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大鼠脑中GABAA受体γ2短亚基和γ2长亚基的免疫细胞化学定位

Immunocytochemical localization of gamma 2 short and gamma 2 long subunits of the GABAA receptor in the rat brain.

作者信息

Gutiérrez A, Khan Z U, De Blas A L

机构信息

Division of Molecular Biology and Biochemistry, School of Biological Sciences, University of Missouri--Kansas City 64110-2499.

出版信息

J Neurosci. 1994 Nov;14(11 Pt 2):7168-79. doi: 10.1523/JNEUROSCI.14-11-07168.1994.

Abstract

The distribution of the short (gamma 2S) and long (gamma 2L) subunits of the GABAA receptors in the rat brain has been revealed by light microscopy immunocytochemistry with novel subunit-specific antibodies (anti-gamma 2S and anti-gamma 2L). We have also used other subunit-specific antibodies including anti-gamma 2IL2 (which recognizes both gamma 2S and gamma 2L), anti-alpha 1COOH, and the monoclonal antibody 62-3G1 to beta 2/3 for comparing the regional and cellular distribution of the most abundant GABAA receptor subunits in the rat brain. The distributions of gamma 2S and gamma 2L immunoreactivities are similar throughout the brain although the relative intensity of both signals varies depending on the brain area and neuronal type. In the hippocampus, cerebral cortex, and olfactory bulb (particularly mitral, periglomerular, and tufted neurons), gamma 2S was more abundant than gamma 2L. In contrast, the inferior colliculus, medulla, and the cerebellar Purkinje cells displayed more gamma 2L than gamma 2S immunolabeling. An important difference in the distribution of the various subunits was found in cerebellum: gamma 2S and gamma 2L were predominantly localized in the molecular layer, whereas alpha 1 and beta 2/3 were more abundant in the granular layer. In the thalamus, gamma 2L and gamma 2S were less abundant than either alpha 1 or beta 2/3 subunits. The results showed that there is colocalization of gamma 2S and gamma 2L subunits in some brain areas and neuronal types, as well as areas of mismatch. Colocalization and mismatches were also found among alpha 1, beta 2/3, and gamma 2, probably resulting from the heterogeneity in the subunit composition of the GABAA receptors through the brain.

摘要

利用新型亚基特异性抗体(抗γ2S和抗γ2L)通过光学显微镜免疫细胞化学方法揭示了大鼠脑中GABAA受体短(γ2S)亚基和长(γ2L)亚基的分布情况。我们还使用了其他亚基特异性抗体,包括抗γ2IL2(可识别γ2S和γ2L)、抗α1COOH以及针对β2/3的单克隆抗体62 - 3G1,以比较大鼠脑中最丰富的GABAA受体亚基的区域和细胞分布。尽管两种信号的相对强度因脑区和神经元类型而异,但γ2S和γ2L免疫反应性在整个大脑中的分布相似。在海马体、大脑皮层和嗅球(特别是二尖瓣细胞、球周细胞和簇状神经元)中,γ2S比γ2L更为丰富。相比之下,下丘、延髓和小脑浦肯野细胞显示出的γ2L免疫标记比γ2S更多。在小脑中发现了各种亚基分布的一个重要差异:γ2S和γ2L主要定位于分子层,而α1和β2/3在颗粒层中更为丰富。在丘脑中,γ2L和γ2S比α1或β2/3亚基含量更少。结果表明,在一些脑区和神经元类型中存在γ2S和γ2L亚基的共定位,以及不匹配区域。在α1、β2/3和γ2之间也发现了共定位和不匹配情况,这可能是由于大脑中GABAA受体亚基组成的异质性所致。

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