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培养的海马锥体神经元表达两种GABAA受体。

Cultured Hippocampal Pyramidal Neurons Express Two Kinds of GABAA Receptors.

作者信息

Mangan Patrick S, Sun Chengsan, Carpenter Mackenzie, Goodkin Howard P, Sieghart Werner, Kapur Jaideep

机构信息

Department of Neurology, Box 800394, University of Virginia-HSC, Charlottesville, VA, USA.

出版信息

Mol Pharmacol. 2005 Mar;67(3):775-88. doi: 10.1124/mol.104.007385. Epub 2004 Dec 21.

Abstract

We combined a study of the subcellular distribution of the alpha1, alpha2, alpha4, beta1, beta2/3, gamma2, and delta subunits of the GABAA receptor with an electrophysiological analysis of GABAA receptor currents determine the to types of receptors expressed on cultured hippocampal pyramidal neurons. The immunocytochemistry study demonstrated that alpha1, alpha2, beta2/3, and gamma2 subunits formed distinct clusters of various sizes, which were colocalized with clusters of glutamate decarboxylase (GAD) immunoreactivity at rates ranging from 22 to 58%. In contrast, alpha4, beta1, and delta subunits were distributed diffusely over the cell soma and neuronal processes of cultured neurons and did not colocalize with the synaptic marker GAD. Whole-cell GABA receptor currents were moderately sensitive to GABAA and were modulated by diazepam. The whole-cell currents were also enhanced by the neurosteroid allopregnanolone (10 nM). Tonic currents, measured as changes in baseline current and noise, were sensitive to Zn2+, furosemide, and loreclezole; they were insensitive to diazepam. These studies suggest that two kinds of GABAA receptors are expressed on cultured hippocampal neurons. One kind of receptor formed clusters, which were present at GABAergic synapses and in the extrasynaptic membrane. The alpha1, alpha2, beta2/3, and gamma2 subunits were contained in clustered receptors. The second kind was distributed diffusely in the extrasynaptic membrane. The alpha4, beta1, and delta subunits were contained in these diffusely distributed receptors. The properties of tonic currents recorded from these neurons were similar to those from recombinant receptors containing alpha4, beta1, and delta subunits.

摘要

我们将对GABAA受体的α1、α2、α4、β1、β2/3、γ2和δ亚基的亚细胞分布研究与对GABAA受体电流的电生理分析相结合,以确定培养的海马锥体神经元上表达的受体类型。免疫细胞化学研究表明,α1、α2、β2/3和γ2亚基形成了大小各异的不同簇,这些簇与谷氨酸脱羧酶(GAD)免疫反应性簇共定位,共定位率在22%至58%之间。相比之下,α4、β1和δ亚基在培养神经元的细胞体和神经突起上呈弥漫性分布,且不与突触标记物GAD共定位。全细胞GABA受体电流对GABAA具有中等敏感性,并受地西泮调节。全细胞电流也被神经甾体别孕烯醇酮(10 nM)增强。以基线电流和噪声变化测量的强直电流对Zn2+、呋塞米和氯雷唑敏感;它们对地西泮不敏感。这些研究表明,培养的海马神经元上表达两种GABAA受体。一种受体形成簇,存在于GABA能突触和突触外膜中。簇状受体包含α1、α2、β2/3和γ2亚基。第二种受体在突触外膜中呈弥漫性分布。这些弥漫性分布的受体包含α4、β1和δ亚基。从这些神经元记录的强直电流特性与含有α4、β1和δ亚基的重组受体的特性相似。

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