Nambiar Madhusoodana P, Fisher Carolyn U, Kumar Anil, Tsokos Christos G, Warke Vishal G, Tsokos George C
Department of Cellular Injury, Walter Reed Army Institute of Research, Silver Spring, MD 20910, USA.
J Immunol. 2003 Mar 15;170(6):2871-6. doi: 10.4049/jimmunol.170.6.2871.
High level expression of Fc epsilon RI gamma chain replaces the deficient TCR zeta-chain and contributes to altered TCR/CD3-mediated signaling abnormalities in T cells of patients with systemic lupus erythematosus. Increased responsiveness to Ag has been considered to lead to autoimmunity. To test this concept, we studied early signaling events and IL-2 production in fresh cells transfected with a eukaryotic expression vector encoding the Fc epsilon RI gamma gene. We found that the overexpressed Fc epsilon RI gamma chain colocalizes with the CD3 epsilon chain on the surface membrane of T cells and that cross-linking of the new TCR/CD3 complex leads to a dramatic increase of intracytoplasmic calcium concentration, protein tyrosine phosphorylation, and IL-2 production. We observed that overexpression of Fc epsilon RI gamma is associated with increased phosphorylation of Syk kinase, while the endogenous TCR zeta-chain is down-regulated. We propose that altered composition of the CD3 complex leads to increased T cell responsiveness to TCR/CD3 stimulation and sets the biochemical grounds for the development of autoimmunity.
FcεRIγ链的高水平表达替代了缺陷的TCRζ链,并导致系统性红斑狼疮患者T细胞中TCR/CD3介导的信号异常改变。对抗原反应性增加被认为会导致自身免疫。为了验证这一概念,我们研究了用编码FcεRIγ基因的真核表达载体转染的新鲜细胞中的早期信号事件和白细胞介素-2的产生。我们发现,过表达的FcεRIγ链与T细胞表面膜上的CD3ε链共定位,新的TCR/CD3复合物的交联导致胞浆钙浓度、蛋白酪氨酸磷酸化和白细胞介素-2产生显著增加。我们观察到FcεRIγ的过表达与Syk激酶磷酸化增加有关,而内源性TCRζ链下调。我们提出,CD3复合物组成的改变导致T细胞对TCR/CD3刺激的反应性增加,并为自身免疫的发展奠定了生化基础。