Xu Man, Welling Andrea, Paparisto Susanne, Hofmann Franz, Klugbauer Norbert
Institut für Pharmakologie und Toxikologie, Technische Universität München, Biedersteiner Strasse 29, 80802 München, Germany.
J Biol Chem. 2003 Oct 17;278(42):40837-41. doi: 10.1074/jbc.M307598200. Epub 2003 Aug 4.
Voltage-gated calcium (Ca2+) channels play a key role in the control of heart contraction and are essential for normal heart development. The Cav1.2 L-type calcium channel is the predominant isoform in cardiomyocytes and is essential for excitation-contraction coupling. Although the inactivation of the Cav1.2 gene caused embryonic lethality before embryonic day E14.5, hearts were contracting before E14 depending on a dihydropyridine-sensitive calcium influx. We analyzed the consequences of the deletion of the Cav1.2 channel on the expression level of other voltage-gated calcium channels in the embryonic mouse heart and isolated cardiomyocytes. A strong compensatory up-regulation of the Cav1.3 calcium channel was observed on the mRNA as well as on the protein level. Reverse transcriptase PCR indicated that the recently identified new Cav1.3(1b) isoform was strongly up-regulated, whereas a more moderate increase was found for the Cav1.3(1a) variant. Heterologous expression of Cav1.3(1b) in HEK293 cells induced Ba2+ currents with properties similar to those found in Cav1.2 (-/-) cardiomyocytes, suggesting that this isoform constitutes a major component of the residual L-type calcium current in Cav1.2 (-/-) cardiomyocytes. In summary, our results imply that calcium channel expression is dynamically regulated during heart development and that the Cav1.3 channel may substitute for Cav1.2 during early embryogenesis.
电压门控钙(Ca2+)通道在心脏收缩控制中起关键作用,对心脏正常发育至关重要。Cav1.2 L型钙通道是心肌细胞中的主要亚型,对兴奋-收缩偶联至关重要。尽管Cav1.2基因的失活在胚胎第14.5天之前导致胚胎致死,但在第14天之前心脏就依靠对二氢吡啶敏感的钙内流进行收缩。我们分析了Cav1.2通道缺失对胚胎小鼠心脏和分离的心肌细胞中其他电压门控钙通道表达水平的影响。在mRNA和蛋白质水平均观察到Cav1.3钙通道的强烈代偿性上调。逆转录酶PCR表明,最近鉴定出的新Cav1.3(1b)亚型强烈上调,而Cav1.3(1a)变体的增加较为适度。Cav1.3(1b)在HEK293细胞中的异源表达诱导出与Cav1.2 (-/-)心肌细胞中相似特性的Ba2+电流,表明该亚型构成了Cav1.2 (-/-)心肌细胞中残余L型钙电流的主要成分。总之,我们的结果表明,钙通道表达在心脏发育过程中受到动态调节,并且Cav1.3通道可能在早期胚胎发生过程中替代Cav1.2。