Section for Sustainable Biotechnology, Copenhagen Institute of Technology, Aalborg University, Lautrupvang 15, 2750 Ballerup, Denmark.
Biochem Biophys Res Commun. 2010 Jun 11;396(4):989-93. doi: 10.1016/j.bbrc.2010.05.039. Epub 2010 May 12.
Pressure overload induces hypertrophic growth of the heart and in the long term this condition can lead to cardiomyopathy and heart failure. Several miRNAs are upregulated in heart failure. However, it is not clear, which miRNAs (if any) are induced during the early hypertrophic growth phase. To investigate whether the upregulation of miRNAs is an integrated part of hypertrophic growth or an effect of cardiac disease we investigated miRNA expression in early hypertrophic development. Hypertrophy was induced by banding of the ascending aorta of male rats. After 14 days, the heart left ventricle weight relative to body weight of animals with aortic banding had increased 65% compared to matched control rats. Furthermore, RNA was extracted from left ventricles and reverse transcription qPCR showed that expression of the hypertrophic markers atrial natriuretic peptide and brain natriuretic peptide was highly induced in animals with aortic banding. Out of 13 miRs that have previously been reported to be associated with late-stage pressure-overload-induced hypertrophy and heart failure only four (miR-23a, miR-27b, miR-125b and miR-195) were induced during early hypertrophic growth. These miRs were previously associated with angiogenesis and cell growth and their expression in early hypertrophic growth was accompanied by a twofold upregulation of the cell-cycle regulator cyclin D2 that is a marker of cardiac growth. Our results indicate that different miRNAs are involved in early hypertrophic growth than in late stage pressure-overload induced heart failure.
压力超负荷会导致心脏发生肥大性生长,而从长远来看,这种情况可能导致心肌病和心力衰竭。心力衰竭时,有几种 miRNA 上调。然而,目前尚不清楚在早期肥大生长阶段有哪些 miRNA(如果有)被诱导。为了研究 miRNA 的上调是否是肥大生长的一个组成部分,还是心脏病的一种影响,我们研究了早期肥大发展过程中的 miRNA 表达。通过对雄性大鼠升主动脉的捆绑来诱导肥大。14 天后,与匹配的对照组大鼠相比,主动脉捆绑动物的心脏左心室重量相对于体重增加了 65%。此外,从左心室提取 RNA,逆转录 qPCR 显示,在主动脉捆绑动物中,肥大标志物心房利钠肽和脑利钠肽的表达高度诱导。在之前报道的与晚期压力超负荷诱导的肥大和心力衰竭相关的 13 个 miRNA 中,只有 4 个(miR-23a、miR-27b、miR-125b 和 miR-195)在早期肥大生长过程中被诱导。这些 miRNA 之前与血管生成和细胞生长有关,它们在早期肥大生长中的表达伴随着细胞周期调节剂细胞周期蛋白 D2 的两倍上调,细胞周期蛋白 D2 是心脏生长的标志物。我们的研究结果表明,早期肥大生长中涉及的 miRNA 与晚期压力超负荷诱导的心力衰竭不同。