Schwachtgen J L, Houston P, Campbell C, Sukhatme V, Braddock M
Endothelial Cell Gene Expression Group, Vascular Diseases Unit, Glaxo-Wellcome Medicines Research Centre, Stevenage, Herts SG1 2NY England.
J Clin Invest. 1998 Jun 1;101(11):2540-9. doi: 10.1172/JCI1404.
The primary response transcription factor, early growth response-1 (Egr-1), is rapidly activated by a variety of extracellular stimuli. Egr-1 binds to a sequence found in the promoters of genes involved in vascular injury, such as PDGF-A and tissue factor, and trans-activates their expression in endothelial cells in response to fluid shear stress. Here we show that egr-1 mRNA is increased after 30 min of flow in human aortic endothelial cell and HeLa cell cultures. Transient transfection of HeLa cells with reporter gene constructs driven by the murine or human egr-1 5' flanking sequence revealed a five- and ninefold induction, respectively, in transcriptional activity after exposure to a shear stress of 5 dynes/cm2 for 3 h. Deletion of sequences in the murine promoter containing two AP1 sites and an inhibitory Egr-1 binding sequence, did not reduce shear stress inducibility. However, progressive deletion of five serum response elements, reduced both the basal promoter activity and its capacity to be activated by shear stress. Further examination indicated that the three upstream serum response elements are predominantly responsible for shear stress activation of the egr-1 promoter. Treatment of cells with PD98059, a specific inhibitor of mitogen-activated protein kinase-1 inhibited shear stress activation of egr-1. We suggest that egr-1 activation by shear stress involves activation of Elk-1 but not c-jun activity. These data, which are consistent with previous findings for shear mediated signaling via the mitogen-activated protein kinase cascade, now implicate shear modulation of the Egr-1 transcription factor in this pathway.
初级反应转录因子早期生长反应因子-1(Egr-1)可被多种细胞外刺激迅速激活。Egr-1与血管损伤相关基因(如血小板衍生生长因子-A和组织因子)启动子中的序列结合,并在流体剪切应力作用下反式激活内皮细胞中这些基因的表达。在此我们发现,在人主动脉内皮细胞和HeLa细胞培养物中,流动30分钟后egr-1 mRNA水平升高。用由小鼠或人egr-1 5'侧翼序列驱动的报告基因构建体瞬时转染HeLa细胞,结果显示在暴露于5达因/平方厘米的剪切应力3小时后,转录活性分别诱导了5倍和9倍。缺失小鼠启动子中包含两个AP1位点和一个抑制性Egr-1结合序列的序列,并未降低剪切应力诱导性。然而,逐步缺失五个血清反应元件,则降低了基础启动子活性及其被剪切应力激活的能力。进一步研究表明,三个上游血清反应元件主要负责egr-1启动子的剪切应力激活。用丝裂原活化蛋白激酶-1的特异性抑制剂PD98059处理细胞,可抑制egr-1的剪切应力激活。我们认为,剪切应力对egr-1的激活涉及Elk-1的激活,而不涉及c-jun的活性。这些数据与先前通过丝裂原活化蛋白激酶级联反应进行剪切介导信号传导的研究结果一致,现在表明该途径中Egr-1转录因子受到剪切调节。