Hirano A, Sugawara M, Umezawa Y, Uchino S, Nakajima-Iijima S
Department of Chemistry, School of Science, The University of Tokyo, Japan.
Biosens Bioelectron. 2000 Jun;15(3-4):173-81. doi: 10.1016/s0956-5663(00)00058-0.
A new method for evaluating chemical selectivity of agonists to activate the N-methyl-D-aspartate (NMDA) receptor was presented by using typical agonists NMDA, L-glutamate and (2S, 3R, 4S)-2-(carboxycyclopropyl)glycine (L-CCG-IV) and the mouse epsilon1/zeta1 NMDA receptor incorporated in bilayer lipid membranes (BLMs) as an illustrative example. The method was based on the magnitude of an agonist-induced integrated single-channel current corresponding to the number of total ions passed through the open channel. The very magnitudes of the integrated single-channel currents were compared with the different BLMs as a new measure of agonist selectivity. The epsilon1/zeta1 NMDA receptor was partially purified from Chinese hamster ovary (CHO) cells expressing the epsilon1/zeta1 NMDA receptor and incorporated in BLMs formed by the tip-dip method. The agonist-induced integrated single-channel currents were obtained at 50 microM agonist concentration, where the integrated current for NMDA was shown to reach its saturated value. The obtained integrated currents were found to be (4.5 +/- 0.55) x 10(-13) C/s for NMDA, (5.8 +/- 0.72) x 10(-13) C/s for L-glutamate and (6.6 +/- 0.61) x 10(-13) C/s for L-CCG-IV, respectively. These results suggest that the agonist selectivity in terms of the total ion flux through the single epsilon1/zeta1 NMDA receptor is in the order of L-CCG-IV approximately = L-glutamate > NMDA.
以典型激动剂N-甲基-D-天冬氨酸(NMDA)、L-谷氨酸和(2S,3R,4S)-2-(羧基环丙基)甘氨酸(L-CCG-IV)以及整合于双层脂质膜(BLM)中的小鼠ε1/ζ1 NMDA受体为例,提出了一种评估激动剂激活N-甲基-D-天冬氨酸(NMDA)受体化学选择性的新方法。该方法基于激动剂诱导的积分单通道电流的大小,该电流对应于通过开放通道的总离子数。将积分单通道电流的大小与不同的双层脂质膜进行比较,作为激动剂选择性的一种新度量。从表达ε1/ζ1 NMDA受体的中国仓鼠卵巢(CHO)细胞中部分纯化ε1/ζ1 NMDA受体,并通过尖端浸涂法将其整合到双层脂质膜中。在50μM激动剂浓度下获得激动剂诱导的积分单通道电流,其中NMDA的积分电流显示达到其饱和值。发现获得的积分电流对于NMDA为(4.5±0.55)×10⁻¹³ C/s,对于L-谷氨酸为(5.8±0.72)×10⁻¹³ C/s,对于L-CCG-IV为(6.6±0.61)×10⁻¹³ C/s。这些结果表明,就通过单个ε1/ζ1 NMDA受体的总离子通量而言,激动剂选择性的顺序为L-CCG-IV≈L-谷氨酸>NMDA。