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四种超极化激活起搏通道在心脏和神经组织中的细胞表达及功能特性

Cellular expression and functional characterization of four hyperpolarization-activated pacemaker channels in cardiac and neuronal tissues.

作者信息

Moosmang S, Stieber J, Zong X, Biel M, Hofmann F, Ludwig A

机构信息

Institut für Pharmakologie und Toxikologie, Technische Universität München, Germany.

出版信息

Eur J Biochem. 2001 Mar;268(6):1646-52. doi: 10.1046/j.1432-1327.2001.02036.x.

DOI:10.1046/j.1432-1327.2001.02036.x
PMID:11248683
Abstract

Hyperpolarization-activated cation currents (I(h)) have been identified in cardiac pacemaker cells and a variety of central and peripheral neurons. Four members of a gene family encoding hyperpolarization-activated, cyclic nucleotide-gated cation channels (HCN1--4) have been cloned recently. Native I(h) currents recorded from different cell types exhibit distinct activation kinetics. To determine if this diversity of I(h) currents may be caused by differential expression of HCN channel isoforms, we investigated the cellular distribution of the transcripts of HCN1--4 in the murine sinoatrial node, retina and dorsal root ganglion (DRG) by in situ hybridization. In the sinoatrial node, the most prominently expressed HCN channel is HCN4, whereas HCN2 and HCN1 are detected there at moderate and low levels, respectively. Retinal photoreceptors express high levels of HCN1, whereas HCN2, 3 and 4 were not found in these cells. In DRG neurons, the dominant HCN transcript is HCN1, followed by HCN2. We next determined the functional properties of recombinant HCN1--4 channels expressed in HEK293 cells. All four channel types gave rise to I(h) currents but displayed marked differences in their activation kinetics. Our results suggest that the heterogeneity of native I(h) currents is generated, at least in part, by the tissue-specific expression of HCN channel genes.

摘要

超极化激活的阳离子电流(I(h))已在心脏起搏细胞以及多种中枢和外周神经元中被发现。最近,一个编码超极化激活的环核苷酸门控阳离子通道(HCN1 - 4)的基因家族的四个成员已被克隆。从不同细胞类型记录到的天然I(h)电流表现出不同的激活动力学。为了确定这种I(h)电流的多样性是否可能由HCN通道亚型的差异表达引起,我们通过原位杂交研究了HCN1 - 4转录本在小鼠窦房结、视网膜和背根神经节(DRG)中的细胞分布。在窦房结中,表达最显著的HCN通道是HCN4,而HCN2和HCN1在那里分别以中等和低水平被检测到。视网膜光感受器表达高水平的HCN1,而在这些细胞中未发现HCN2、3和4。在DRG神经元中,主要的HCN转录本是HCN1,其次是HCN2。接下来,我们确定了在HEK293细胞中表达的重组HCN1 - 4通道的功能特性。所有四种通道类型都产生了I(h)电流,但在它们的激活动力学方面表现出明显差异。我们的结果表明,天然I(h)电流的异质性至少部分是由HCN通道基因的组织特异性表达产生的。

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