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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Localisation of GABA(A) receptor epsilon-subunit in cholinergic and aminergic neurones and evidence for co-distribution with the theta;-subunit in rat brain.
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Localisation of GABA(A) receptor epsilon-subunit in cholinergic and aminergic neurones and evidence for co-distribution with the theta;-subunit in rat brain.

机译:GABA(A)受体ε亚基在胆碱能和胺能神经元中的定位,以及与the-;亚基在大鼠脑中共分布的证据。

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摘要

In situ hybridisation and immunohistochemical methodologies suggest the existence of a large diversity of GABA(A) receptor subtypes in the brain. These are hetero-oligomeric proteins modulated by a number of clinically important drugs, depending on their subunit composition. We recently cloned and localised the rat GABA(A) receptor epsilon-subunit by in situ hybridisation and immunohistochemical procedures. Here, in a dual-labelling immunohistochemical study in the rat brain, we used our affinity-purified antiserum to epsilon with antisera to markers of cholinergic, catecholaminergic, and serotonergic neurones. As far as cholinergic systems were concerned, epsilon-immunoreactivity was expressed in all forebrain cell-groups, as well as in the caudal lateral pontine tegmentum and dorsal motor nucleus of the vagus nerve. As far as dopaminergic systems were concerned, epsilon-immunoreactivity was found to be expressed in a great number of hypothalamic cell-groups (A15, A14 and A12) and in the substantia nigra pars compacta. The noradrenergic, and to a lesser extent, adrenergic cell-groups were all epsilon-immunoreactive. Also, epsilon-immunoreactivity was detected in all serotonergic cell-groups. We also revealed by in situ hybridisation in a monkey brain that epsilon mRNA was expressed in the locus coeruleus, as previously observed in rats. Finally, by using in situ hybridisation in rat brains, we compared the distribution of the mRNA of epsilon with that of the recently cloned theta;-subunit of the GABA(A) receptor. Both subunits showed strikingly overlapping expression patterns throughout the brain, especially in the septum, preoptic areas, various hypothalamic nuclei, amygdala, and thalamus, as well as the aforementioned monoaminergic cell-groups. No theta;-mRNA signals were detected in cholinergic cell-groups.Taken together with previously published evidence of the presence of the alpha3-subunit in monoamine- or acetylcholine-containing systems, our data suggest the existence of novel GABA(A) receptors comprising alpha3/epsilon in cholinergic and alpha3/theta;/epsilon in monoaminergic cell-groups.
机译:原位杂交和免疫组化方法学表明,大脑中存在大量GABA(A)受体亚型。这些是异源寡聚蛋白,受其临床上重要药物的调节,具体取决于其亚基组成。我们最近通过原位杂交和免疫组化程序克隆和定位了大鼠GABA(A)受体ε亚基。在这里,在大鼠脑中进行的双标记免疫组化研究中,我们使用了亲和纯化的抗ε抗血清和抗胆碱能,儿茶酚胺能和血清素能神经元标志物的抗血清。就胆碱能系统而言,ε-免疫反应性在所有前脑细胞组,以及尾外侧脑桥盖骨和迷走神经的背运动核中都有表达。就多巴胺能系统而言,发现ε-免疫反应性在大量下丘脑细胞群(A15,A14和A12)和黑质致密部中表达。去甲肾上腺素能和肾上腺素能细胞群都具有ε-免疫反应活性。另外,在所有血清素能细胞组中都检测到了ε-免疫反应性。如先前在大鼠中观察到的,我们还通过在猴脑中的原位杂交揭示了εmRNA在蓝斑中表达。最后,通过在大鼠脑中使用原位杂交,我们比较了ε的mRNA分布与最近克隆的GABA(A)受体θ-亚基的分布。这两个亚基在整个大脑中都表现出惊人的重叠表达模式,尤其是在隔膜,视前区,各种下丘脑核,杏仁核和丘脑以及上述单胺能细胞群中。在胆碱能细胞群中未检测到theta; -mRNA信号。结合先前已发表的证据,在含单胺或乙酰胆碱的系统中存在α3-亚基,我们的数据表明存在新型GABA(A)受体,包括胆碱能中的alpha3 /ε和单胺能细胞组中的alpha3 / theta; / epsilon。

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