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HCN4 pacemaker channels attenuate the parasympathetic response and stabilize the spontaneous firing of the sinoatrial node

机译:HCN4起搏器通道衰减副交感神经响应并稳定鼻窦节点的自发射击

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摘要

Key points The contribution of HCN4 pacemaker channels in the autonomic regulation of the sino‐atrial node (SAN) has been a matter of debate. The transgenic overexpression of HCN4 did not induce tachycardia, but reduced heart rate variability, while the conditional knockdown of HCN4 gave rise to sinus arrhythmia. The response of the SAN to β‐adrenergic stimulation was not affected by overexpression or knockdown of HCN4 channels. When HCN4 channels were knocked down, the parasympathetic response examined by cervical vagus nerve stimulation (CVNS) was enhanced; the CVNS induced complete sinus pause. The overexpression of HCN4 attenuated bradycardia induced by CVNS only during β‐adrenergic stimulation. We concluded that HCN4 pacemaker channels stabilize the spontaneous firing by attenuating the parasympathetic response of the SAN. Abstract The heart rate is dynamically controlled by the sympathetic and parasympathetic nervous systems that regulate the sinoatrial node (SAN). HCN4 pacemaker channels are the well‐known causative molecule of congenital sick sinus syndrome. Although HCN4 channels are activated by cAMP, the sympathetic response of the SAN was preserved in patients carrying loss‐of‐function mutations of the HCN4 gene. In order to clarify the contribution of HCN4 channels in the autonomic regulation of the SAN, we developed novel gain‐of‐function mutant mice in which the expression level of HCN4 channels could be reversibly changed from zero to ~3 times that in wild‐type mice, using tetracycline transactivator and the tetracycline responsive element. We recorded telemetric ECGs in freely moving conscious mice and analysed the heart rate variability. We also evaluated the response of the SAN to cervical vagus nerve stimulation (CVNS). The conditional overexpression of HCN4 did not induce tachycardia, but reduced heart rate variability. The HCN4 overexpression also attenuated bradycardia induced by the CVNS only during the β‐adrenergic stimulation. In contrast, the knockdown of HCN4 gave rise to sinus arrhythmia, and enhanced the parasympathetic response; complete sinus pause was induced by the CVNS. In vitro , we compared the effects of acetylcholine on the spontaneous action potentials of single pacemaker cells, and found that similar phenotypic changes were induced by genetic manipulation of HCN4 expression both in the presence and absence of β‐adrenergic stimulation. Our study suggests that HCN4 channels attenuate the vagal response of the SAN, and thereby stabilize the spontaneous firing of the SAN.
机译:关键点HCN4起搏器通道在中耳节点(SAN)自主调节中的贡献是辩论的问题。 HCN4的转基因过表达没有诱导心动过速,但减少心率变异性,而HCN4的条件敲低产生鼻窦性心律失常。 SAN至β-肾上腺素能刺激的反应不受HCN4通道的过表达或敲低的影响。当HCN4通道被击倒时,通过宫颈迷走神经刺激(CVN)检查的副交感度反应增强; CVN诱导完全窦暂停。仅在β-肾上腺素能刺激期间,CVN诱导的HCN4减毒心动过缓的过度表达。我们得出结论,HCN4起搏器通道通过衰减SAN的副交感度应对来稳定自发烧制。摘要心率由调节窦房(SAN)的交感神经和副交感神经系统动态控制。 HCN4起搏器通道是先天性病态窦综合征的众所周知的致病分子。虽然HCN4通道被CAMP激活,但患有HCN4基因丧失丧失损失的患者的患者保存了SAN的交感神经响应。为了澄清HCN4通道在SAN的自主调节中的贡献,我们开发了新的函数突变小鼠,其中HCN4通道的表达水平可以从野生类型的零到3倍可逆地改变。小鼠使用四环素反式灭菌剂和四环素响应元件。我们在自由移动的小鼠中录制了遥测心电图,并分析了心率变异性。我们还评估了San至宫颈迷走神经刺激(CVN)的响应。 HCN4的条件过表达未诱导心动过速,但降低心率变异性。 HCN4过表达也仅在β-肾上腺素能刺激期间减毒由CVN诱导的心动过缓。相比之下,HCN4的敲低产生了鼻窦性心律失常,增强了副交感神经应激;完整的鼻窦暂停被CVN诱导。在体外,我们比较了乙酰胆碱对单起搏器细胞的自发动作电位的影响,发现通过β-肾上腺素能刺激的存在和不存在致癌HCN4表达的遗传操纵诱导类似的表型变化。我们的研究表明,HCN4通道衰减了SAN的迷走反应,从而稳定了SAN的自发射击。

著录项

  • 来源
    《The Journal of Physiology》 |2018年第5期|共17页
  • 作者单位

    Department of PhysiologyKurume University School of Medicine67 Asahi‐Machi Kurume 830‐0011 Japan;

    Department of PhysiologyKurume University School of Medicine67 Asahi‐Machi Kurume 830‐0011 Japan;

    Department of Biochemistry and Cellular Biology National Institute of NeuroscienceNCNPTokyo 187;

    Department of Molecular Physiology Nagasaki UniversityGraduate School of Biomedical Sciences1‐12‐4;

    Department of Molecular Physiology Nagasaki UniversityGraduate School of Biomedical Sciences1‐12‐4;

    Department of AnesthesiologyKurume University School of Medicine67 Asahi‐Machi Kurume 830‐0011 Japan;

    Department of Molecular Physiology Nagasaki UniversityGraduate School of Biomedical Sciences1‐12‐4;

    Department of PhysiologyKurume University School of Medicine67 Asahi‐Machi Kurume 830‐0011 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    HCN4 channels; parasympathetic nerve; bradycardia; sinoatrial node;

    机译:HCN4频道;副交感神经;心动过缓;窦房结;

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