Müller J M, Krauss B, Kaltschmidt C, Baeuerle P A, Rupec R A
Institute of Biochemistry and Molecular Biology, Albert-Ludwigs-Universität Freiburg, Hermann-Herder-Strasse 7, D-79104 Freiburg, Germany.
J Biol Chem. 1997 Sep 12;272(37):23435-9. doi: 10.1074/jbc.272.37.23435.
Hypoxia is a pathophysiological condition that occurs during injury, ischemia, and stroke. It is characterized by a decrease of reactive oxygen intermediates and a change of the intracellular redox level. In tumors hypoxia is regarded as a trigger for enhanced growth and metastasis. Here we report that in HeLa cells, hypoxic conditions induce the transcriptional activation of c-fos transcription via the serum response element. Mutations in the binding site for the ternary complex factor Elk-1 and the serum response factor abolished this induction, indicating that a ternary complex at the serum response element is necessary for the induction of the c-fos gene under hypoxia. The transcription factor Elk-1 was covalently modified by phosphorylation in response to hypoxia. Furthermore this hyperphosphorylation of Elk-1, the activation of mitogen-activated protein kinase (MAPK), and the induction of c-fos transcripts were blocked by PD98059, a specific inhibitor of mitogen-activated protein kinase kinase/extracellular signal-regulated protein kinase kinase 1. An in vitro kinase assay with Elk-1 as substrate showed that MAPK is activated under hypoxia. The activation of MAPK corresponds temporally with the phosphorylation and activation of Elk-1. Thus, a decrease of the intracellular reactive oxygen intermediate level by hypoxia induces c-fos via the MAPK pathway. These results suggest that the intracellular redox levels may be directly coupled to tumor growth, invasion, and metastasis via Elk-1-dependent induction of c-Fos controlled genes.
缺氧是一种在损伤、局部缺血和中风期间出现的病理生理状态。其特征是活性氧中间体减少以及细胞内氧化还原水平发生变化。在肿瘤中,缺氧被视为促进生长和转移的触发因素。在此我们报告,在HeLa细胞中,缺氧条件通过血清反应元件诱导c-fos转录的激活。三元复合因子Elk-1和血清反应因子结合位点的突变消除了这种诱导作用,这表明血清反应元件处的三元复合物对于缺氧条件下c-fos基因的诱导是必需的。转录因子Elk-1响应缺氧而通过磷酸化进行共价修饰。此外,Elk-1的这种过度磷酸化、丝裂原活化蛋白激酶(MAPK)的激活以及c-fos转录本的诱导被PD98059(一种丝裂原活化蛋白激酶激酶/细胞外信号调节蛋白激酶激酶1的特异性抑制剂)所阻断。以Elk-1为底物的体外激酶分析表明,MAPK在缺氧条件下被激活。MAPK的激活在时间上与Elk-1的磷酸化和激活相对应。因此,缺氧导致的细胞内活性氧中间体水平降低通过MAPK途径诱导c-fos。这些结果表明,细胞内氧化还原水平可能通过Elk-1依赖的c-Fos调控基因的诱导与肿瘤生长、侵袭和转移直接相关。