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唑吡坦对单细胞内与GABA(A)受体α亚基mRNA相关的GABA反应的作用:单个神经元上存在多种功能性GABA(A)异受体的证据。

Action of zolpidem on responses to GABA in relation to mRNAs for GABA(A) receptor alpha subunits within single cells: evidence for multiple functional GABA(A) isoreceptors on individual neurons.

作者信息

Criswell H E, McCown T J, Moy S S, Oxford G S, Mueller R A, Morrow A L, Breese G R

机构信息

UNC Neuroscience Center, University of North Carolina, School of Medicine, Chapel Hill 27599, USA.

出版信息

Neuropharmacology. 1997 Nov-Dec;36(11-12):1641-52. doi: 10.1016/s0028-3908(97)00169-x.

Abstract

The relationship between zolpidem sensitivity and GABA(A) receptor alpha subunits was studied in individual dissociated neurons from rat brain. Using whole-cell recording, similar EC50 values were demonstrated for the effect of gamma-aminobutyric acid (GABA) on gated-chloride currents from substantia nigra reticulata (SNR) and lateral septal neurons. Subsequently, many neurons from both the SNR or lateral septum were found to exhibit enhanced GABA-gated chloride currents across concentrations of zolpidem ranging from 10 to 300 nM. Some neurons exhibited a greater than 20% increase in responsiveness to GABA at 30 nM of zolpidem without further increase at higher concentrations of zolpidem. Conversely, zolpidem enhancement of GABA from another group of neurons was not observed at 30 nM zolpidem, but between 100 and 300 nM the response to GABA increased greater than 20%. Finally, a third group of neurons reached both of these criteria for zolpidem enhancement of GABA. This latter spectrum of responses to GABA after varying concentrations of zolpidem was consistent with the presence of either two GABA(A) receptors or a single receptor with differing affinities for zolpidem on an individual neuron. Following determination of the sensitivity of neurons from SNR or lateral septum to zolpidem, cytoplasm was extracted from some individual cells to allow identification of cellular mRNAs for the alpha1, alpha2 and alpha3 GABA(A) receptor subunits with RT-PCR. Those neurons that responded to the 30 nM zolpidem concentration invariably expressed the alpha1-GABA(A) receptor subunit. This result is consistent with the GABA(A) alpha1-receptor subunit being an integral part of a functional high-affinity zolpidem type 1-BZD receptor complex on neurons in brain. Those neurons which showed enhancement of GABA from 100 to 300 nM zolpidem contained mRNAs for the alpha2 and/or the alpha3 receptor subunits, a finding consistent with these alpha subunits forming type 2-BZD receptors. Some individual dissociated SNR neurons were sensitive to both low and high concentrations of zolpidem and contained mRNAs for all three alpha-receptor subunits. These latter individual neurons are proposed to have at least two functional GABA(A) receptor subtypes. Thus, the present investigation emphasizes the importance of characterizing the relationship between endogenous GABA(A) receptor function and the presence of specific structural components forming GABA(A) receptor subtypes on neurons.

摘要

在来自大鼠脑的单个解离神经元中研究了唑吡坦敏感性与GABA(A)受体α亚基之间的关系。使用全细胞记录,γ-氨基丁酸(GABA)对黑质网状部(SNR)和外侧隔区神经元的门控氯离子电流的作用表现出相似的半数有效浓度(EC50)值。随后,发现来自SNR或外侧隔区的许多神经元在10至300 nM范围内的不同唑吡坦浓度下,GABA门控的氯离子电流均增强。一些神经元在30 nM唑吡坦时对GABA的反应性增加超过20%,在更高浓度的唑吡坦时没有进一步增加。相反,另一组神经元在30 nM唑吡坦时未观察到唑吡坦对GABA的增强作用,但在100至300 nM之间对GABA的反应增加超过20%。最后,第三组神经元达到了唑吡坦增强GABA的这两个标准。在不同浓度的唑吡坦后对GABA的这种反应谱与单个神经元上存在两种GABA(A)受体或对唑吡坦具有不同亲和力的单一受体一致。在确定了来自SNR或外侧隔区的神经元对唑吡坦的敏感性后,从一些单个细胞中提取细胞质,以便用逆转录聚合酶链反应(RT-PCR)鉴定α1、α2和α3 GABA(A)受体亚基的细胞信使核糖核酸(mRNA)。那些对30 nM唑吡坦浓度有反应的神经元总是表达α1-GABA(A)受体亚基。这一结果与GABA(A)α1受体亚基是脑中神经元上功能性高亲和力唑吡坦1型苯二氮䓬受体复合物的组成部分一致。那些在100至300 nM唑吡坦时显示GABA增强的神经元含有α2和/或α3受体亚基的mRNA,这一发现与这些α亚基形成2型苯二氮䓬受体一致。一些单个解离的SNR神经元对低浓度和高浓度的唑吡坦均敏感,并且含有所有三种α受体亚基的mRNA。这些单个神经元被认为至少具有两种功能性GABA(A)受体亚型。因此,本研究强调了表征内源性GABA(A)受体功能与神经元上形成GABA(A)受体亚型的特定结构成分之间关系的重要性。

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