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大鼠黑质致密部多巴胺能神经元中GABAA受体的增量电导水平。

Incremental conductance levels of GABAA receptors in dopaminergic neurones of the rat substantia nigra pars compacta.

作者信息

Guyon A, Laurent S, Paupardin-Tritsch D, Rossier J, Eugène D

机构信息

Neurobiologie Cellulaire, Institut des Neurosciences, CNRS-Universite Pierre et Marie Curie, 9 quai Saint-Bernard, F-75005 Paris, France.

出版信息

J Physiol. 1999 May 1;516 ( Pt 3)(Pt 3):719-37. doi: 10.1111/j.1469-7793.1999.0719u.x.

Abstract
  1. Molecular and biophysical properties of GABAA receptors of dopaminergic (DA) neurones of the pars compacta of the rat substantia nigra were studied in slices and after acute dissociation. 2. Single-cell reverse transcriptase-multiplex polymerase chain reaction confirmed that DA neurones contained mRNAs encoding for the alpha3 subunit of the GABAA receptor, but further showed the presence of alpha4 subunit mRNAs. alpha2, beta1 and gamma1 subunit mRNAs were never detected. Overall, DA neurones present a pattern of expression of GABAA receptor subunit mRNAs containing mainly alpha3/4beta2/3gamma3. 3. Outside-out patches were excised from DA neurones and GABAA single-channel patch-clamp currents were recorded under low doses (1-5 microM) of GABA or isoguvacine, a selective GABAA agonist. Recordings presented several conductance levels which appeared to be integer multiples of an elementary conductance of 4-5 pS. This property was shared by GABAA receptors of cerebellar Purkinje neurones recorded in slices (however, with an elementary conductance of 3 pS). Only the 5-6 lowest levels were analysed. 4. A progressive change in the distribution of occupancy of these levels was observed when increasing the isoguvacine concentration (up to 10 microM) as well as when adding zolpidem (20-200 nM), a drug acting at the benzodiazepine binding site: both treatments enlarged the occupancy of the highest conductance levels, while decreasing that of the smallest ones. Conversely, Zn2+ (10 microM), a negative allosteric modulator of GABAA receptor channels, decreased the occupancy of the highest levels in favour of the lowest ones. 5. These properties of alpha3/4beta2/3gamma3-containing GABAA receptors would support the hypothesis of either single GABAA receptor channels with multiple open states or that of a synchronous recruitment of GABAA receptor channels that could involve their clustering in the membranes of DA neurones.
摘要
  1. 对大鼠黑质致密部多巴胺能(DA)神经元的GABAA受体的分子和生物物理特性进行了切片研究和急性解离后研究。2. 单细胞逆转录酶 - 多重聚合酶链反应证实,DA神经元含有编码GABAA受体α3亚基的mRNA,但进一步显示存在α4亚基mRNA。从未检测到α2、β1和γ1亚基mRNA。总体而言,DA神经元呈现出主要包含α3/4β2/3γ3的GABAA受体亚基mRNA的表达模式。3. 从DA神经元切下外向膜片,在低剂量(1 - 5微摩尔)的GABA或异谷氨酰胺(一种选择性GABAA激动剂)下记录GABAA单通道膜片钳电流。记录呈现出几个电导水平,这些水平似乎是4 - 5皮秒基本电导的整数倍。切片中记录的小脑浦肯野神经元的GABAA受体也具有此特性(然而,基本电导为3皮秒)。仅分析了5 - 6个最低水平。4. 当增加异谷氨酰胺浓度(高达10微摩尔)以及添加唑吡坦(20 - 200纳摩尔)(一种作用于苯二氮䓬结合位点的药物)时,观察到这些水平占据分布的渐进变化:两种处理都增加了最高电导水平的占据,同时降低了最小电导水平的占据。相反,Zn2 +(10微摩尔),一种GABAA受体通道的负变构调节剂,降低了最高水平的占据,有利于最低水平。5. 这些含α3/4β2/3γ3的GABAA受体的特性将支持以下假设:要么是具有多个开放状态的单个GABAA受体通道,要么是GABAA受体通道的同步募集,这可能涉及它们在DA神经元膜中的聚集。

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