Xi Hongkang, Kersh Gilbert J
Department of Pathology and Laboratory Medicine, Emory University School of Medicine, 1639 Pierce Drive, Atlanta, GA 30322, USA.
J Immunol. 2004 Jan 15;172(2):964-71. doi: 10.4049/jimmunol.172.2.964.
In thymocytes developing in the alphabeta lineage, the transition from CD4, CD8 double negative (DN) to CD4, CD8 double positive (DP) is associated with several rounds of cell division and changes in the expression of multiple genes. This transition is induced by the formation of a pre-TCR that includes a rearranged TCR beta-chain and the pre-TCR alpha-chain. The mechanism by which the pre-TCR influences both gene expression and proliferation has not been defined. We have evaluated the role played by early growth response gene 3 (Egr3) in translating pre-TCR signals into differentiation and proliferation. Egr3 is a transcriptional regulator that contains a zinc-finger DNA binding domain. We find that Egr3-deficient mice have a reduced number of thymocytes compared with wild-type mice, and that this is due to poor proliferation during the DN to DP transition. Treatment of both Egr3(+/+) and Egr3(-/-) mice on the Rag1(-/-) background with anti-CD3epsilon Ab in vivo results in similar differentiation events, but reduced cell recovery in the Egr3(-/-) mice. We have also generated transgenic mice that express high levels of Egr3 constitutively, and when these mice are bred onto a Rag1(-/-) background they exhibit increased proliferation in the absence of stimulation and have pre-TCR alpha-chain and CD25 down-regulation, as well as increased Calpha expression. The results show that Egr3 is an important regulator of proliferation in response to pre-TCR signals, and that it also may regulate some specific aspects of differentiation.
在αβ谱系中发育的胸腺细胞中,从CD4、CD8双阴性(DN)向CD4、CD8双阳性(DP)的转变与几轮细胞分裂以及多个基因表达的变化相关。这种转变是由一个前TCR的形成所诱导的,该前TCR包括一条重排的TCRβ链和前TCRα链。前TCR影响基因表达和增殖的机制尚未明确。我们评估了早期生长反应基因3(Egr3)在将前TCR信号转化为分化和增殖过程中所起的作用。Egr3是一种转录调节因子,含有一个锌指DNA结合结构域。我们发现,与野生型小鼠相比,Egr3缺陷型小鼠的胸腺细胞数量减少,这是由于在DN向DP转变过程中增殖不良所致。在体内用抗CD3ε抗体处理Rag1(-/-)背景的Egr3(+/+)和Egr3(-/-)小鼠,会导致类似的分化事件,但Egr3(-/-)小鼠的细胞恢复减少。我们还构建了持续高水平表达Egr3的转基因小鼠,当将这些小鼠培育到Rag1(-/-)背景上时,它们在没有刺激的情况下表现出增殖增加,前TCRα链和CD25下调,以及Calpha表达增加。结果表明,Egr3是响应前TCR信号的增殖的重要调节因子,并且它也可能调节分化的一些特定方面。