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暴露于机械力的内皮细胞中一氧化氮合酶的表达。

Nitric oxide synthase expression in endothelial cells exposed to mechanical forces.

作者信息

Ziegler T, Silacci P, Harrison V J, Hayoz D

机构信息

Division of Hypertension and Vascular Medicine, CHUV, Lausanne, Switzerland.

出版信息

Hypertension. 1998 Aug;32(2):351-5. doi: 10.1161/01.hyp.32.2.351.

Abstract

Nitric oxide (NO) has been demonstrated to play a central role in vascular biology and pathobiology. The expression of endothelial NO synthase (eNOS) is regulated in part by blood flow-induced mechanical factors. The purpose of this study was to evaluate how the expression of eNOS mRNA correlates with the activation of its promoter in both arterial and venous endothelial cells (ECs) exposed to mechanical forces, ie, shear stress and cyclic circumferential stretch. Bovine aortic ECs (BAECs) and EA hy.926, a cell line derived from human umbilical vein ECs, were grown on the inside of elastic tubes and subjected to combinations of pressure, pulsatile shear stress, and cyclic circumferential stretch for 24 hours. Two patterns of shear stress were used: unidirectional (mean of 6, ranging from 3 to 9 dyne/cm2) and oscillatory (mean of 0.3, ranging from -3 to +3 dyne/cm2). The expression of eNOS mRNA was quantified by Northern blot analysis. Activation of the promoter was assessed by luciferase activity after the cells were transiently transfected before the flow experiments with a plasmid construct containing the fully functional eNOS promoter coupled to a luciferase reporter gene. Expression of eNOS mRNA was increased and promoter activity was enhanced by unidirectional shear stress compared with static control. Oscillatory shear slightly upregulated eNOS mRNA in BAECs, whereas it downregulated eNOS mRNA in EA hy.926. In both BAECs and EA hy.926, there was a good correlation between the increase in eNOS mRNA expression and promoter activation by unidirectional shear stress. In contrast, in both BAECs and EA hy.926 cells exposed to shear stress, cyclic stretch did not change eNOS mRNA expression, but the activation of eNOS promoter was significantly lower. Moreover, when ECs were exposed to oscillatory shear stress, there was a dramatic activation of the eNOS promoter. These results demonstrate that unidirectional shear stress increases eNOS mRNA expression via a transcriptional mechanism. However, oscillatory shear stress and cyclic stretch appear to control eNOS expression through posttranscriptional regulatory events.

摘要

一氧化氮(NO)已被证明在血管生物学和病理生物学中起着核心作用。内皮型一氧化氮合酶(eNOS)的表达部分受血流诱导的机械因素调节。本研究的目的是评估在暴露于机械力(即剪切应力和周期性周向拉伸)的动脉和静脉内皮细胞(ECs)中,eNOS mRNA的表达与其启动子激活之间的相关性。牛主动脉内皮细胞(BAECs)和源自人脐静脉内皮细胞的细胞系EA hy.926生长在弹性管内部,并在压力、脉动剪切应力和周期性周向拉伸的组合作用下处理24小时。使用了两种剪切应力模式:单向(平均值为6,范围为3至9达因/平方厘米)和振荡(平均值为0.3,范围为 -3至 +3达因/平方厘米)。通过Northern印迹分析对eNOS mRNA的表达进行定量。在流动实验前,用含有与荧光素酶报告基因偶联的全功能eNOS启动子的质粒构建体对细胞进行瞬时转染,然后通过荧光素酶活性评估启动子的激活情况。与静态对照相比,单向剪切应力增加了eNOS mRNA的表达并增强了启动子活性。振荡剪切在BAECs中略微上调了eNOS mRNA,而在EA hy.926中则下调了eNOS mRNA。在BAECs和EA hy.926中,eNOS mRNA表达的增加与单向剪切应力引起的启动子激活之间均存在良好的相关性。相反,在暴露于剪切应力的BAECs和EA hy.926细胞中,周期性拉伸并未改变eNOS mRNA的表达,但eNOS启动子的激活明显较低。此外,当内皮细胞暴露于振荡剪切应力时,eNOS启动子会发生显著激活。这些结果表明,单向剪切应力通过转录机制增加eNOS mRNA的表达。然而,振荡剪切应力和周期性拉伸似乎通过转录后调控事件来控制eNOS的表达。

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