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大鼠海马锥体神经元上的突触外αβ亚基GABAA受体

Extrasynaptic alphabeta subunit GABAA receptors on rat hippocampal pyramidal neurons.

作者信息

Mortensen Martin, Smart Trevor G

机构信息

Department of Pharmacology, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

J Physiol. 2006 Dec 15;577(Pt 3):841-56. doi: 10.1113/jphysiol.2006.117952. Epub 2006 Oct 5.

Abstract

Extrasynaptic GABA(A) receptors that are tonically activated by ambient GABA are important for controlling neuronal excitability. In hippocampal pyramidal neurons, the subunit composition of these extrasynaptic receptors may include alpha5betagamma and/or alpha4betadelta subunits. Our present studies reveal that a component of the tonic current in the hippocampus is highly sensitive to inhibition by Zn(2+). This component is probably not mediated by either alpha5betagamma or alpha4betadelta receptors, but might be explained by the presence of alphabeta isoforms. Using patch-clamp recording from pyramidal neurons, a small tonic current measured in the absence of exogenous GABA exhibited both high and low sensitivity to Zn(2+) inhibition (IC(50) values, 1.89 and 223 microm, respectively). Using low nanomolar and micromolar GABA concentrations to replicate tonic currents, we identified two components that are mediated by benzodiazepine-sensitive and -insensitive receptors. The latter indicated that extrasynaptic GABA(A) receptors exist that are devoid of gamma2 subunits. To distinguish whether the benzodiazepine-insensitive receptors were alphabeta or alphabetadelta isoforms, we used single-channel recording. Expressing recombinant alpha1beta3gamma2, alpha5beta3gamma2, alpha4beta3delta and alpha1beta3 receptors in human embryonic kidney (HEK) or mouse fibroblast (Ltk) cells, revealed similar openings with high main conductances (approximately 25-28 pS) for gamma2 or delta subunit-containing receptors whereas alphabeta receptors were characterized by a lower main conductance state (approximately 11 pS). Recording from pyramidal cell somata revealed a similar range of channel conductances, indicative of a mixture of GABA(A) receptors in the extrasynaptic membrane. The lowest conductance state (approximately 11 pS) was the most sensitive to Zn(2+) inhibition in accord with the presence of alphabeta receptors. This receptor type is estimated to account for up to 10% of all extrasynaptic GABA(A) receptors on hippocampal pyramidal neurons.

摘要

由周围环境中的γ-氨基丁酸(GABA)持续激活的突触外GABA(A)受体对于控制神经元兴奋性很重要。在海马锥体细胞中,这些突触外受体的亚基组成可能包括α5βγ和/或α4βδ亚基。我们目前的研究表明,海马中持续电流的一个成分对锌离子(Zn(2+))的抑制高度敏感。该成分可能不是由α5βγ或α4βδ受体介导的,而可能由αβ亚型的存在来解释。使用来自锥体细胞的膜片钳记录,在没有外源性GABA的情况下测量到的一个小的持续电流对Zn(2+)抑制表现出高敏感性和低敏感性(半数抑制浓度(IC(50))值分别为1.89和223微摩尔)。使用低纳摩尔和微摩尔浓度的GABA来复制持续电流,我们确定了由苯二氮䓬敏感和不敏感受体介导的两个成分。后者表明存在缺乏γ2亚基的突触外GABA(A)受体。为了区分苯二氮䓬不敏感受体是αβ还是αβδ亚型,我们使用了单通道记录。在人胚肾(HEK)或小鼠成纤维细胞(Ltk)中表达重组α1β3γ2、α5β3γ2、α4β3δ和α1β3受体,发现含有γ2或δ亚基的受体具有相似的开放状态,主要电导较高(约25 - 28皮安),而αβ受体的特征是主要电导状态较低(约11皮安)。从锥体细胞胞体记录显示出类似范围的通道电导,表明突触外膜中存在混合的GABA(A)受体。最低电导状态(约11皮安)对Zn(2+)抑制最敏感,这与αβ受体的存在一致。据估计,这种受体类型占海马锥体细胞上所有突触外GABA(A)受体的比例高达10%。

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