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Inactivation of the asymmetrical displacement current in giant axons of Loligo forbesi.

机译:Loligo forbesi巨型轴突中非对称位移电流的失活。

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摘要

1. Asymmetrical displacement currents ('gating currents') have been recorded in intracellularly perfused squid giant axons by averaging the currents associated with depolarizing and hyperpolarizing pulses. The relation between 'gating current' and Na inactivation was studied by investigating the effect of pulse duration and conditioning pulses. 2. Increasing the pulse duration from 0-3-1 msec to 10-20 msec reduced the off-response of the 'gating current' to 50-70% of its normal size; the time constant was 5 msec at +20 mV and 8 degrees C. The decrease of the Na current during a 10-20 msec pulse was stronger and faster; it decayed to 10-26% with a time constant of 1-35 msec. 3. The effect of pulse duration could also be demonstrated by using only depolarizing pulses. The charge displacement at the end of single or averaged depolarizing pulses was smaller for long pulse durations than for short. A long depolarizing pulse was followed by a small long-lasting tail of inward current. 4. A conditioning depolarizing pulse of 10-20 msec duration to a potential of -30 or +10 mV, followed by a short recovery period at -70 mV, decreased the on-response of the 'gating current'. Its size was reduced to 46-71% and 61-94%, respectively, for a recovery interval of 1-75 and 5 msec at 2-3 degrees C. The reduction of the Na current, measured under similar conditions, was more pronounced; the Na current was decreased to less than 50% of its normal value. 5. The observations about the effect of pulse duration and conditioning pulses on the 'gating current' are qualitatively consistent with those of Bezanilla & Armstrong (1974, 1975) and support the view that part of the asymmetrical charge displacement is inactivated during a 10-20 msec depolarization.
机译:1.通过平均与去极化和超极化脉冲相关的电流,在细胞内灌注的鱿鱼巨轴突中记录了不对称位移电流(“门控电流”)。通过研究脉冲持续时间和调节脉冲的影响,研究了“门控电流”与Na失活之间的关系。 2.将脉冲持续时间从0-3-1毫秒增加到10-20毫秒,可将“门控电流”的关断响应减小到其正常大小的50-70%;在+20 mV和8摄氏度下,时间常数为5毫秒。在10到20毫秒的脉冲期间,Na电流的减小更强,更快。它以1-35毫秒的时间常数衰减到10-26%。 3.脉冲持续时间的影响也可以通过仅使用去极化脉冲来证明。在长脉冲持续时间内,单个或平均去极化脉冲结束时的电荷位移小于短脉冲。一个长的去极化脉冲之后是一个小的持久的内向电流尾巴。 4.持续10-20毫秒的调节去极化脉冲到-30或+10毫伏的电位,然后在-70毫伏的短暂恢复期,降低了“选通电流”的接通响应。在2-3摄氏度下恢复间隔为1-75和5毫秒时,其尺寸分别减小到46-71%和61-94%。在类似条件下测得的Na电流减小更为明显。 ; Na电流降至其正常值的50%以下。 5.关于脉冲持续时间和调节脉冲对“门控电流”的影响的观察在质量上与Bezanilla&Armstrong(1974,1975)的观点一致,并支持这样的观点,即不对称电荷位移的一部分在10- 20毫秒去极化。

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