Sandow A, Pagala M K
J Membr Biol. 1978 Jul 18;41(4):309-21. doi: 10.1007/BF01871995.
Detubulation of the untreated fiber decreases the time constant of the action potential's foot (tauf) and increases the maximal rate of rise of the spike (Vmax). Zinc at all concentrations, and regardless of whether the fiber is intact or detubulated, increases tauf and decreases Vmax, and thus seems to decrease Na activation of the fiber. Detubulation was used principally to elucidate the localization and mechanism of the Zn2+-induced retardation of the falling phase of the frog sartorius fiber action potential, which evidently results from a general depression of delayed rectification. At 50 to 1000 mum, Zn2+ not only prolongs repolarization of intact fibers (measured by increase in t0.5, the half-time of the spike's fall), but also produces a marked hump early in this phase. Detubulation of zinc-free fibers reduces t0.5 to about 80% of its intact value, and under Zn2+ treatment t0.5 is increased but only to about 80% of that produced in the inus, detubulation decreases t0.5 in Zn2+-treated fibers not only to about 80% of that produced in the intact fiber, and the falling-phase hump is completely obliterated. Thus, detubulation decreases t0.5 in Zn2+-treated fibers not only by generally eliminating T-tubular participation in action potential generation, but also by subtracting a Zn2+-induced retardation of tubular delayed rectification. Tubular delayed rectification must therefore be an intrinsic feature of normal excitation. These results are further analyzed by means of (i) Stanfield's findings about retardation of delayed rectification by Zn2+ and (ii) Adrian-Peachey's theory of T-tubule participation in action potential generation, which suggests that the Zn2+-evoked repolarization hump signals onset of Zn2+-altered active participation of T-tubules in determining the spike's shape.
未处理纤维的去管化降低了动作电位起始段的时间常数(tauf),并增加了峰电位的最大上升速率(Vmax)。无论纤维是否完整,所有浓度的锌都会增加tauf并降低Vmax,因此似乎会降低纤维的钠激活。去管化主要用于阐明锌离子诱导的青蛙缝匠肌纤维动作电位下降相延迟的定位和机制,这显然是由于延迟整流的普遍抑制所致。在50至1000μm时,锌离子不仅延长了完整纤维的复极化(通过t0.5增加来衡量,即峰电位下降的半衰期),而且在该阶段早期还产生了明显的驼峰。无锌纤维的去管化将t0.5降低至其完整值的约80%,在锌离子处理下,t0.5增加但仅至在完整纤维中产生的值的约80%,去管化使锌离子处理的纤维中的t0.5不仅降低至完整纤维中产生的值的约80%,并且下降相驼峰完全消失。因此,去管化降低锌离子处理纤维中的t0.5,不仅是通过总体上消除T小管参与动作电位的产生,还通过减去锌离子诱导的小管延迟整流的延迟。因此,小管延迟整流必定是正常兴奋的一个内在特征。通过(i)斯坦菲尔德关于锌离子对延迟整流的延迟作用的发现以及(ii)阿德里安 - 皮奇关于T小管参与动作电位产生的理论,对这些结果进行了进一步分析,该理论表明锌离子诱发的复极化驼峰标志着锌离子改变的T小管在决定峰电位形状方面的主动参与的开始。