Ronkainen Veli-Pekka, Ronkainen Jarkko J, Hänninen Sandra L, Leskinen Hanna, Ruas Jorge L, Pereira Teresa, Poellinger Lorenz, Vuolteenaho Olli, Tavi Pasi
Department of Physiology, University of Oulu and Biocenter Oulu, Finland.
FASEB J. 2007 Jun;21(8):1821-30. doi: 10.1096/fj.06-7294com. Epub 2007 Mar 6.
Apelin and its G-protein-coupled receptor APJ have various beneficial effects on cardiac function and blood pressure. The mechanisms that regulate apelin gene expression are not known. Because apelin gene expression has been shown to increase in cardiac ischemia, we investigated if apelin (Apln) gene expression was sensitive to hypoxia. Here we show that hypoxia increases the apelin expression in rat myocardium and in cultured cardiomyocytes. Pharmacological activation of hypoxia inducible factor by desferrioxamine (DFO) or expression of a constitutively active form of HIF-1alpha increased apelin expression in cardiomyocyte cultures. The induction of apelin by hypoxia was abolished on transient expression of the HIF inhibitory PAS protein in cardiomyocytes. Increased apelin expression induced by hypoxia or DFO was accompanied by the processing of the cellular storage form proapelin into smaller apelin peptides and increased secretion of these biologically active forms of apelin. In a rat in vivo model, acute myocardial infarction (24 h) led to a transient increase in ventricular apelin mRNA levels. Our results indicate that apelin gene is regulated by hypoxia in cardiac myocytes via the HIF pathway, suggesting a role for apelin as a potential marker for acute cardiac hypoxia with a possible compensatory role in myocardial tissue suffering from oxygen deprivation.
阿片肽及其G蛋白偶联受体APJ对心脏功能和血压具有多种有益作用。调节阿片肽基因表达的机制尚不清楚。由于已证明阿片肽基因表达在心脏缺血时会增加,我们研究了阿片肽(Apln)基因表达是否对缺氧敏感。在此我们表明,缺氧会增加大鼠心肌和培养的心肌细胞中的阿片肽表达。去铁胺(DFO)对缺氧诱导因子的药理学激活或组成型活性形式的HIF-1α的表达增加了心肌细胞培养物中的阿片肽表达。在心肌细胞中瞬时表达HIF抑制性PAS蛋白后,缺氧对阿片肽的诱导作用消失。缺氧或DFO诱导的阿片肽表达增加伴随着细胞储存形式的前阿片肽加工成较小的阿片肽,并增加了这些生物活性形式的阿片肽的分泌。在大鼠体内模型中,急性心肌梗死(24小时)导致心室阿片肽mRNA水平短暂升高。我们的结果表明,心肌细胞中的阿片肽基因通过HIF途径受缺氧调节,提示阿片肽作为急性心脏缺氧的潜在标志物具有一定作用,并且在缺氧的心肌组织中可能具有代偿作用。