Institute of Physiology II, University Hospital Jena, Jena, Germany.
Biophys J. 2013 Oct 1;105(7):1581-9. doi: 10.1016/j.bpj.2013.08.027.
Hyperpolarization-activated cyclic-nucleotide-gated (HCN) channels are tetramers that evoke rhythmic electrical activity in specialized neurons and cardiac cells. These channels are activated by hyperpolarizing voltage, and the second messenger cAMP can further enhance the activation. Despite the physiological importance of HCN channels, their elementary functional properties are still unclear. In this study, we expressed homotetrameric HCN2 channels in Xenopus oocytes and performed single-channel experiments in patches containing either one or multiple channels. We show that the single-channel conductance is as low as 1.67 pS and that channel activation is a one-step process. We also observed that the time between the hyperpolarizing stimulus and the first channel opening, the first latency, determines the activation process alone. Notably, at maximum hyperpolarization, saturating cAMP drives the channel to open for unusually long periods. In particular, at maximum activation by hyperpolarization and saturating cAMP, the open probability approaches unity. In contrast to other reports, no evidence of interchannel cooperativity was observed. In conclusion, single HCN2 channels operate only with an exceptionally low conductance, and both activating stimuli, voltage and cAMP, exclusively control the open probability.
超极化激活环核苷酸门控 (HCN) 通道是四聚体,在专门的神经元和心肌细胞中引发有节奏的电活动。这些通道通过超极化电压激活,第二信使 cAMP 可以进一步增强其激活。尽管 HCN 通道具有重要的生理意义,但它们的基本功能特性仍不清楚。在这项研究中,我们在非洲爪蟾卵母细胞中表达了同源四聚体 HCN2 通道,并在含有单个或多个通道的斑块上进行了单通道实验。我们表明,单通道电导低至 1.67 pS,通道激活是一个单步过程。我们还观察到,从去极化刺激到第一个通道开放的时间,即第一个潜伏期,单独决定了激活过程。值得注意的是,在最大去极化时,饱和的 cAMP 使通道长时间开放。特别是在最大去极化和饱和 cAMP 激活时,开放概率接近 1。与其他报道相反,没有观察到通道间的协同作用。总之,单个 HCN2 通道仅以异常低的电导起作用,并且两种激活刺激,电压和 cAMP,仅控制开放概率。