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一氧化氮通过内皮细胞中的细胞外信号调节激酶途径调控剪切应力诱导的早期生长反应-1的表达。

Nitric oxide regulates shear stress-induced early growth response-1. Expression via the extracellular signal-regulated kinase pathway in endothelial cells.

作者信息

Chiu J J, Wung B S, Hsieh H J, Lo L W, Wang D L

机构信息

Cardiovascular Division, Institute of Biomedical Sciences, Academia Sinica, Taiwan University, Taipei, Taiwan, ROC.

出版信息

Circ Res. 1999 Aug 6;85(3):238-46. doi: 10.1161/01.res.85.3.238.

Abstract

Endothelial cells (ECs) subjected to shear stress constantly release nitric oxide (NO). The effect of NO on shear stress-induced endothelial responses was examined. ECs subjected to shear stress induced a transient and shear force-dependent increase in early growth response-1 (Egr-1) mRNA levels. Treatment of ECs with an NO donor, S-nitroso-N-acetylpenicillamine (SNAP) or 3-morpholinosydnonimine (SIN-1), inhibited this shear stress-induced Egr-1 expression. Conversely, an NO synthase inhibitor to ECs, N(G)-monomethyl-L-arginine, augmented this Egr-1 expression. NO modulation of Egr-1 expression was demonstrated by functional analysis of Egr-1 promoter activity using a chimera containing the Egr-1 promoter region (-698 bp) and reporter gene luciferase. In contrast to the enhanced promoter activity after N(G)-monomethyl-L-arginine treatment, shear stress-induced Egr-1 promoter activity was attenuated after ECs were treated with an NO donor. ECs cotransfected with a dominant negative mutant of Ras (RasN17), Raf-1 (Raf301), or a catalytically inactive mutant of extracellular signal-regulated kinase (ERK)-2 (mERK) inhibited shear stress-induced Egr-1 promoter activity. NO modulation of the signaling pathway was shown by its inhibitory effect on shear stress-induced ERK1/ERK2 phosphorylation and activity. This inhibitory effect was further substantiated by the inhibition of NO on both the shear stress-induced transcriptional activity of Elk-1 (an ERK substrate) and the promoter activity of a reporter construct containing serum response element. NO-treated ECs resulted in a reduction of binding of nuclear proteins to the Egr-1 binding sequences in the platelet-derived growth factor-A promoter region. These results indicate that shear stress-induced Egr-1 expression is modulated by NO via the ERK signaling pathway in ECs. Our findings support the importance of NO as a negative regulator in endothelial responses to hemodynamic forces.

摘要

受到剪切应力作用的内皮细胞(ECs)持续释放一氧化氮(NO)。研究了NO对剪切应力诱导的内皮反应的影响。受到剪切应力作用的ECs会导致早期生长反应-1(Egr-1)mRNA水平出现短暂且依赖剪切力的升高。用NO供体S-亚硝基-N-乙酰青霉胺(SNAP)或3-吗啉代非对称二甲基脲(SIN-1)处理ECs,可抑制这种剪切应力诱导的Egr-1表达。相反,给ECs使用NO合酶抑制剂N(G)-单甲基-L-精氨酸,则会增强这种Egr-1表达。通过使用包含Egr-1启动子区域(-698 bp)和报告基因荧光素酶的嵌合体对Egr-1启动子活性进行功能分析,证实了NO对Egr-1表达的调节作用。与N(G)-单甲基-L-精氨酸处理后启动子活性增强相反,用NO供体处理ECs后,剪切应力诱导的Egr-1启动子活性减弱。与Ras(RasN17)、Raf-1(Raf301)的显性负性突变体或细胞外信号调节激酶(ERK)-2的催化失活突变体(mERK)共转染的ECs,抑制了剪切应力诱导的Egr-1启动子活性。NO对信号通路的调节作用表现为其对剪切应力诱导的ERK1/ERK2磷酸化和活性的抑制作用。通过NO对剪切应力诱导的Elk-1(一种ERK底物)转录活性和包含血清反应元件的报告构建体的启动子活性的抑制作用,进一步证实了这种抑制作用。用NO处理的ECs导致核蛋白与血小板衍生生长因子-A启动子区域中Egr-1结合序列的结合减少。这些结果表明,剪切应力诱导的Egr-1表达在ECs中通过ERK信号通路受到NO的调节。我们的研究结果支持了NO作为内皮对血流动力学力反应的负调节因子的重要性。

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