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Removal of sodium inactivation and block of sodium channels by chloramine-T in crayfish and squid giant axons.

机译:小龙虾和鱿鱼巨型轴突中氯胺-T去除钠的失活和钠通道的阻塞。

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摘要

Modification of sodium channels by chloramine-T was examined in voltage clamped internally perfused crayfish and squid giant axons using the double sucrose gap and axial wire technique, respectively. Freshly prepared chloramine-T solution exerted two major actions on sodium channels: (a) an irreversible removal of the fast Na inactivation, and (b) a reversible block of the Na current. Both effects were observed when chloramine-T was applied internally or externally (5-10 mM) to axons. The first effect was studied in crayfish axons. We found that the removal of the fast Na inactivation did not depend on the states of the channel since the channel could be modified by chloramine-T at holding potential (from -80 to -100 mV) or at depolarized potential of -30 mV. After removal of fast Na inactivation, the slow inactivation mechanism was still present, and more channels could undergo slow inactivation. This result indicates that in crayfish axons the transition through the fast inactivated state is not a prerequisite for the slow inactivation to occur. During chloramine-T treatment, a distinct blocking phase occurred, which recovered upon washing out the drug. This second effect of chloramine-T was studied in detail in squid axons. After 24 h, chloramine-T solution lost its ability to remove fast inactivation but retained its blocking action. After removal of the fast Na inactivation, both fresh and aged chloramine-T solutions blocked the Na currents with a similar potency and in a voltage-dependent manner, being more pronounced at lower depolarizing potentials. A similar voltage-dependent block was observed with aged chloramine-T solution in an axon with intact inactivation. In contrast to the action of the fresh solution, the aged chloramine-T solution was found to accelerate the decay of Na currents.These results suggest that chloramine-T solution contains at least two active molecular forms that act at different sites in the Na channel.
机译:分别使用双蔗糖间隙和轴向线技术在电压钳制的内部灌注小龙虾和鱿鱼巨型轴突中检测了氯胺-T对钠通道的修饰作用。新鲜制备的氯胺-T溶液对钠通道产生了两个主要作用:(a)不可逆地去除快速的Na失活,和(b)可逆地阻断Na电流。当内部或外部(5-10 mM)将氯胺-T应用于轴突时,均会观察到两种效果。在小龙虾轴突中研究了第一个作用。我们发现快速Na失活的去除并不取决于通道的状态,因为通道可以在保持电势(从-80到-100 mV)或在去极化电势为-30 mV的条件下被氯胺T修饰。除去快速的Na失活后,仍然存在慢的失活机制,并且更多的通道可能经历慢的失活。该结果表明在小龙虾轴突中,通过快速失活状态的转变不是缓慢失活发生的先决条件。在氯胺-T治疗期间,发生了明显的阻断阶段,该阶段在洗出药物后得以恢复。在鱿鱼轴突中详细研究了氯胺T的第二种作用。 24小时后,氯胺-T溶液失去了去除快速灭活的能力,但保留了其阻断作用。除去快速的Na灭活后,新鲜的和老化的氯胺T溶液都以相似的效力和电压依赖性方式阻断Na电流,在较低的去极化电位下更为明显。在完整失活的轴突中,使用老化的氯胺-T溶液观察到类似的电压依赖性阻滞。与新鲜溶液的作用相反,发现老化的氯胺-T溶液会加速Na电流的衰减,这些结果表明氯胺-T溶液至少包含两种活性分子形式,分别作用于Na通道的不同位置。

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