Institute of Neurophysiology, University of Köln, Köln, Germany.
Cell Biochem Funct. 2013 Jul;31(5):434-49. doi: 10.1002/cbf.2918. Epub 2012 Oct 22.
Voltage-gated Ca(2+) channels regulate cardiac automaticity, rhythmicity and excitation-contraction coupling. Whereas L-type (Cav 1·2, Cav 1·3) and T-type (Cav 3·1, Cav 3·2) channels are widely accepted for their functional relevance in the heart, the role of Cav 2·3 Ca(2+) channels expressing R-type currents remains to be elucidated. We have investigated heart rate dynamics in control and Cav 2·3-deficient mice using implantable electrocardiogram radiotelemetry and pharmacological injection experiments. Autonomic block revealed that the intrinsic heart rate does not differ between both genotypes. Systemic administration of isoproterenol resulted in a significant reduction in interbeat interval in both genotypes. It remained unaffected after administering propranolol in Cav 2·3(-|-) mice. Heart rate from isolated hearts as well as atrioventricular conduction for both genotypes differed significantly. Additionally, we identified and analysed the developmental expression of two splice variants, i.e. Cav 2·3c and Cav 2·3e. Using patch clamp technology, R-type currents could be detected in isolated prenatal cardiomyocytes and be related to R-type Ca(2+) channels. Our results indicate that on the systemic level, the pharmacologically inducible heart rate range and heart rate reserve are impaired in Cav 2·3 (-|-) mice. In addition, experiments on Langendorff perfused hearts elucidate differences in basic properties between both genotypes. Thus, Cav 2·3 does not only contribute to the cardiac autonomous nervous system but also to intrinsic rhythm propagation.
电压门控钙 (Ca2+) 通道调节心脏的自律性、节律性和兴奋-收缩偶联。尽管 L 型 (Cav 1·2、Cav 1·3) 和 T 型 (Cav 3·1、Cav 3·2) 通道因其在心脏中的功能相关性而被广泛接受,但表达 R 型电流的 Cav 2·3 Ca(2+) 通道的作用仍有待阐明。我们使用植入式心电图遥测和药理学注射实验研究了对照和 Cav 2·3 缺陷小鼠的心率动力学。自主阻断表明两种基因型之间的固有心率没有差异。异丙肾上腺素的系统给药导致两种基因型的心动间隔显著缩短。在 Cav 2·3(-|-) 小鼠中给予普萘洛尔后,其不受影响。两种基因型的离体心脏心率和房室传导均有显著差异。此外,我们鉴定并分析了两种剪接变体,即 Cav 2·3c 和 Cav 2·3e 的发育表达。使用膜片钳技术,可在分离的产前心肌细胞中检测到 R 型电流,并与 R 型 Ca(2+) 通道相关。我们的结果表明,在系统水平上,Cav 2·3(-|-) 小鼠的药物诱导心率范围和心率储备受损。此外,Langendorff 灌流心脏实验阐明了两种基因型之间的基本特性差异。因此,Cav 2·3 不仅对心脏自主神经系统有贡献,而且对固有节律传播也有贡献。