首页> 外文期刊>The Journal of Comparative Neurology >Differential localization of gamma-aminobutyric acid type A and glycine receptor subunits and gephyrin in the human pons, medulla oblongata and uppermost cervical segment of the spinal cord: an immunohistochemical study.
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Differential localization of gamma-aminobutyric acid type A and glycine receptor subunits and gephyrin in the human pons, medulla oblongata and uppermost cervical segment of the spinal cord: an immunohistochemical study.

机译:γ氨基丁酸A型和甘氨酸受体亚基和gephyrin在人脑桥,延髓和脊髓最颈段的差异化定位:一项免疫组织化学研究。

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摘要

Gephyrin is a multifunctional protein responsible for the clustering of glycine receptors (GlyR) and gamma-aminobutyric acid type A receptors (GABA(A)R). GlyR and GABA(A)R are heteropentameric chloride ion channels that facilitate fast-response, inhibitory neurotransmission in the mammalian brain and spinal cord. We investigated the immunohistochemical distribution of gephyrin and the major GABA(A)R and GlyR subunits in the human light microscopically in the rostral and caudal one-thirds of the pons, in the middle and caudal one-thirds of the medulla oblongata, and in the first cervical segment of the spinal cord. The results demonstrate a widespread pattern of immunoreactivity for GlyR and GABA(A)R subunits throughout these regions, including the spinal trigeminal nucleus, abducens nucleus, facial nucleus, pontine reticular formation, dorsal motor nucleus of the vagus nerve, hypoglossal nucleus, lateral cuneate nucleus, and nucleus of the solitary tract. The GABA(A)R alpha(1) and GlyR alpha(1) and beta subunits show high levels of immunoreactivity in these nuclei. The GABA(A)R subunits alpha(2), alpha(3), beta(2,3), and gamma(2) present weaker levels of immunoreactivity. Exceptions are intense levels of GABA(A)R alpha(2) subunit immunoreactivity in the inferior olivary complex and high levels of GABA(A)R alpha(3) subunit immunoreactivity in the locus coeruleus and raphe nuclei. Gephyrin immunoreactivity is highest in the first segment of the cervical spinal cord and hypoglossal nucleus. Our results suggest that a variety of different inhibitory receptor subtypes is responsible for inhibitory functions in the human brainstem and cervical spinal cord and that gephyrin functions as a clustering molecule for major subtypes of these inhibitory neurotransmitter receptors.
机译:Gephyrin是一种多功能蛋白,负责甘氨酸受体(GlyR)和A型γ-氨基丁酸受体(GABA(A)R)的聚集。 GlyR和GABA(A)R是杂五聚氯离子通道,可促进哺乳动物大脑和脊髓中的快速反应,抑制性神经传递。我们用显微镜观察了人眼中头尾和尾部三分之一,延髓中部和尾部三分之一,以及延髓的三分之一中gephyrin以及主要GABA(A)R和GlyR亚基在人体光中的免疫组织化学分布。脊髓的第一颈段。结果表明,在这些区域中,包括脊髓三叉神经核,外展核,面核,桥脑网状结构,迷走神经的背运动核,舌下核,侧楔骨的GlyR和GABA(A)R亚基的免疫反应性分布广泛核和孤立道的核。 GABA(A)R alpha(1)和GlyR alpha(1)和β亚基在这些细胞核中显示出高水平的免疫反应性。 GABA(A)R亚基alpha(2),alpha(3),beta(2,3)和gamma(2)的免疫反应性较弱。下橄榄复合体中的高水平GABA(A)R alpha(2)亚基免疫反应性和蓝绿色和点状核中高水平的GABA(A)R alpha(3)亚基免疫反应性。在颈脊髓和舌下核的第一段中,Gephyrin的免疫反应性最高。我们的结果表明,多种不同的抑制性受体亚型负责人脑干和子宫颈脊髓的抑制功能,而gephyrin则是这些抑制性神经递质受体的主要亚型的聚集分子。

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