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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Distinct signal transduction pathways for GABA-induced GABA(A) receptor down-regulation and uncoupling in neuronal culture: a role for voltage-gated calcium channels.
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Distinct signal transduction pathways for GABA-induced GABA(A) receptor down-regulation and uncoupling in neuronal culture: a role for voltage-gated calcium channels.

机译:GABA诱导的GABA(A)受体在神经元培养物中下调和解偶联的不同信号转导途径:电压门控钙通道的作用。

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Changes in GABA receptor (GABA(A)R) gene expression are detected in animal models of epilepsy, anxiety and in post-mortem schizophrenic brain, suggesting a role for GABA(A)R regulation in neurological disorders. Persistent (48 h) exposure of brain neurons in culture to GABA results in down-regulation of GABA(A)R number and uncoupling of GABA and benzodiazepine (BZD) binding sites. Given the central role of GABA(A)Rs in fast inhibitory synaptic transmission, GABA(A)R down-regulation and uncoupling are potentially important mechanisms of regulating neuronal excitability, yet the molecular mechanisms remain unknown. In this report we show that treatment of brain neurons in culture with tetrodotoxin, glutamate receptor antagonists, or depolarization with 25 mM K(+) fails to alter GABA(A)R number or coupling. Changes in neuronal activity or membrane potential are therefore not sufficient to induce either GABA(A)R down-regulation or uncoupling. Nifedipine, a voltage-gated Ca(2+) channel (VGCC) blocker, inhibits both GABA-induced increases in [Ca(2+)](i) and GABA(A)R down-regulation, suggesting that VGCC activation is required for GABA(A)R down-regulation. Depolarization with 25 mM K(+) produces a sustained increase in intracellular [Ca(2+)] without causing GABA(A)R down-regulation, suggesting that activation of VGCCs is not sufficient to produce GABA(A)R down-regulation. In contrast to GABA(A)R down-regulation, nifedipine and 25 mM K(+) fail to inhibit GABA-induced uncoupling, demonstrating that GABA-induced GABA(A)R down-regulation and uncoupling are mediated by independent molecular events. Therefore, GABA(A)R activation initiates at least two distinct signal transduction pathways, one of which involves elevation of intracellular [Ca(2+)] through VGCCs.
机译:在癫痫,焦虑和验尸后的精神分裂症脑动物模型中检测到GABA受体(GABA(A)R)基因表达的变化,表明GABA(A)R调节在神经系统疾病中的作用。持续(48 h)将培养中的大脑神经元暴露于GABA会导致GABA(A)R数量下调,GABA与苯并二氮杂(BZD)结合位点解偶联。鉴于GABA(A)Rs在快速抑制突触传递中的核心作用,GABA(A)R的下调和解偶联是调节神经元兴奋性的潜在重要机制,但分子机制仍然未知。在此报告中,我们显示了用河豚毒素,谷氨酸受体拮抗剂或用25 mM K(+)进行去极化处理文化中的大脑神经元不能改变GABA(A)R数或偶联。因此,神经元活动或膜电位的变化不足以诱导GABA(A)R下调或解偶联。硝苯地平,电压门控的Ca(2+)通道(VGCC)阻断剂,抑制GABA诱导的[Ca(2 +)](i)和GABA(A)R下调的增加,表明需要VGCC激活GABA(A)R下调。用25 mM K(+)进行去极化可产生细胞内[Ca(2+)]的持续增加,而不会引起GABA(A)R下调,这表明VGCC的激活不足以产生GABA(A)R下调。 。与GABA(A)R下调相反,硝苯地平和25 mM K(+)不能抑制GABA诱导的解偶联,表明GABA诱导的GABA(A)R下调和解偶联是由独立的分子事件介导的。因此,GABA(A)R激活启动至少两个不同的信号转导途径,其中之一涉及通过VGCC升高细胞内[Ca(2+)]。

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