Mustonen Erja, Pohjolainen Virva, Aro Jani, Pikkarainen Sampsa, Leskinen Hanna, Ruskoaho Heikki, Rysä Jaana
Institute of Biomedicine, Department of Pharmacology and Toxicology, Biocenter Oulu, University of Oulu, Oulu, Finland.
Blood Press. 2009;18(5):286-93. doi: 10.3109/08037050903244643.
Matrix Gla protein (MGP) expression is increased in cardiac hypertrophy, but the precise mechanisms regulating its expression are unknown. Here we characterized the effect of pressure overload and myocardial infarction in vivo as well as mechanical stretch and hypertrophic agonists in vitro on MGP expression. When angiotensin II (Ang II) was administered by osmotic minipumps, left ventricular (LV) MGP mRNA levels increased significantly from 6 h to 2 weeks, whereas intravenous arginine(8)-vasopressin increased LV MGP mRNA levels within 4 h. During post-infarction remodeling process, MGP mRNA levels were elevated at 24 h (1.3-fold, p<0.05) and the maximal increase was observed at 4 weeks (2.8-fold, p<0.01). Ang II increased MGP mRNA levels 20% (p<0.05) in neonatal rat cardiac myocytes and 40% (p<0.05) in cardiac fibroblasts, whereas endothelin-1 decreased MGP mRNA levels 30% (p<0.01) in myocytes and had no effect in fibroblasts. Cyclic mechanical stretch resulted in reduction of MGP gene expression in both cardiac myocytes and fibroblasts. These results demonstrate that MGP is rapidly upregulated in response to cardiac overload well before the development of LV hypertrophy and post-infarction remodeling process. Our results also suggest that Ang II may be involved in mediating load-induced activation of MGP expression.
基质γ-羧基谷氨酸蛋白(MGP)的表达在心肌肥厚时增加,但其表达调控的精确机制尚不清楚。在此,我们描述了体内压力超负荷和心肌梗死以及体外机械牵张和肥大激动剂对MGP表达的影响。当通过渗透微型泵给予血管紧张素II(Ang II)时,左心室(LV)MGP mRNA水平在6小时至2周内显著增加,而静脉注射精氨酸(8)-加压素在4小时内增加LV MGP mRNA水平。在梗死后重塑过程中,MGP mRNA水平在24小时时升高(1.3倍,p<0.05),并在4周时观察到最大增加(2.8倍,p<0.01)。Ang II使新生大鼠心肌细胞中MGP mRNA水平增加20%(p<0.05),使心脏成纤维细胞中增加40%(p<0.05),而内皮素-1使心肌细胞中MGP mRNA水平降低30%(p<0.01),对成纤维细胞无影响。周期性机械牵张导致心肌细胞和成纤维细胞中MGP基因表达降低。这些结果表明,在左心室肥厚和梗死后重塑过程发展之前,MGP就会因心脏超负荷而迅速上调。我们的结果还表明,Ang II可能参与介导负荷诱导的MGP表达激活。