Shores E W, Ono M, Kawabe T, Sommers C L, Tran T, Lui K, Udey M C, Ravetch J, Love P E
Division of Hematologic Products, Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, Maryland 20892.
J Exp Med. 1998 Apr 6;187(7):1093-101. doi: 10.1084/jem.187.7.1093.
The zeta family includes zeta, eta, and FcepsilonRIgamma (Fcgamma). Dimers of the zeta family proteins function as signal transducing subunits of the T cell antigen receptor (TCR), the pre-TCR, and a subset of Fc receptors. In mice lacking zeta/eta chains, T cell development is impaired, yet low numbers of CD4+ and CD8+ T cells develop. This finding suggests either that pre-TCR and TCR complexes lacking a zeta family dimer can promote T cell maturation, or that in the absence of zeta/eta, Fcgamma serves as a subunit in TCR complexes. To elucidate the role of zeta family dimers in T cell development, we generated mice lacking expression of all of these proteins and compared their phenotype to mice lacking only zeta/eta or Fcgamma. The data reveal that surface complexes that are expressed in the absence of zeta family dimers are capable of transducing signals required for alpha/beta-T cell development. Strikingly, T cells generated in both zeta/eta-/- and zeta/eta-/--Fcgamma-/- mice exhibit a memory phenotype and elaborate interferon gamma. Finally, examination of different T cell populations reveals that zeta/eta and Fcgamma have distinct expression patterns that correlate with their thymus dependency. A possible function for the differential expression of zeta family proteins may be to impart distinctive signaling properties to TCR complexes expressed on specific T cell populations.
ζ家族包括ζ、η和FcepsilonRIγ(Fcγ)。ζ家族蛋白的二聚体作为T细胞抗原受体(TCR)、前TCR和一部分Fc受体的信号转导亚基发挥作用。在缺乏ζ/η链的小鼠中,T细胞发育受损,但仍有少量CD4+和CD8+ T细胞发育。这一发现表明,缺乏ζ家族二聚体的前TCR和TCR复合物可以促进T细胞成熟,或者在没有ζ/η的情况下,Fcγ作为TCR复合物中的一个亚基。为了阐明ζ家族二聚体在T细胞发育中的作用,我们构建了缺乏所有这些蛋白表达的小鼠,并将它们的表型与仅缺乏ζ/η或Fcγ的小鼠进行比较。数据显示,在没有ζ家族二聚体的情况下表达的表面复合物能够转导α/β-T细胞发育所需的信号。引人注目的是,在ζ/η-/-和ζ/η-/-Fcγ-/-小鼠中产生的T细胞表现出记忆表型并分泌干扰素γ。最后,对不同T细胞群体的检查表明,ζ/η和Fcγ具有与其胸腺依赖性相关的不同表达模式。ζ家族蛋白差异表达的一个可能功能可能是赋予特定T细胞群体上表达的TCR复合物独特的信号特性。