首页> 外文期刊>The Journal of Comparative Neurology >GABAA-receptor heterogeneity in the adult rat brain: differential regional and cellular distribution of seven major subunits.
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GABAA-receptor heterogeneity in the adult rat brain: differential regional and cellular distribution of seven major subunits.

机译:成年大鼠大脑中的GABAA受体异质性:七个主要亚基的区域和细胞分布差异。

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摘要

GABAA-receptors display an extensive structural heterogeneity based on the differential assembly of a family of at least 15 subunits (alpha 1-6, beta 1-3, gamma 1-3, delta, rho 1-2) into distinct heteromeric receptor complexes. The subunit composition of receptor subtypes is expected to determine their physiological properties and pharmacological profiles, thereby contributing to flexibility in signal transduction and allosteric modulation. In heterologous expression systems, functional receptors require a combination of alpha-, beta-, and gamma-subunit variants, the gamma 2-subunit being essential to convey a classical benzodiazepine site to the receptor. The subunit composition and stoichiometry of native GABAA-receptor subtypes remain unknown. The aim of this study was to identify immunohistochemically the main subunit combinations expressed in the adult rat brain and to allocate them to identified neurons. The regional and cellular distribution of seven major subunits (alpha 1, alpha 2, alpha 3, alpha 5, beta 2,3, gamma 2, delta) was visualized by immunoperoxidase staining with subunit-specific antibodies (the beta 2- and beta 3-subunits were covisualized with the monoclonal antibody bd-17). Putative receptor subtypes were identified on the basis of colocalization of subunits within individual neurons, as analyzed by confocal laser microscopy in double- and triple-immunofluorescence staining experiments. The results reveal an extraordinary heterogeneity in the distribution of GABAA-receptor subunits, as evidenced by abrupt changes in immunoreactivity along well-defined cytoarchitectonic boundaries and by pronounced differences in the cellular distribution of subunits among various types of neurons. Thus, functionally and morphologically diverse neurons were characterized by a distinct GABAA-receptor subunit repertoire. The multiple staining experiments identified 12 subunit combinations in defined neurons. The most prevalent combination was the triplet alpha 1/beta 2,3/gamma 2, detected in numerous cell types throughout the brain. An additional subunit (alpha 2, alpha 3, or delta) sometimes was associated with this triplet, pointing to the existence of receptors containing four subunits. The triplets alpha 2/beta 2,3/gamma 2, alpha 3/beta 2,3/gamma 2, and alpha 5/beta 2,3/gamma 2 were also identified in discrete cell populations. The prevalence of these seven combinations suggest that they represent major GABAA-receptor subtypes. Five combinations also apparently lacked the beta 2,3-subunits, including one devoid of gamma 2-subunit (alpha 1/alpha 2/gamma 2, alpha 2/gamma 2, alpha 3/gamma 2, alpha 2/alpha 3/gamma 2, alpha 2/alpha 5/delta).(ABSTRACT TRUNCATED AT 400 WORDS)
机译:GABA A受体基于至少15个亚基(α1-6,β1-3,γ1-3,δ,rho 1-2)家族分化为不同的异源受体复合物的方式显示出广泛的结构异质性。预期受体亚型的亚基组成决定其生理特性和药理学特征,从而有助于信号转导和变构调节的灵活性。在异源表达系统中,功能性受体需要α,β和γ亚基变体的组合,γ2亚基对于将经典的苯并二氮杂位点传递至受体是必不可少的。天然GABAA受体亚型的亚基组成和化学计量仍然未知。这项研究的目的是通过免疫组织化学方法鉴定成年大鼠大脑中表达的主要亚基组合,并将其分配给已鉴定的神经元。通过亚基特异性抗体(β2和β3的免疫过氧化物酶染色)可以看到七个主要亚基(α1,α2,α3,α5,β2,3,γ2,δ)的区域和细胞分布。 -亚基与单克隆抗体bd-17共同显现。推定的受体亚型是基于单个神经元内亚基的共定位而确定的,如通过共聚焦激光显微镜在两次和三次免疫荧光染色实验中所分析的。结果表明,GABAA受体亚基的分布具有非同寻常的异质性,如沿明确定义的细胞结构边界的免疫反应性突然变化以及各种类型的神经元之间亚基的细胞分布存在明显差异所证明。因此,功能和形态上不同的神经元的特征在于独特的GABAA受体亚基组成。多次染色实验在确定的神经元中鉴定出12个亚基组合。最普遍的组合是在大脑中多种细胞类型中检测到的三联体alpha 1 / beta 2,3 / gamma 2。有时一个额外的亚基(α2,α3或δ)与此三联体相关,表明存在包含四个亚基的受体。三元组alpha 2 / beta 2,3 / gamma 2,alpha 3 / beta 2,3 / gamma 2和alpha 5 / beta 2,3 / gamma 2也被确定在离散的细胞群体中。这七个组合的流行表明它们代表了主要的GABAA受体亚型。五种组合显然也缺少beta 2,3-亚基,包括一种不含gamma 2亚基(alpha 1 / alpha 2 / gamma 2,alpha 2 / gamma 2,alpha 3 / gamma 2,alpha 2 / alpha 3 / gamma 2,alpha 2 / alpha 5 / delta)(摘要以400字截断)

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