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大鼠海马快速放电中间神经元中的超极化激活阳离子通道

Hyperpolarization-activated cation channels in fast-spiking interneurons of rat hippocampus.

作者信息

Aponte Yexica, Lien Cheng-Chang, Reisinger Ellen, Jonas Peter

机构信息

Physiologisches Institut, Universität Freiburg, Hermann-Herder-Str. 7, D-79104 Freiburg, Germany.

出版信息

J Physiol. 2006 Jul 1;574(Pt 1):229-43. doi: 10.1113/jphysiol.2005.104042. Epub 2006 May 11.

DOI:10.1113/jphysiol.2005.104042
PMID:16690716
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1817792/
Abstract

Hyperpolarization-activated channels (Ih or HCN channels) are widely expressed in principal neurons in the central nervous system. However, Ih in inhibitory GABAergic interneurons is less well characterized. We examined the functional properties of Ih in fast-spiking basket cells (BCs) of the dentate gyrus, using hippocampal slices from 17- to 21-day-old rats. Bath application of the Ih channel blocker ZD 7288 at a concentration of 30 microm induced a hyperpolarization of 5.7 +/- 1.5 mV, an increase in input resistance and a correlated increase in apparent membrane time constant. ZD 7288 blocked a hyperpolarization-activated current in a concentration-dependent manner (IC50, 1.4 microm). The effects of ZD 7288 were mimicked by external Cs+. The reversal potential of Ih was -27.4 mV, corresponding to a Na+ to K+ permeability ratio (PNa/PK) of 0.36. The midpoint potential of the activation curve of Ih was -83.9 mV, and the activation time constant at -120 mV was 190 ms. Single-cell expression analysis using reverse transcription followed by quantitative polymerase chain reaction revealed that BCs coexpress HCN1 and HCN2 subunit mRNA, suggesting the formation of heteromeric HCN1/2 channels. ZD 7288 increased the current threshold for evoking antidromic action potentials by extracellular stimulation, consistent with the expression of Ih in BC axons. Finally, ZD 7288 decreased the frequency of miniature inhibitory postsynaptic currents (mIPSCs) in hippocampal granule cells, the main target cells of BCs, to 70 +/- 4% of the control value. In contrast, the amplitude of mIPSCs was unchanged, consistent with the presence of Ih in inhibitory terminals. In conclusion, our results suggest that Ih channels are expressed in the somatodendritic region, axon and presynaptic elements of fast-spiking BCs in the hippocampus.

摘要

超极化激活通道(Ih或HCN通道)在中枢神经系统的主要神经元中广泛表达。然而,抑制性γ-氨基丁酸能中间神经元中的Ih特性了解较少。我们使用17至21日龄大鼠的海马切片,研究了齿状回快速放电篮状细胞(BCs)中Ih的功能特性。以30微摩尔浓度浴用Ih通道阻滞剂ZD 7288可诱导5.7±1.5毫伏的超极化、输入电阻增加以及表观膜时间常数的相应增加。ZD 7288以浓度依赖性方式阻断超极化激活电流(IC50为1.4微摩尔)。外部Cs +可模拟ZD 7288的作用。Ih的反转电位为-27.4毫伏,对应于Na +与K +渗透率之比(PNa / PK)为0.36。Ih激活曲线的中点电位为-83.9毫伏,在-120毫伏时的激活时间常数为190毫秒。使用逆转录随后进行定量聚合酶链反应的单细胞表达分析表明,BCs共表达HCN1和HCN2亚基mRNA,提示形成异源HCN1 / 2通道。ZD 7288增加了通过细胞外刺激诱发逆向动作电位的电流阈值,这与BC轴突中Ih的表达一致。最后,ZD 7288将BCs的主要靶细胞海马颗粒细胞中的微小抑制性突触后电流(mIPSCs)频率降低至对照值的70±4%。相比之下,mIPSCs的幅度未改变,这与抑制性终末中存在Ih一致。总之,我们的结果表明Ih通道在海马快速放电BCs的树突体区域、轴突和突触前元件中表达。

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