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N-甲基-D-天冬氨酸受体相关离子通道复合物的变构调节以及乙醇对乙醇戒断惊厥易感和抗性小鼠的影响。

Allosteric regulation of the N-methyl-D-aspartate receptor-linked ion channel complex and effects of ethanol in ethanol-withdrawal seizure-prone and -resistant mice.

作者信息

Carter L A, Belknap J K, Crabbe J C, Janowsky A

机构信息

Research Service, Department of Veterans Affairs Medical Center, Portland, OR 97201.

出版信息

J Neurochem. 1995 Jan;64(1):213-9. doi: 10.1046/j.1471-4159.1995.64010213.x.

Abstract

The effects of ethanol, glycine, and spermidine on the specific binding of [3H]MK-801 were characterized in Triton-treated membranes prepared from the hippocampus and cortex of ethanol-withdrawal seizure-prone (WSP) and -resistant (WSR) mice. Glycine, an allosteric agonist at the NMDA receptor-linked ion channel complex, caused an increase in specific [3H]MK-801 binding to hippocampal membrane preparations. There were no significant differences in EC50 values between the selected lines for the effect of glycine (WSP, 391.7 +/- 48.4 nM; WSR, 313.4 +/- 77 nM) in the presence of 10 microM NMDA or in the maximal response to the agonist (WSP, 1.75 +/- 0.26 pmol/mg of protein; WSR, 1.67 +/- 0.22 pmol/mg of protein). The EC50 values for the spermidine-induced increase in [3H]MK-801 binding in membranes from hippocampus in the absence (WSP, 11.7 +/- 0.83 microM; WSR, 9.98 +/- 1.29 microM) or in the presence of 10 microM glycine and 10 microM NMDA (WSP, 2.1 +/- 0.35 microM; WSR, 2.37 +/- 0.42 microM) also did not differ. Similar results were obtained in cortical membranes. Saturation isotherms indicated that there was no difference in the density of [3H]MK-801 binding sites, or in their affinity for the radioligand, between the mouse lines. In addition, administration of ethanol by inhalation (24 h) to WSP and WSR mice did not cause an increase in the density of [3H]MK-801 binding sites, and there was no difference in the density or affinity of binding sites between the mouse lines.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在由易发生乙醇戒断性癫痫(WSP)和抗乙醇戒断性癫痫(WSR)小鼠的海马体和皮质制备的经 Triton 处理的膜中,研究了乙醇、甘氨酸和亚精胺对[3H]MK - 801 特异性结合的影响。甘氨酸作为 NMDA 受体相关离子通道复合物的变构激动剂,可使海马体膜制剂中[3H]MK - 801 的特异性结合增加。在存在 10 μM NMDA 时,甘氨酸作用的 EC50 值在所选品系之间无显著差异(WSP,391.7±48.4 nM;WSR,313.4±77 nM),对激动剂的最大反应也无差异(WSP,1.75±0.26 pmol/mg 蛋白质;WSR,1.67±0.22 pmol/mg 蛋白质)。在不存在(WSP,11.7±0.83 μM;WSR,9.98±1.29 μM)或存在 10 μM 甘氨酸和 10 μM NMDA(WSP,2.1±0.35 μM;WSR,2.37±0.42 μM)的情况下,亚精胺诱导海马体膜中[3H]MK - 801 结合增加的 EC50 值也无差异。在皮质膜中获得了类似结果。饱和等温线表明,小鼠品系之间[3H]MK - 801 结合位点的密度及其对放射性配体的亲和力没有差异。此外,对 WSP 和 WSR 小鼠进行吸入乙醇(24 小时)处理,并未导致[3H]MK - 801 结合位点密度增加,小鼠品系之间结合位点的密度或亲和力也无差异。(摘要截断于 250 字)

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