Kuba K, Morita K, Nohmi M
Pflugers Arch. 1983 Nov;399(3):194-202. doi: 10.1007/BF00656714.
The origin of Ca2+ that activates the Ca2+-dependent K+ conductance which is responsible for the slow afterhyperpolarization (a.h.p.) following an action potential was studied in bullfrog sympathetic ganglia. The decay phase of the a.h.p. was a graded function of the extracellular Ca2+, and showed a voltage sensitivity opposite to that of the Ca2+-dependent K+-current reported previously (Pallotta et al. 1981), indicating that it reflected the time course of an increase in intracellular free Ca2+. An a.h.p. of longer duration was generated in cells which showed more pronounced rhythmic hyperpolarizations induced by intracellular Ca2+ release. The duration of the a.h.p. recorded with electrodes filled with K3-citrate [a.h.p. (citrate)], which favors Ca2+ release, was longer than the a.h.p. recorded with KCl-filled electrodes [a.h.p. (C1)]. D-600 (50-100 microM) drastically reduced the a.h.p. (C1), but had less effect on the a.h.p. (citrate). Caffeine which facilitates Ca2+ release prolonged the a.h.p. (C1), but had less effect on the a.h.p. (citrate). The a.h.p. (citrate) showed a greater sensitivity to a low temperature than the a.h.p. (C1). Mn2+ (1-3 mM) depressed both types of a.h.ps to the same extent. These results suggest that the origin of intracellular Ca2+ for a.h.p. (C1) is mainly Ca2+ influx during an action potential, while that for the a.h.p. (citrate) is both Ca2+ entry and intracellular Ca2+ release, although the effect of Mn2+ is difficult to explain fully.
在牛蛙交感神经节中,研究了激活钙依赖性钾电导的钙离子来源,该电导负责动作电位后的缓慢超极化后电位(a.h.p.)。a.h.p.的衰减阶段是细胞外钙离子的分级函数,并且显示出与先前报道的钙依赖性钾电流相反的电压敏感性(Pallotta等人,1981),这表明它反映了细胞内游离钙离子增加的时间进程。在由细胞内钙离子释放诱导出更明显的节律性超极化的细胞中,产生了持续时间更长的a.h.p.。用充满柠檬酸钾的电极记录的a.h.p.(柠檬酸盐)的持续时间比用充满氯化钾的电极记录的a.h.p.(C1)长,柠檬酸钾有利于钙离子释放。D - 600(50 - 100 microM)显著降低了a.h.p.(C1),但对a.h.p.(柠檬酸盐)的影响较小。促进钙离子释放的咖啡因延长了a.h.p.(C1),但对a.h.p.(柠檬酸盐)的影响较小。a.h.p.(柠檬酸盐)比a.h.p.(C1)对低温更敏感。Mn2 +(1 - 3 mM)同等程度地抑制了两种类型的a.h.p.。这些结果表明,a.h.p.(C1)的细胞内钙离子来源主要是动作电位期间的钙离子内流,而a.h.p.(柠檬酸盐)的来源是钙离子内流和细胞内钙离子释放两者,尽管Mn2 +的作用难以完全解释。