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N-甲基-D-天冬氨酸受体甘氨酸结合位点与谷氨酸结合位点之间的相互作用。

Interactions between the glycine and glutamate binding sites of the NMDA receptor.

作者信息

Lester R A, Tong G, Jahr C E

机构信息

Vollum Institute, Oregon Health Sciences University, Portland 97201-3098.

出版信息

J Neurosci. 1993 Mar;13(3):1088-96. doi: 10.1523/JNEUROSCI.13-03-01088.1993.

Abstract

The interactions between the glycine and glutamate binding sites of the NMDA receptor have been studied in outside-out patches and synapses from hippocampal neurons in culture using rapid drug application techniques. Desensitization of NMDA receptor-mediated currents elicited by glutamate in newly excised outside-out patches was reduced in the presence of saturating concentrations of glycine. This suggests that the glutamate and glycine binding sites of the NMDA receptor are allosterically coupled as has been reported in whole-cell preparations. A glycine-insensitive form of desensitization increased rapidly over the first few minutes of recording and largely occluded the glycine concentration-sensitive desensitization in outside-out patches. However, even in old patches that displayed no glycine-sensitive desensitization, the unbinding rate of glycine was increased fourfold by the presence of glutamate, suggesting that the two binding sites were still allosterically coupled. These data suggest the existence of two forms of NMDA receptor desensitization in outside-out patches, only one of which is dependent on the concentration of glycine. In the presence of saturating levels of glycine, activation of NMDA receptors by synaptic stimulation or by exogenous glutamate resulted in currents that relaxed biexponentially. Addition of the partial glycine-site agonist 1-hydroxy-3-aminopyrrolid-2-one (HA-966) increased the rate of decay of both synaptic and patch currents. This suggests that HA-966 increases the dissociation rate of glutamate from NMDA receptors. These results support the hypothesis that the glutamate and glycine binding sites of NMDA receptors interact allosterically; ligand binding at both types of sites can affect the affinity of the other type for its agonist.

摘要

利用快速药物施加技术,在培养的海马神经元的外向型膜片和突触中,研究了NMDA受体的甘氨酸结合位点与谷氨酸结合位点之间的相互作用。在新切除的外向型膜片中,当存在饱和浓度的甘氨酸时,由谷氨酸引发的NMDA受体介导电流的脱敏作用减弱。这表明,如在全细胞制备中所报道的那样,NMDA受体的谷氨酸结合位点和甘氨酸结合位点是变构偶联的。一种对甘氨酸不敏感的脱敏形式在记录的最初几分钟内迅速增加,并在很大程度上掩盖了外向型膜片中对甘氨酸浓度敏感的脱敏作用。然而,即使在没有甘氨酸敏感脱敏作用的旧膜片中,谷氨酸的存在也使甘氨酸的解离速率增加了四倍,这表明两个结合位点仍然是变构偶联的。这些数据表明,在外向型膜片中存在两种形式的NMDA受体脱敏作用,其中只有一种依赖于甘氨酸的浓度。在存在饱和水平甘氨酸的情况下,通过突触刺激或外源性谷氨酸激活NMDA受体会导致电流呈双指数衰减。添加部分甘氨酸位点激动剂1-羟基-3-氨基吡咯烷-2-酮(HA-966)可增加突触电流和膜片电流的衰减速率。这表明HA-966增加了谷氨酸从NMDA受体的解离速率。这些结果支持了NMDA受体的谷氨酸结合位点和甘氨酸结合位点变构相互作用的假说;两种类型位点上的配体结合均可影响另一种类型位点对其激动剂的亲和力。

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