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苯环己哌啶类似物对N-甲基-D-天冬氨酸受体门控的开放通道阻断及改变

Open channel block and alteration of N-methyl-D-aspartic acid receptor gating by an analog of phencyclidine.

作者信息

Dilmore J G, Johnson J W

机构信息

Department of Neuroscience, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

Biophys J. 1998 Oct;75(4):1801-16. doi: 10.1016/S0006-3495(98)77622-2.

Abstract

We investigated inhibition of the N-methyl-D-aspartic acid (NMDA) receptor-channel complex by N-ethyl-1,4,9, 9alpha-tetrahydro-4alphaR-cis-4alphaH-fluoren-++ +4alpha-amine (NEFA), a structural analog of phencyclidine (PCP). Using the whole-cell recording technique, we demonstrated that NEFA inhibits NMDA responses with an IC50 of 0.51 microM at -66 mV. We determined that NEFA binds to the open channel, and subsequently the channel can close and trap the blocker. Once the channel has closed, NEFA is unable to dissociate until the channel reopens. Single-channel recordings revealed that NEFA reduces the mean open time of single NMDA-activated channels in a concentration-dependent manner with a forward blocking rate (k+) of 39.9 microM-1 s-1. A computational model of antagonism by NEFA was developed and constrained using kinetic measurements of single-channel data. By multiple criteria, only models in which blocker binding in the channel causes a change in receptor operation adequately fit or predicted whole-cell data. By comparing model predictions and experimental measurements of NEFA action at a high NMDA concentration, we determined that NEFA affects receptor operation through an influence on channel gating. We conclude that inhibition of NMDA receptors by PCP-like blockers involves a modification of channel gating as well as block of current flow through the open channel.

摘要

我们研究了N-乙基-1,4,9,9α-四氢-4αR-顺式-4αH-芴-4α-胺(NEFA)对N-甲基-D-天冬氨酸(NMDA)受体通道复合物的抑制作用,NEFA是苯环己哌啶(PCP)的结构类似物。采用全细胞记录技术,我们证明NEFA在-66 mV时以0.51 microM的IC50抑制NMDA反应。我们确定NEFA与开放通道结合,随后通道可以关闭并捕获阻滞剂。一旦通道关闭,NEFA在通道重新开放之前无法解离。单通道记录显示,NEFA以浓度依赖的方式降低单个NMDA激活通道的平均开放时间,正向阻断率(k+)为39.9 microM-1 s-1。利用单通道数据的动力学测量结果,建立并约束了NEFA拮抗作用的计算模型。通过多个标准,只有通道中阻滞剂结合导致受体操作发生变化的模型才能充分拟合或预测全细胞数据。通过比较高NMDA浓度下NEFA作用的模型预测和实验测量结果,我们确定NEFA通过影响通道门控来影响受体操作。我们得出结论,PCP样阻滞剂对NMDA受体的抑制作用涉及通道门控的改变以及对开放通道电流流动的阻断。

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