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GABAB受体介导的下丘脑和皮质神经元发育过程中谷氨酸激活的钙瞬变调节。

GABAB receptor-mediated regulation of glutamate-activated calcium transients in hypothalamic and cortical neuron development.

作者信息

Obrietan K, van den Pol A N

机构信息

Department of Biological Science, Stanford University, Stanford, California 94305, USA.

出版信息

J Neurophysiol. 1999 Jul;82(1):94-102. doi: 10.1152/jn.1999.82.1.94.

Abstract

In the mature nervous system excitatory neurotransmission mediated by glutamate is balanced by the inhibitory actions of GABA. However, during early development, GABA acting at the ligand-gated GABAA Cl- channel also exerts excitatory actions. This raises a question as to whether GABA can exert inhibitory activity during early development, possibly by a mechanism that involves activation of the G protein-coupled GABAB receptor. To address this question we used Ca2+ digital imaging to assess the modulatory role of GABAB receptor signaling in relation to the excitatory effects of glutamate during hypothalamic and cortical neuron development. Ca2+ transients mediated by synaptic glutamate release in neurons cultured from embryonic rat were dramatically depressed by the administration of the GABAB receptor agonist baclofen in a dose-dependent manner. The inhibitory effects of GABAB receptor activation persisted for the duration of baclofen administration (>10 min). Preincubation with the Gi protein inhibitor pertussis toxin resulted in a substantial decrease in the inhibitory actions of baclofen, confirming that a Gi-dependent mechanism mediated the effects of the GABAB receptor. Co-administration of the GABAB receptor antagonist 2-hydroxy-saclofen eliminated the inhibitory action of baclofen. Alone, GABAB antagonist application elicited a marked potentiation of Ca2+ transients mediated by glutamatergic neurotransmission, suggesting that tonic synaptic GABA release exerts an inhibitory tone on glutamate receptor-mediated Ca2+ transients via GABAB receptor activation. In the presence of TTX to block action potential-mediated neurotransmitter release, stimulation with exogenously applied glutamate triggered a robust postsynaptic Ca2+ rise that was dramatically depressed (>70% in cortical neurons, >40% in hypothalamic neurons) by baclofen. Together these data suggest both a pre- and postsynaptic component for the modulatory actions of the GABAB receptor. These results indicate a potentially important role for the GABAB receptor as a modulator of the excitatory actions of glutamate in developing neurons.

摘要

在成熟的神经系统中,由谷氨酸介导的兴奋性神经传递通过γ-氨基丁酸(GABA)的抑制作用来实现平衡。然而,在发育早期,作用于配体门控GABAA氯离子通道的GABA也会发挥兴奋作用。这就引发了一个问题,即GABA在发育早期是否能通过涉及激活G蛋白偶联GABAB受体的机制发挥抑制活性。为了解决这个问题,我们使用钙离子数字成像技术来评估GABAB受体信号传导在下丘脑和皮层神经元发育过程中对谷氨酸兴奋作用的调节作用。在胚胎大鼠培养的神经元中,由突触谷氨酸释放介导的钙离子瞬变被GABAB受体激动剂巴氯芬以剂量依赖的方式显著抑制。GABAB受体激活的抑制作用在巴氯芬给药期间(>10分钟)持续存在。用Gi蛋白抑制剂百日咳毒素预孵育导致巴氯芬的抑制作用大幅降低,证实了Gi依赖的机制介导了GABAB受体的作用。同时给予GABAB受体拮抗剂2-羟基-巴氯芬消除了巴氯芬的抑制作用。单独应用GABAB拮抗剂可显著增强由谷氨酸能神经传递介导的钙离子瞬变,这表明持续性突触GABA释放通过激活GABAB受体对谷氨酸受体介导的钙离子瞬变施加抑制性调节。在存在河豚毒素(TTX)以阻断动作电位介导的神经递质释放的情况下,用外源性谷氨酸刺激引发了强烈的突触后钙离子升高,而巴氯芬可显著抑制这种升高(皮层神经元中>70%,下丘脑神经元中>40%)。这些数据共同表明GABAB受体的调节作用存在突触前和突触后成分。这些结果表明GABAB受体作为发育中神经元谷氨酸兴奋作用的调节剂可能具有重要作用。

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