Nitric oxide attenuates the expression of transforming growth factor-β3 mRNA in rat cardiac fibroblasts via destabilization

被引:32
作者
Abdelaziz, N
Colombo, F
Mercier, I
Calderone, A
机构
[1] Inst Cardiol Montreal, Montreal, PQ H1T 1C8, Canada
[2] Univ Montreal, Dept Physiol, Montreal, PQ H3C 3J7, Canada
关键词
nitric oxide; cyclic GMP; fibroblasts; RNA; messenger; transforming growth factors; angiotensin II;
D O I
10.1161/01.HYP.38.2.261
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Transforming growth factor-beta (TGF-beta) has been implicated in the development of interstitial fibrosis in cardiac hypertrophy. NO has been regarded as a potent inhibitor of cardiac fibroblast growth, albeit the modulation of cellular events associated with interstitial fibrosis remains undefined. In this regard, the regulation of TGF-beta mRNA expression by the NO donor S-nitroso-N-acetyl-penicillamine (SNAP) was examined in neonatal rat cardiac fibroblasts. SNAP treatment for 4 hours decreased TGF-beta (3) mRNA levels, an effect mimicked by 8-bromo-cGMP. TGF-beta (3) mRNA, however, had returned to levels observed in the untreated cells after a 24-hour exposure to SNAP, whereas a decreased expression persisted with 8-bromo-cGMP. In contrast to TGF-beta (3), TGF-beta (1) mRNA levels were modestly increased in response to cGMP-generating molecules. The treatment with actinomycin D for at least 8 hours did not appreciably alter TGF-beta (3) mRNA levels. By contrast, SNAP treatment caused a rapid decrease of TGF-beta (3) mRNA with a half-life of 3.3 +/-0.2 hours, thereby supporting a mechanism of destabilization. The pretreatment with SNAP inhibited angiotensin II-stimulated protein synthesis and the concomitant expression of TGF-beta (3) mRNA. These data reveal a disparate pattern of TGF-beta (1) and TGF-beta (3) mRNA regulation by NO and highlight a novel mechanism of destabilization contributing to the decreased expression of TGF-beta (3) mRNA. The modulation of both basal and angiotensin II-stimulated TGF-beta (3) mRNA expression provides a mechanism by which NO may influence the progression of interstitial fibrosis.
引用
收藏
页码:261 / 266
页数:6
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