Liao J K, Zulueta J J, Yu F S, Peng H B, Cote C G, Hassoun P M
Cardiovascular Division, Brigham & Women's Hospital, Boston, Massachusetts 02115, USA.
J Clin Invest. 1995 Dec;96(6):2661-6. doi: 10.1172/JCI118332.
Oxygen (O2) may regulate pulmonary vascular resistance through changes in endothelial nitric oxide (NO) production. To determine whether constitutive NO synthase (cNOS) is regulated by O2, we assessed cNOS expression and activity in bovine pulmonary artery endothelial cells exposed to different concentrations of O2. In a time-dependent manner, changes in O2 concentration from 95 to 3% produced a progressive decrease in cNOS mRNA and protein levels resulting in 4.8- and 4.3-fold reductions after 24h, respectively. This correlated with changes in cNOS activity as determined by nitrite measurements. Compared with 20% O2, cNOS activity was increased 1.5-fold in 95% O2 and decreased 1.9-fold in 3% O2. A decrease in O2 concentration from 94 to 3% shortened cNOS mRNA half-life from 46 to 24 h and caused a 20-fold repression of cNOS gene transcription. Treatment with cycloheximide produced a threefold increase in cNOS mRNA at all O2 concentrations, suggesting that cNOS mRNA expression is negatively regulated under basal condition. We conclude that O2 upregulates cNOS expression through transcriptional and post-transcriptional mechanisms. A decrease in cNOS activity in the presence of low O2 levels, therefore, may contribute to hypoxia-induced vasoconstriction in the pulmonary circulation.
氧气(O₂)可能通过改变内皮型一氧化氮(NO)的生成来调节肺血管阻力。为了确定组成型一氧化氮合酶(cNOS)是否受O₂调节,我们评估了暴露于不同浓度O₂的牛肺动脉内皮细胞中cNOS的表达和活性。以时间依赖性方式,O₂浓度从95%降至3%会使cNOS mRNA和蛋白水平逐渐降低,24小时后分别降低4.8倍和4.3倍。这与通过亚硝酸盐测量确定的cNOS活性变化相关。与20% O₂相比,cNOS活性在95% O₂时增加1.5倍,在3% O₂时降低1.9倍。O₂浓度从94%降至3%会使cNOS mRNA半衰期从46小时缩短至24小时,并导致cNOS基因转录受到20倍的抑制。用放线菌酮处理在所有O₂浓度下都会使cNOS mRNA增加三倍,这表明在基础条件下cNOS mRNA表达受到负调控。我们得出结论,O₂通过转录和转录后机制上调cNOS表达。因此,在低O₂水平下cNOS活性降低可能导致肺循环中缺氧诱导的血管收缩。