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首页> 外文期刊>The Journal of Physiology >Single channel properties of hyperpolarization-activated cation currents in acutely dissociated rat hippocampal neurones.
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Single channel properties of hyperpolarization-activated cation currents in acutely dissociated rat hippocampal neurones.

机译:急性离解大鼠海马神经元中超极化激活阳离子电流的单通道性质。

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The hyperpolarization-activated cation current (I(h)), mediated by HCN channels, contributes to intrinsic neuronal properties, synaptic integration and network rhythmicity. Recent studies have implicated HCN channels in neuropathological conditions including epilepsy. While native HCN channels have been studied at the macroscopic level, the biophysical characteristics of individual neuronal HCN channels have not been described. We characterize, for the first time, single HCN currents of excised inside-out patches from somata of acutely dissociated rat hippocampal CA1 pyramidal cells. Hyperpolarization steps elicited non-inactivating channel openings with an apparent conductance of 9.7 pS, consistent with recent reports of native and recombinant HCN channels. The voltage-dependent P(o) had a V(1/2) of -81 +/- 1.8 mV and slope -13.3 +/- 1.9 mV. Blockers of macroscopic I(h), ZD7288 (50 microM) and CsCl (1 mM), reduced the channel conductance to 8 pS and 8.4 pS, respectively. ZD7288 was slightly more effective in reducing the P(o) at depolarized potentials, whereas CsCl was more efficacious at hyperpolarized potentials. The unitary neuronal HCN channels had voltage-dependent latencies to first channel opening and two open states. As expected, ZD7288 and CsCl increased latencies and decreased the properties of both open states. The major endogenous positive modulator of macroscopic I(h) is cAMP. Application of 8Br-cAMP (10 microM) did not affect conductance (9.4 pS), but did increase P(o) and short and long open times. Thus, sensitivity to I(h) modulators supports the single h-channel identity of these unitary currents. Detailed biophysical analysis of unitary I(h) conductances is likely to help distinguish between homomeric and heteromeric expression of these channels - findings that may be relevant toward the pathophysiology of diseases such as epilepsy.
机译:HCN通道介导的超极化激活阳离子电流(I(h))有助于内在神经元特性,突触整合和网络节律。最近的研究已经将HCN通道牵涉到包括癫痫症在内的神经病理学疾病中。虽然已在宏观水平研究了天然HCN通道,但尚未描述单个神经元HCN通道的生物物理特征。我们首次表征了从急性离体大鼠海马CA1锥体细胞的躯体中切除的由内而外的补丁的单个HCN电流。超极化步骤引起了表观电导为9.7 pS的非灭活通道开放,这与最近关于天然和重组HCN通道的报道一致。电压相关的P(o)的V(1/2)为-81 +/- 1.8 mV,斜率为-13.3 +/- 1.9 mV。宏观I(h),ZD7288(50 microM)和CsCl(1 mM)的阻滞剂分别将通道电导降低至8 pS和8.4 pS。 ZD7288在去极化电势下降低P(o)的效果略强,而CsCl在超极化电势下更有效。单一神经元HCN通道具有与电压有关的潜伏期到第一通道打开和两个打开状态。正如预期的那样,ZD7288和CsCl增加了延迟,并降低了两个打开状态的性能。宏观I(h)的主要内源性正调节剂是cAMP。使用8Br-cAMP(10 microM)不会影响电导(9.4 pS),但会增加P(o)以及短和长的打开时间。因此,对I(h)调制器的灵敏度支持这些单位电流的单个h通道标识。对单一I(h)电导率进行详细的生物物理分析可能有助于区分这些通道的同源和异源表达-这些发现可能与诸如癫痫病等疾病的病理生理学有关。

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