Todisco A, Takeuchi Y, Yamada J, Sadoshima J I, Yamada T
Department of Internal Medicine, University of Michigan Medical Center, Ann Arbor 48109-0682, USA.
Am J Physiol. 1997 Apr;272(4 Pt 1):G721-6. doi: 10.1152/ajpgi.1997.272.4.G721.
We reported previously that somatostatin inhibits the expression of the immediate early gene c-fos. Accordingly, we characterized the molecular mechanisms by which somatostatin inhibits c-fos gene expression. Because growth factors activate c-fos through a region of its promoter known as the serum response element [SRE; base pairs (bp) -357 to -276] we transfected rat pituitary adenoma cells (GH3) with plasmids containing the SRE or the SRE core fragment (bp -320 to -298) upstream of the luciferase reporter gene. Epidermal growth factor (EGF) stimulated SRE-luciferase activity, and this effect was inhibited by somatostatin and by the analog MK-678. Identical results were obtained with the SRE core plasmid, demonstrating that the sequence between bp -320 and -298 of the c-fos promoter is a somatostatin response element. Because the extracellular signal-regulated protein kinases (ERKs) induce the SRE via phosphorylation of transcription factors such as Elk-1, we examined the effect of somatostatin on ERK phosphorylation and activation. EGF stimulated tyrosine phosphorylation of ERK2, and MK-678 attenuated this effect. In experiments using in-gel kinase assays, MK-678 also inhibited EGF-stimulated ERK activity via a pertussis toxin sensitive pathway, and this effect resulted in inhibition of Elk-1 transcriptional activity. Our data suggest that one mechanism of somatostatin action involves inhibition of ERK activity, Elk-1 phosphorylation and transcriptional activation, and ultimately c-fos gene transcription.
我们先前报道过,生长抑素可抑制即早基因c-fos的表达。因此,我们对生长抑素抑制c-fos基因表达的分子机制进行了表征。由于生长因子通过其启动子中一个称为血清反应元件[SRE;碱基对(bp)-357至-276]的区域激活c-fos,我们用含有SRE或荧光素酶报告基因上游SRE核心片段(bp -320至-298)的质粒转染大鼠垂体腺瘤细胞(GH3)。表皮生长因子(EGF)刺激SRE-荧光素酶活性,而这种效应被生长抑素和类似物MK-678抑制。用SRE核心质粒也得到了相同的结果,表明c-fos启动子bp -320和-298之间的序列是生长抑素反应元件。由于细胞外信号调节蛋白激酶(ERKs)通过转录因子如Elk-1的磷酸化诱导SRE,我们研究了生长抑素对ERK磷酸化和激活的影响。EGF刺激ERK2的酪氨酸磷酸化,而MK-678减弱了这种效应。在使用凝胶内激酶分析的实验中,MK-678还通过百日咳毒素敏感途径抑制EGF刺激的ERK活性,这种效应导致Elk-1转录活性受到抑制。我们的数据表明,生长抑素作用的一种机制涉及抑制ERK活性、Elk-1磷酸化和转录激活,最终抑制c-fos基因转录。