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Contribution of small conductance K+ channels to sinoatrial node pacemaker activity: insights from atrial-specific Na+/Ca2+ exchange knockout mice

机译:小型电导k +通道对鼻窦节点起搏器活动的贡献:心房特异性Na + / ca2 +交换敲除小鼠的见解

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摘要

Small conductance K+ (SK) channels have been implicated as modulators of spontaneous depolarization and electrical conduction that may be involved in cardiac arrhythmia. However, neither their presence nor their contribution to sinoatrial node (SAN) pacemaker activity has been investigated. Using quantitative PCR (q-PCR), immunostaining and patch clamp recordings of membrane current and voltage, we identified all three SK isoforms (SK1, SK2 and SK3) in mouse SAN. Inhibition of SK channels with the specific blocker apamin prolonged action potentials (APs) in isolated SAN cells. Apamin also slowed diastolic depolarization and reduced pacemaker rate in isolated SAN cells and intact tissue. We investigated whether the Ca2+-sensitive nature of SK channels could explain arrhythmic SAN pacemaker activity in the atrial-specific Na+/Ca2+ exchange (NCX) knockout (KO) mouse, a model of cellular Ca2+ overload. SAN cells isolated from the NCX KO exhibited higher SK current than wildtype (WT) and apamin prolonged their APs. SK blockade partially suppressed the arrhythmic burst pacing pattern of intact NCX KO SAN tissue. We conclude that SK channels have demonstrable effects on SAN pacemaking in the mouse. Their Ca2+-dependent activation translates changes in cellular Ca2+ into a repolarizing current capable of modulating regular pacemaking. This Ca2+ dependence also promotes abnormal automaticity when these channels are hyperactivated by elevated Ca2+. We propose SK channels as a potential target for modulating SAN rate, and for treating patients affected by SAN dysfunction, particularly in the setting of Ca2+ overload.
机译:小电导k +(SK)通道涉及可参与心律失常的自发去极化和电导的调节剂。然而,已经研究了他们对窦房结(SAN)起搏器活动的影响也不存在。使用定量PCR(Q-PCR),膜电流和电压的免疫染色和贴片夹具,我们在小鼠SAN中识别了所有三种SK同种型(SK1,SK2和SK3)。在分离的SAN细胞中抑制具有特异性阻滞剂Apamin的特异性阻滞剂延长动作电位(APS)。 Apamin还减缓了舒张镜去极化和减少分离的SAN细胞和完整组织的起搏器速率。我们调查了SK频道的CA2 + -ssensitive性质是否可以在心房特异性Na + / Ca2 +交换(NCX)敲除(KO)小鼠中解释心律失常的San Pacemaker活动,蜂窝线+过载模型。从NCX KO中分离的SAN细胞表现出高于野生型(重量)的SK电流,并且Apamin延长了它们的AP。 SK封锁部分抑制了完整NCX KO SAN组织的心律失常爆破起搏模式。我们得出结论,SK频道对小鼠的San Sopaking具有明显的影响。它们的CA2 +依赖激活将蜂窝CA2 +的变化转化为能够调节常规起搏器的复极电流中的变化。当这些通道通过升高的CA2 +升高时,该CA2 +依赖性也促进了异常自动性。我们将SK频道作为调节SAN率的潜在目标,以及治疗受SAN功能障碍影响的患者,特别是在CA2 +过载的设置中。

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  • 来源
    《The Journal of Physiology》 |2017年第12期|共19页
  • 作者单位

    Cedars Sinai Heart Inst 8700 Beverly Blvd Los Angeles CA 90048 USA;

    Cedars Sinai Heart Inst 8700 Beverly Blvd Los Angeles CA 90048 USA;

    Cedars Sinai Heart Inst 8700 Beverly Blvd Los Angeles CA 90048 USA;

    Cedars Sinai Heart Inst 8700 Beverly Blvd Los Angeles CA 90048 USA;

    Cedars Sinai Heart Inst 8700 Beverly Blvd Los Angeles CA 90048 USA;

    Cedars Sinai Heart Inst 8700 Beverly Blvd Los Angeles CA 90048 USA;

    Univ Calif Los Angeles David Geffen Sch Med Dept Physiol 650 Charles Young Dr South Los Angeles;

    Cedars Sinai Heart Inst 8700 Beverly Blvd Los Angeles CA 90048 USA;

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

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