Alaburda Aidas, Perrier Jean-François, Hounsgaard Jørn
Department of Medical Physiology, Panum Institute, University of Copenhagen, Copenhagen N. DK 2200, Denmark.
J Physiol. 2002 May 1;540(Pt 3):875-81. doi: 10.1113/jphysiol.2001.015982.
The excitatory action of muscarine on spinal motoneurones was investigated with intracellular recordings in a slice preparation from adult turtles. In these cells muscarine is known to facilitate a persistent inward current mediated by L-type Ca(2+) channels. When this effect was blocked by nifedipine, muscarine still increased the excitability. In voltage clamp, a slowly activating outward current, generated during depolarizing voltage commands and deactivating as a tail current on return to the holding voltage, was reduced by muscarine. This outward current was activated when the voltage was stepped to potentials positive to -60 mV, was voltage sensitive and had a deactivation time constant of approximately 80 ms. These findings are compatible with an M-current. This possibility was also supported by the finding that the current was reduced by XE-991 - a selective blocker of the KCNQ potassium channels underlying M-currents in other cell types. Our findings suggest that an M-like current, mediated by a KCNQ channel, contributes to the intrinsic response properties of motoneurones in the adult spinal cord by increasing adaptation of repetitive firing and decreasing the slope of the frequency-current relation.
利用成年海龟脑片制备技术,通过细胞内记录研究了毒蕈碱对脊髓运动神经元的兴奋作用。已知在这些细胞中,毒蕈碱可促进由L型Ca(2+)通道介导的持续性内向电流。当这种效应被硝苯地平阻断时,毒蕈碱仍能增加兴奋性。在电压钳实验中,毒蕈碱可使去极化电压指令期间产生的、在回到钳制电压时作为尾电流失活的缓慢激活外向电流减小。该外向电流在电压跃升至正于-60 mV的电位时被激活,对电压敏感,失活时间常数约为80 ms。这些发现与M电流相符。其他细胞类型中,M电流由KCNQ钾通道介导,XE-991是该通道的选择性阻滞剂,电流被XE-991减小这一发现也支持了这种可能性。我们的研究结果表明,由KCNQ通道介导的类M电流,通过增加重复放电的适应性和减小频率-电流关系的斜率,对成年脊髓运动神经元的内在反应特性有贡献。