Takahashi T, Feldmeyer D, Suzuki N, Onodera K, Cull-Candy S G, Sakimura K, Mishina M
Department of Neurophysiology, Institute for Brain Research, University of Tokyo, Japan.
J Neurosci. 1996 Jul 15;16(14):4376-82. doi: 10.1523/JNEUROSCI.16-14-04376.1996.
NMDA receptor (NMDAR) subunits epsilon 1-epsilon 4 are expressed differentially with respect to brain region and ontogenic period, but their functional roles still are unclear. We have compared an epsilon 1 subunit-ablated mutant mouse with the wild-type to characterize the effect of epsilon subunit expression on NMDAR-mediated single-channel currents and synaptic currents of granule cells in cerebellar slices. Single-channel and Western blot analyses indicated that the epsilon 2 subunit disappeared gradually during the first postnatal month in both wild-type and mutant mice. Concomitantly, the voltage-dependent Mg2+ block of NMDAR-mediated EPSCs (NMDA-EPSCs) was decreased. Throughout the developmental period studied, postnatal day 7-24 (P7-P24), the decay time course of NMDA-EPSCs in epsilon 1 mutant (-/-) mice was slower than in wild-type mice. We suggest that the expression of the epsilon 3 subunit late in development is responsible for a reduction in the sensitivity of NMDA-EPSCs to block by extracellular Mg2+ and that receptors containing the epsilon 1 subunit determine the fast kinetics of the NMDA-EPSCs.
N-甲基-D-天冬氨酸受体(NMDAR)的ε1-ε4亚基在脑区和个体发育阶段的表达存在差异,但其功能作用仍不清楚。我们将ε1亚基缺失的突变小鼠与野生型小鼠进行比较,以研究ε亚基表达对小脑切片颗粒细胞中NMDAR介导的单通道电流和突触电流的影响。单通道分析和蛋白质免疫印迹分析表明,野生型和突变型小鼠出生后的第一个月内,ε2亚基逐渐消失。与此同时,NMDAR介导的兴奋性突触后电流(NMDA-EPSCs)的电压依赖性Mg2+阻断作用减弱。在整个研究的发育阶段,即出生后第7-24天(P7-P24),ε1突变型(-/-)小鼠中NMDA-EPSCs的衰减时程比野生型小鼠慢。我们认为,发育后期ε3亚基的表达导致NMDA-EPSCs对细胞外Mg2+阻断的敏感性降低,而含有ε1亚基的受体决定了NMDA-EPSCs的快速动力学。