Blair L A, Dionne V E
Nature. 1985;315(6017):329-31. doi: 10.1038/315329a0.
A developmental change in the ionic basis of the inward current of action potentials has been observed in many excitable cells. In cultured spinal neurones of Xenopus, the timing of the development of the action parallels that seen in vivo. In vitro, as in vivo, neurones initially produce action potentials of long duration which are principally Ca-dependent; after 1 day of development the impulse is brief and primarily Na-dependent. At both ages, however, both inward components are present and the mechanism underlying shortening of the action potential is unknown. One possibility is that the outward currents change during development. Using the patch-clamp technique, we have recorded single K+-channel currents in membrane patches isolated from the cell bodies of cultured embryonic neurones. The unitary conductance of one class of K+ channels was approximately 155 pS and depolarization increased the probability of a channel being open. Neither conductance nor voltage dependence seemed to change with time in culture; in contrast, the Ca2+-sensitivity of this K+ channel increased. In younger neurones, Ca2+-sensitivity was greatly reduced or absent, whereas in more mature neurones, the activity of this channel was Ca-dependent. Such a change could account for the shortening of the action potential duration by increasing the relative contribution of outward currents.
在许多可兴奋细胞中,已观察到动作电位内向电流的离子基础存在发育变化。在非洲爪蟾培养的脊髓神经元中,动作电位的发育时间与在体内观察到的情况相似。在体外,与在体内一样,神经元最初产生持续时间长的动作电位,这些动作电位主要依赖于钙;发育1天后,冲动短暂且主要依赖于钠。然而,在这两个年龄段,两种内向成分均存在,动作电位缩短的潜在机制尚不清楚。一种可能性是外向电流在发育过程中发生变化。利用膜片钳技术,我们记录了从培养的胚胎神经元细胞体分离的膜片中单个钾离子通道电流。一类钾离子通道的单位电导约为155皮安,去极化增加了通道开放的概率。在培养过程中,电导和电压依赖性似乎都不随时间变化;相反,这种钾离子通道的钙敏感性增加。在较年轻的神经元中,钙敏感性大大降低或不存在,而在较成熟的神经元中,该通道的活性依赖于钙。这种变化可能通过增加外向电流的相对贡献来解释动作电位持续时间的缩短。