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白细胞介素-4对信号转导及转录激活因子5(STAT5)的激活依赖于Janus激酶的功能,而非受体酪氨酸磷酸化,并且它既能促进细胞增殖,也能参与基因调控。

Activation of STAT5 by IL-4 relies on Janus kinase function but not on receptor tyrosine phosphorylation, and can contribute to both cell proliferation and gene regulation.

作者信息

Friedrich K, Kammer W, Erhardt I, Brändlein S, Sebald W, Moriggl R

机构信息

Theodor-Boveri-Institut für Biowissenschaften (Biozentrum), Physiologische Chemie II, Am Hubland, 97074 Würzburg, Germany.

出版信息

Int Immunol. 1999 Aug;11(8):1283-94. doi: 10.1093/intimm/11.8.1283.

Abstract

We have investigated mechanisms and consequences of STAT5 activation through the human IL-4 receptor (IL-4R). By functionally expressing receptor mutants in the murine pro-B cell line Ba/F3, we could show that phosphorylated tyrosine residues within the IL-4R alpha chain are dispensable for IL-4-induced STAT5 activity. However, disruption of a membrane-proximal proline-rich sequence motif ('box1') in either subunit of the bipartite IL-4R abolished not only ligand-induced tyrosine phosphorylation of Janus kinases JAK1 and JAK3, but also IL-4-triggered activation of STAT5 and concomitant cell proliferation. A dominant-negative version of STAT5b, but not of STAT5a, interfered with IL-4-induced DNA synthesis in Ba/F3 cells, suggesting an involvement of STAT5b in the control of cell proliferation through IL-4R. Reporter gene experiments finally showed that transcription from promoters of STAT5 target genes can be specifically induced by challenging cells with IL-4, and that both STAT5a and STAT5b can contribute to IL-4-triggered transcriptional control.

摘要

我们研究了通过人白细胞介素4受体(IL-4R)激活信号转导和转录激活因子5(STAT5)的机制及后果。通过在小鼠前B细胞系Ba/F3中功能性表达受体突变体,我们发现IL-4Rα链内的磷酸化酪氨酸残基对于IL-4诱导的STAT5活性并非必需。然而,破坏二分体IL-4R任一亚基中靠近膜的富含脯氨酸的序列基序(“框1”),不仅消除了配体诱导的Janus激酶JAK1和JAK3的酪氨酸磷酸化,还消除了IL-4触发的STAT5激活及伴随的细胞增殖。STAT5b的显性负性形式而非STAT5a的显性负性形式,干扰了Ba/F3细胞中IL-4诱导的DNA合成,这表明STAT5b参与通过IL-4R对细胞增殖的调控。报告基因实验最终表明,用IL-4刺激细胞可特异性诱导STAT5靶基因启动子的转录,且STAT5a和STAT5b均可参与IL-4触发的转录调控。

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