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脊髓神经元中Mg2+对NMDA反应的电压依赖性阻断。

Voltage-dependent block by Mg2+ of NMDA responses in spinal cord neurones.

作者信息

Mayer M L, Westbrook G L, Guthrie P B

出版信息

Nature. 1984;309(5965):261-3. doi: 10.1038/309261a0.

Abstract

Acidic amino acids are putative excitatory synaptic transmitters, the ionic mechanism of which is not well understood. Recent studies with selective agonists and antagonists suggest that neurones of the mammalian central nervous system possess several different receptors for acidic amino acids, which in turn are coupled to separate conductance mechanisms. N-methyl-D-aspartic acid (NMDA) is a selective agonist for one of these receptors. The excitatory action of amino acids acting at NMDA receptors is remarkably sensitive to the membrane potential and it has been suggested that the NMDA receptor is coupled to a voltage-sensitive conductance. Recently, patch-clamp experiments have shown the voltage-dependent block by Mg2+ of current flow through ion channels activated by L-glutamate. We now show using voltage-clamp experiments on mouse spinal cord neurones that the voltage-sensitivity of NMDA action is greatly reduced on the withdrawal of physiological concentrations (approximately 1 mM) of Mg2+ from the extracellular fluid. This provides further evidence that Mg2+ blocks inward current flow through ion channels linked to NMDA receptors.

摘要

酸性氨基酸被认为是兴奋性突触递质,但其离子机制尚未完全明确。近期使用选择性激动剂和拮抗剂的研究表明,哺乳动物中枢神经系统的神经元拥有几种不同的酸性氨基酸受体,这些受体又与不同的电导机制相偶联。N-甲基-D-天冬氨酸(NMDA)是其中一种受体的选择性激动剂。作用于NMDA受体的氨基酸的兴奋作用对膜电位非常敏感,有人提出NMDA受体与电压敏感性电导相偶联。最近,膜片钳实验显示Mg2+对通过L-谷氨酸激活的离子通道的电流具有电压依赖性阻断作用。我们现在通过对小鼠脊髓神经元进行电压钳实验表明,当从细胞外液中去除生理浓度(约1 mM)的Mg2+时,NMDA作用的电压敏感性会大大降低。这进一步证明Mg2+会阻断通过与NMDA受体相连的离子通道的内向电流。

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