Herrmann Stefan, Stieber Juliane, Stöckl Georg, Hofmann Franz, Ludwig Andreas
Institut für Experimentelle und Klinische Pharmakologie und Toxikologie, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany.
EMBO J. 2007 Oct 31;26(21):4423-32. doi: 10.1038/sj.emboj.7601868. Epub 2007 Oct 4.
Cardiac pacemaking involves a variety of ion channels, but their relative importance is controversial and remains to be determined. Hyperpolarization-activated, cyclic nucleotide-gated (HCN) channels, which underlie the I(f) current of sinoatrial cells, are thought to be key players in cardiac automaticity. In addition, the increase in heart rate following beta-adrenergic stimulation has been attributed to the cAMP-mediated enhancement of HCN channel activity. We have now studied mice in which the predominant sinoatrial HCN channel isoform HCN4 was deleted in a temporally controlled manner. Here, we show that deletion of HCN4 in adult mice eliminates most of sinoatrial I(f) and results in a cardiac arrhythmia characterized by recurrent sinus pauses. However, the mutants show no impairment in heart rate acceleration during sympathetic stimulation. Our results reveal that unexpectedly the channel does not play a role for the increase of the heart rate; however, HCN4 is necessary for maintaining a stable cardiac rhythm, especially during the transition from stimulated to basal cardiac states.
心脏起搏涉及多种离子通道,但其相对重要性仍存在争议,有待确定。超极化激活的环核苷酸门控(HCN)通道是窦房结细胞I(f)电流的基础,被认为是心脏自律性的关键参与者。此外,β-肾上腺素能刺激后心率的增加归因于cAMP介导的HCN通道活性增强。我们现在研究了以时间控制方式删除主要窦房结HCN通道亚型HCN4的小鼠。在此,我们表明成年小鼠中HCN4的缺失消除了大部分窦房结I(f),并导致以反复窦性停搏为特征的心律失常。然而,突变体在交感神经刺激期间心率加速方面没有受损。我们的结果出乎意料地表明,该通道对心率增加不起作用;然而,HCN4对于维持稳定的心律是必要的,尤其是在从刺激状态转变为基础心脏状态期间。