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NMDA-mediated modulation of gamma-aminobutyric acid type A receptor function in cerebellar granule neurons

机译:NMDA介导小脑颗粒神经元中的γ-氨基丁酸A型受体功能的调节

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摘要

GABAA receptors are ligand-gated CI- ion channels with multiple clinically relevant drug-recognition sites. We have previously shown that stimulation of N-methyl-D-aspartic acid (NMDA)-specific glutamate receptors quantitatively alters selected GABAA receptor subunit mRNAs and proteins in primary cultures of rat cerebellar granule neurons. We used whole-cell recordings of GABA-elicited CI- currents and flunitrazepam binding experiments in granule cell cultures maintained in low K+ (12.5 mM), cells maintained in low K+ and treated with a single dose of NMDA (10 microM), and cell cultures maintained in depolarizing concentrations of K+ (25 mM). The EC50 obtained from the dose-response curves for GABA in eliciting a maximal response was comparable in neurons maintained in high K+ or in low K+ and treated with a single dose of NMDA, but that it increased significantly in cells maintained in low K+. The potentiation of GABA-gated CI- currents by flunitrazepam increased significantly, while the negative allosteric modulator methyl-6,7-dimethoxy-4-ethyl-beta-carboline-3-carboxylate (DMCM) was significantly more effective in cultures either maintained in high K+ or treated with NMDA. This was coincident with a twofold increase in the Bmax associated with flunitrazepam binding. To further characterize the receptor assemblies present in the depolarization and NMDA induced paradigms, the Zn(2+)-induced inhibition of GABA-gated CI- currents was reduced as was the inhibition mediated by furosemide. Our data indicate that GABAA receptor assemblies alter their composition in response to excitatory afferent receptor stimulation.
机译:GABAA受体是具有多个临床相关药物识别位点的配体门控CI离子通道。我们以前已经表明,对N-甲基-D-天冬氨酸(NMDA)特异性谷氨酸受体的刺激定量改变了大鼠小脑颗粒神经元原代培养物中的所选GABAA受体亚基mRNA和蛋白质。我们在维持在低K +(12.5 mM)的颗粒细胞培养物中,在维持在低K +的细胞中和单剂量NMDA(10 microM)处理的颗粒细胞培养物中使用了GABA引发的CI电流的全细胞记录和氟尼西epa结合实验。培养物保持去极化浓度的K +(25 mM)。从GABA引起最大响应的剂量反应曲线获得的EC50在高K +或低K +维持的神经元中并用单剂量NMDA处理可比较,但在低K +维持的细胞中EC50显着增加。氟硝西epa对GABA门控的CI电流的增强作用显着增加,而负变构调节剂甲基6,7,7-二甲氧基-4-乙基-β-咔啉-3-羧酸盐(DMCM)在维持于高K +或用NMDA处理。这与氟尼西epa结合相关的Bmax增加两倍。为了进一步表征存在于去极化和NMDA诱导范式中的受体装配,减少了Zn(2+)诱导的对GABA门控CI电流的抑制作用,减少了呋塞米所介导的抑制作用。我们的数据表明,GABAA受体装配响应兴奋性传入受体刺激而改变其组成。

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