D'Angelo E, Rossi P, Taglietti V
Institute of General Physiology, University of Pavia, Italy.
Eur J Neurosci. 1994 Apr 1;6(4):640-5. doi: 10.1111/j.1460-9568.1994.tb00309.x.
Decay kinetics of N-methyl-D-aspartate excitatory postsynaptic currents (NMDA-EPSCs) have been voltage-dependent in some, but not all neurons studied so far, and almost no information has been available on the voltage-dependence of the rising phase. In this work we investigated the effect of membrane potential on rising and decay kinetics of the NMDA-EPSC in cerebellar granule cells using the tight-seal whole-cell recording technique. NMDA-EPSCs were evoked by electrical mossy fibre stimulation in the presence of 10 microM 6-cyano-7-nitroquinoxaline-2,3-dione, 1.2 mM Mg2+ and 5 microM glycine. The rate of rise of NMDA-EPSCs remained substantially unchanged when the cell was depolarized, indicating that the limiting step of channel opening was voltage-insensitive. The NMDA-EPSC, however, flattened around the peak and the time-to-peak increased. This observation was explained by the influence of decay. Decay was biphasic and slowed down with membrane depolarization. Moreover, the fast component of decay increased less than the slow component. This complex voltage-dependence may extend the integrative role of the NMDA current during synaptic transmission.
到目前为止,在部分而非所有已研究的神经元中,N-甲基-D-天冬氨酸兴奋性突触后电流(NMDA-EPSCs)的衰减动力学呈电压依赖性,而关于上升相的电压依赖性几乎没有相关信息。在这项研究中,我们使用紧密封全细胞记录技术,研究了膜电位对小脑颗粒细胞中NMDA-EPSC上升和衰减动力学的影响。在存在10微摩尔6-氰基-7-硝基喹喔啉-2,3-二酮、1.2毫摩尔镁离子和5微摩尔甘氨酸的情况下,通过电刺激苔藓纤维诱发NMDA-EPSCs。当细胞去极化时,NMDA-EPSCs的上升速率基本保持不变,这表明通道开放的限速步骤对电压不敏感。然而,NMDA-EPSC在峰值附近变平缓,且达到峰值的时间增加。这一观察结果可以用衰减的影响来解释。衰减是双相的,并且随着膜去极化而减慢。此外,衰减的快速成分增加幅度小于慢速成分。这种复杂的电压依赖性可能会扩展NMDA电流在突触传递过程中的整合作用。