Chung K C, Gomes I, Wang D, Lau L F, Rosner M R
Ben May Institute for Cancer Research and Department of Pharmacological and Physiological Sciences, University of Chicago, Illinois 60637, USA.
Mol Cell Biol. 1998 Apr;18(4):2272-81. doi: 10.1128/MCB.18.4.2272.
Previous studies have shown that a mitogen activated protein (MAP) kinase (MEK)-independent signaling pathway is required by activated Raf or fibroblast-derived growth factor (FGF) for the differentiation of rat hippocampal neuronal H19-7 cells. We now demonstrate that both Raf and FGF similarly induce prolonged transcription and translation of the immediate early gene pip92 in the absence of activation of the MAP kinases (MAPKs) ERK1 and ERK2. To determine the mechanism by which this occurs and to identify novel Raf-activated signaling pathways, we investigated the induction of the pip92 promoter by both FGF and an estradiol-activated Raf-1-estrogen receptor fusion protein (deltaRaf-1:ER) in H19-7 cells. Deletion analysis of the pip92 promoter indicated that activation by the MAPK-independent pathway occurs primarily within the region containing a serum response element (SRE). Further analysis of the SRE by using a heterologous thymidine kinase promoter showed that both an Ets and CArG-like site are required. Elk1, which binds to the Ets site, was phosphorylated both in vitro and in vivo by the MAPK-independent pathway, and phosphorylation of an Elk1-GAL4 fusion protein by this pathway was sufficient for transactivation. Finally, at least two Elk1 kinases were fractionated by gel filtration, and analysis by an in-gel kinase assay revealed at least three novel Raf-activated Elk1 kinases. These results indicate that both FGF and Raf activate MAPK-independent kinases that can stimulate Elk1 phosphorylation and immediate early gene transcription.
先前的研究表明,活化的Raf或成纤维细胞衍生生长因子(FGF)诱导大鼠海马神经元H19-7细胞分化需要丝裂原活化蛋白(MAP)激酶(MEK)非依赖性信号通路。我们现在证明,在丝裂原活化蛋白激酶(MAPK)ERK1和ERK2未激活的情况下,Raf和FGF均能类似地诱导即刻早期基因pip92的转录和翻译延长。为了确定其发生机制并鉴定新的Raf激活信号通路,我们研究了FGF和雌二醇激活的Raf-1-雌激素受体融合蛋白(deltaRaf-1:ER)在H19-7细胞中对pip92启动子的诱导作用。对pip92启动子的缺失分析表明,MAPK非依赖性途径的激活主要发生在含有血清反应元件(SRE)的区域内。通过使用异源胸苷激酶启动子对SRE进行进一步分析表明,Ets位点和CArG样位点都是必需的。与Ets位点结合的Elk1在体外和体内均被MAPK非依赖性途径磷酸化,并且该途径对Elk1-GAL4融合蛋白的磷酸化足以实现反式激活。最后,通过凝胶过滤分离出至少两种Elk1激酶,凝胶内激酶分析显示至少有三种新的Raf激活的Elk1激酶。这些结果表明,FGF和Raf均激活MAPK非依赖性激酶,其可刺激Elk1磷酸化和即刻早期基因转录。