Lischke A, Moriggl R, Brändlein S, Berchtold S, Kammer W, Sebald W, Groner B, Liu X, Hennighausen L, Friedrich K
Theodor-Boveri-Institut für Biowissenschaften (Biozentrum), Physiologische Chemie II, Am Hubland, D-97074 Würzburg, Germany.
J Biol Chem. 1998 Nov 20;273(47):31222-9. doi: 10.1074/jbc.273.47.31222.
Interleukin (IL)-4 signaling proceeds via cytoplasmic activation of the Janus kinases JAK1 and JAK3 and the signal transducer and activator of transcription STAT6. We show that the IL-4 receptor, like other cytokine receptor systems utilizing the common receptor gamma-chain (gammac), is also connected to a signaling pathway that involves STAT5. Both STAT5a and STAT5b become tyrosine-phosphorylated and acquire specific DNA-binding properties in response to IL-4 receptor stimulation in the murine pro-B cell line Ba/F3. In preactivated human T cells, STAT5 became activated in an IL-4-dependent fashion as assayed by IL-4-induced STAT5 translocation from the cytoplasm to the cell nucleus and by binding to cognate DNA. Moreover, stimulation of preactivated human T cells by IL-4 led to specific transcriptional up-regulation of STAT5 target genes. IL-4 receptor-mediated STAT5 activation is dependent on the presence of gammac and JAK3 within the receptor complex. In COS-7 cells, the JAK/STAT pathway leading from the IL-4 receptor to STAT5-dependent regulation of a reporter gene relied largely on coexpression of JAK3. In Ba/F3 cells, studies on signal transduction evoked by directed specific receptor homo- or heterodimerization revealed that STAT5 activation can be triggered exclusively by IL-4R heterodimers containing gammac.
白细胞介素(IL)-4信号通过Janus激酶JAK1和JAK3以及信号转导和转录激活因子STAT6的细胞质激活来进行。我们发现,IL-4受体与其他利用共同受体γ链(γc)的细胞因子受体系统一样,也与涉及STAT5的信号通路相连。在小鼠前B细胞系Ba/F3中,STAT5a和STAT5b在IL-4受体刺激下均发生酪氨酸磷酸化并获得特定的DNA结合特性。在预激活的人T细胞中,通过IL-4诱导的STAT5从细胞质转移到细胞核以及与同源DNA结合来检测,STAT5以IL-4依赖的方式被激活。此外,IL-4刺激预激活的人T细胞导致STAT5靶基因的特异性转录上调。IL-4受体介导的STAT5激活依赖于受体复合物中γc和JAK3的存在。在COS-7细胞中,从IL-4受体到报告基因的STAT5依赖性调控的JAK/STAT信号通路很大程度上依赖于JAK3的共表达。在Ba/F3细胞中,对定向特异性受体同源或异源二聚化引发的信号转导研究表明,STAT5激活只能由含有γc的IL-4R异源二聚体触发。