异源二聚体的形成,并表明它们与TCR相关联。比以前认为的更大范围的同源偶联结构可能是实现多种TCR介导的(可能还有Fc受体介导的)生化反应和效应功能的一种方式。

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