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首页> 外文期刊>Journal of General Physiology >Cooperative gating between single HCN pacemaker channels
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Cooperative gating between single HCN pacemaker channels

机译:单个HCN起搏器通道之间的协作门控

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HCN pacemaker channels (I-f, I-q, or I-h) play a fundamental role in the physiology of many excitable cell types, including cardiac myocytes and central neurons. While cloned HCN channels have been studied extensively in macroscopic patch clamp experiments, their extremely small conductance has precluded single channel analysis to date. Nevertheless, there remain fundamental questions about HCN gating that can be resolved only at the single channel level. Here we present the first detailed single channel study of cloned mammalian HCN2. Excised patch clamp recordings revealed discrete hyperpolarization-activated, cAMP-sensitive channel openings with amplitudes of 150-230 fA in the activation voltage range. The average conductance of these openings was similar to 1.5 pS at -120 mV in symmetrical 160 mM K+. Some traces with multiple channels showed unusual gating behavior, characterized by a variable long delay after a voltage step followed by runs of openings. Noise analysis on macroscopic currents revealed fluctuations whose magnitudes were systematically larger than predicted from the actual single channel current size, consistent with cooperativity between single HCN channels.
机译:HCN起搏器通道(I-f,I-q或I-h)在许多可兴奋细胞类型(包括心肌细胞和中枢神经元)的生理学中起着基本作用。尽管已在宏观膜片钳实验中对克隆的HCN通道进行了广泛研究,但迄今为止,其极小的电导已排除了单通道分析的可能性。但是,仍然存在一些有关HCN门控的基本问题,这些问题只能在单个通道级别上解决。在这里,我们介绍了克隆的哺乳动物HCN2的第一个详细的单通道研究。切除的膜片钳记录显示了在激活电压范围内振幅为150-230 fA的离散的超极化激活的cAMP敏感通道开口。这些开口的平均电导率在对称的160 mM K +中在-120 mV时类似于1.5 pS。一些具有多个通道的迹线显示出异常的门控行为,其特征在于,在电压阶跃后随着开孔运行,可变的长延迟。对宏观电流进行的噪声分析显示,其波动幅度系统地大于根据实际单通道电流大小所预测的幅度,这与单个HCN通道之间的协作性一致。

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