Cheung Kwok-Kuen, Marques-da-Silva Camila, Vairo Leandro, dos Santos Danúbia Silva, Goldenberg Regina, Coutinho-Silva Robson, Burnstock Geoffrey
Autonomic Neuroscience Centre, Royal Free and University College Medical School, Rowland Hill Street, London, NW3 2PF, UK.
Purinergic Signal. 2015 Mar;11(1):127-38. doi: 10.1007/s11302-014-9441-4. Epub 2014 Dec 16.
Purinergic receptors activated by extracellular nucleotides (adenosine 5'-triphosphate (ATP) and uridine 5'-triphosphate (UTP)) are well known to exert physiological effects on the cardiovascular system, whether nucleotides participate functionally in embryonic heart development is not clear. The responsiveness of embryonic cardiomyocytes (E) 12 to P2 receptor agonists by measuring Ca(2+) influx did not present response to ATP, but responses to P2 agonists were detected in cardiomyocytes taken from E14 and E18 rats. Photometry revealed that the responses to ATP were concentration-dependent with an EC50 of 1.32 μM and 0.18 μM for E14 and E18 cardiomyocytes, respectively. In addition, other P2 agonists were also able to induce Ca(2+) mobilization. RT-PCR showed the presence of P2X2 and P2X4 receptor transcripts on E14 cardiomyocytes with a lower expression of P2X3 and P2X7 receptors. P2X1 and a low level of P2X5 receptor messenger RNA (mRNA) were also expressed at E18. Immunofluorescence data indicated that only P2X2 and P2X4 receptor proteins were expressed in E14 cardiomyocytes while protein for all the P2X receptor subtypes was expressed in E18, except for P2X3 and P2X6. Responses mediated by agonists specific for P2Y receptors subtypes showed that P2Y receptors (P2Y1, P2Y2, P2Y4 and P2Y6) were also present in both E14 and E18 cardiomyocytes. Dye transfer experiments showed that ATP induces coupling of cells at E12, but this response is decreased at E14 and lost at E18. Conversely, UTP induced coupling with five or more cells in most cells from E12 to E18. Our results show that specific P2 receptor subtypes are present in embryonic rat cardiomyocytes, including P2X7 and P2Y4 receptors that have not been identified in adult rat cardiomyocytes. The responsiveness to ATP stimulation even before birth, suggests that ATP may be an important messenger in embryonic as well as in adult hearts.
细胞外核苷酸(腺苷5'-三磷酸(ATP)和尿苷5'-三磷酸(UTP))激活的嘌呤能受体对心血管系统具有生理作用,这是众所周知的,但核苷酸是否在胚胎心脏发育中发挥功能尚不清楚。通过测量Ca(2+)内流来检测胚胎心肌细胞(E)12对P2受体激动剂的反应,结果显示其对ATP无反应,但在取自E14和E18大鼠的心肌细胞中检测到对P2激动剂的反应。光度测定显示,E14和E18心肌细胞对ATP的反应呈浓度依赖性,其EC50分别为1.32 μM和0.18 μM。此外,其他P2激动剂也能够诱导Ca(2+)动员。RT-PCR显示E14心肌细胞中存在P2X2和P2X4受体转录本,而P2X3和P2X7受体表达较低。E18时也表达P2X1和低水平的P2X5受体信使核糖核酸(mRNA)。免疫荧光数据表明,E14心肌细胞中仅表达P2X2和P2X4受体蛋白,而E18时除P2X3和P2X6外,所有P2X受体亚型的蛋白均有表达。对P2Y受体亚型特异性激动剂介导的反应表明,E14和E18心肌细胞中均存在P2Y受体(P2Y1、P2Y2、P2Y4和P2Y6)。染料转移实验表明,ATP在E12时诱导细胞偶联,但在E14时这种反应减弱,在E18时消失。相反,UTP在E12至E18的大多数细胞中诱导与五个或更多细胞的偶联。我们的结果表明,胚胎大鼠心肌细胞中存在特定的P2受体亚型,包括在成年大鼠心肌细胞中未发现的P2X7和P2Y4受体。甚至在出生前对ATP刺激的反应性表明,ATP可能是胚胎心脏和成年心脏中的重要信使。