Rao G N, Sardet C, Pouysségur J, Berk B C
Division of Cardiology, Emory University School of Medicine, Atlanta, Georgia 30322.
J Biol Chem. 1990 Nov 15;265(32):19393-6.
The Na+/H+ antiporter is a ubiquitous transmembrane protein that plays a vital role in cell growth via regulation of intracellular Na+ and H+. In vascular smooth muscle cells (VSMC), vasoconstrictors and mitogens rapidly activate the antiporter, suggesting that both should have growth promoting effects. Indeed, angiotensin II increases VSMC protein and volume (hypertrophy), but does not increase cell number (hyperplasia). In the present work we investigated whether alterations in the steady state levels of Na+/H+ antiporter mRNA might differentiate these VSMC growth responses. Differences in function of the Na+/H+ antiporter appeared likely because exposure of growth-arrested VSMC for 24 h to 100 nM angiotensin II decreased intracellular pH from 7.08 to 6.99, while exposure to 10% calf serum caused an increase to 7.18. Simultaneous measurement of Na+/H+ antiporter mRNA levels, using the human c28 cDNA, revealed a 25-fold increase in response to serum (as well as to platelet-derived and fibroblast growth factors), but no change in response to angiotensin II. All agonists increased mRNA levels of the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase approximately 3-fold. The increase in Na+/H+ antiporter mRNA induced by serum was first apparent within 2 h and peaked 24 h after treatment. These results demonstrate that expression of Na+/H+ antiporter mRNA in VSMC is dependent on growth state: hyperplastic agonists (serum, platelet-derived and fibroblast growth factor) increase the steady state levels of Na+/H+ antiporter mRNA while a hypertrophic agonist (angiotensin II) does not.
钠氢交换体是一种普遍存在的跨膜蛋白,通过调节细胞内的钠和氢,在细胞生长中发挥着至关重要的作用。在血管平滑肌细胞(VSMC)中,血管收缩剂和有丝分裂原能迅速激活该交换体,这表明二者都应具有促进生长的作用。事实上,血管紧张素II可增加VSMC的蛋白质含量和体积(肥大),但不会增加细胞数量(增生)。在本研究中,我们调查了钠氢交换体mRNA稳态水平的改变是否能区分这些VSMC的生长反应。钠氢交换体功能上的差异似乎是可能的,因为将生长停滞的VSMC暴露于100 nM血管紧张素II 24小时,可使细胞内pH从7.08降至6.99,而暴露于10%小牛血清则会使其升至7.18。使用人c28 cDNA同时测量钠氢交换体mRNA水平,结果显示,对血清(以及血小板衍生生长因子和成纤维细胞生长因子)的反应,该mRNA水平增加了25倍,但对血管紧张素II的反应则无变化。所有激动剂均可使糖酵解酶甘油醛-3-磷酸脱氢酶的mRNA水平增加约3倍。血清诱导的钠氢交换体mRNA增加在处理后2小时内首次明显出现,并在24小时达到峰值。这些结果表明,VSMC中钠氢交换体mRNA的表达取决于生长状态:增生性激动剂(血清、血小板衍生生长因子和成纤维细胞生长因子)可增加钠氢交换体mRNA的稳态水平,而肥大性激动剂(血管紧张素II)则不会。