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大电导钙激活钾电流调节分离犬心内神经元的兴奋性。

Large-conductance calcium-activated potassium current modulates excitability in isolated canine intracardiac neurons.

机构信息

Masonic Medical Research Laboratory, Utica, NY, USA.

出版信息

Am J Physiol Cell Physiol. 2013 Feb 1;304(3):C280-6. doi: 10.1152/ajpcell.00148.2012. Epub 2012 Nov 28.

Abstract

We studied principal neurons from canine intracardiac (IC) ganglia to determine whether large-conductance calcium-activated potassium (BK) channels play a role in their excitability. We performed whole cell recordings in voltage- and current-clamp modes to measure ion currents and changes in membrane potential from isolated canine IC neurons. Whole cell currents from these neurons showed fast- and slow-activated outward components. Both current components decreased in the absence of calcium and following 1-2 mM tetraethylammonium (TEA) or paxilline. These results suggest that BK channels underlie these current components. Single-channel analysis showed that BK channels from IC neurons do not inactivate in a time-dependent manner, suggesting that the dynamic of the decay of the fast current component is akin to that of intracellular calcium. Immunohistochemical studies showed that BK channels and type 2 ryanodine receptors are coexpressed in IC principal neurons. We tested whether BK current activation in these neurons occurred via a calcium-induced calcium release mechanism. We found that the outward currents of these neurons were not affected by the calcium depletion of intracellular stores with 10 mM caffeine and 10 μM cyclopiazonic acid. Thus, in canine intracardiac neurons, BK currents are directly activated by calcium influx. Membrane potential changes elicited by long (400 ms) current injections showed a tonic firing response that was decreased by TEA or paxilline. These data strongly suggest that the BK current present in canine intracardiac neurons regulates action potential activity and could increase these neurons excitability.

摘要

我们研究了犬心内神经节的主神经元,以确定大电导钙激活钾(BK)通道是否在其兴奋性中发挥作用。我们在电压和电流钳模式下进行全细胞记录,以测量来自分离的犬心内神经节神经元的离子电流和膜电位变化。这些神经元的全细胞电流显示出快速和缓慢激活的外向成分。这两种电流成分在没有钙的情况下以及在 1-2mM 四乙铵(TEA)或巴芘林存在下均减少。这些结果表明,BK 通道是这些电流成分的基础。单通道分析表明,来自心内神经节神经元的 BK 通道不会以时间依赖性方式失活,这表明快速电流成分衰减的动力学类似于细胞内钙的动力学。免疫组织化学研究表明,BK 通道和 2 型兰尼碱受体在主神经元中共同表达。我们测试了这些神经元中 BK 电流的激活是否通过钙诱导钙释放机制发生。我们发现,这些神经元的外向电流不受用 10mM 咖啡因和 10μM 环匹阿尼酸耗尽细胞内储存钙的影响。因此,在犬心内神经元中,BK 电流是直接由钙内流激活的。由长(400ms)电流注入引起的膜电位变化显示出紧张性放电反应,该反应被 TEA 或巴芘林减少。这些数据强烈表明,存在于犬心内神经元中的 BK 电流调节动作电位活动,并可能增加这些神经元的兴奋性。

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