首页> 美国卫生研究院文献>The Journal of Physiology >The movement of potassium ions during electrical activity and the kinetics of the recovery process in the non-myelinated fibres of the garfish olfactory nerve.
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The movement of potassium ions during electrical activity and the kinetics of the recovery process in the non-myelinated fibres of the garfish olfactory nerve.

机译:garfish嗅觉神经的非髓鞘纤维中钾离子在电活动过程中的运动以及恢复过程的动力学。

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摘要

1. An electrophysiological study was made with the sucrose gap of the compound action potential of the non-myelinated fibres of the garfish olfactory nerve at temperatures between 8 and 22 degrees C. The efflux of 42K with stimulation, and the post-tetanic hyperpolarization following a period of repetitive stimulation, were also studied. 2. At 22 degrees C the compound action potential (at zero conduction distance) reached its peak in about 5 msec and lasted about 12 msec; the conduction velocity was 19.4 cm/sec. The corresponding extrapolated values at 0 degrees C were: time to peak, 16 msec; duration, 37 msec; conduction velocity, 4.2 cm/sec. 3. The rate constant for resting potassium efflux (kr) was 0.0108 min-1 at 22 degrees C and 0.00489 min-1 at 0 degrees C. 4. The extra fractional loss of potassium with stimulation (ks) was 2.02 x 10(-4) impulse-1 at 22 degrees C and 4.41 x 10(-4) impulse-1 at 0 degrees C. 5. Raising the external potassium concentration, or addition of ouabain (1 mM), raised the resting rate of efflux of potassium. 6. The post-tetanic hyperpolarization, which reflects the electrogenic extrusion of sodium ions, indicated a rate constant for active sodium efflux at 22 degrees C of 0.47 min=1. 7. The rate constant was decreased by a 10 degrees C fall in temperature by a factor of 1.73. 8. Increasing the external potassium concentration increased the rate constant, apparently by potassium combining with some site with an equilibrium dissociation constant of 1.2 mMM. 9. The rate constant was decreased slightly in acidic solutions and increased slightly in alkaline solutions. 10. 14C-labelled ouabain was found to bind to the garfish olfactory nerve with an equilibrium dissociation constant of about 0.5 muM. The maximum saturable binding capacity, 22.3 p-mole/mg dry, suggests that there are about 350 sodium pumping sites per square micron membrane.
机译:1.用电生理学研究了在8至22摄氏度之间温度下,鱼嗅神经的非髓鞘纤维的复合动作电位的蔗糖缺口。42K刺激下的流出和随后的强直性超极化还研究了一段时间的重复刺激。 2.在22摄氏度时,复合动作电位(在零导电距离处)在约5毫秒内达到峰值,并持续约12毫秒;传导速度为19.4 cm / sec。在0℃时相应的外推值为:峰值时间16毫秒;持续时间37毫秒;传导速度为4.2厘米/秒。 3.静息钾外流(kr)的速率常数在22摄氏度时为0.0108 min-1,在0摄氏度时为0.00489 min-1。4.刺激下钾的额外流失分数(ks)为2.02 x 10(- 4)在22摄氏度下的脉冲1和在0摄氏度下的4.41 x 10(-4)脉冲1。5.提高外部钾浓度,或添加哇巴因(1 mM),提高了钾流出的静息率。 6.反映出钠离子的电致挤压的强直后超极化表明,在22摄氏度下活性钠的外流速率常数为0.47 min = 1。 7.温度降低10摄氏度,速率常数降低1.73倍。 8.增加外部钾浓度可以增加速率常数,显然是因为钾与某些位点结合,平衡解离常数为1.2 mMM。 9.速率常数在酸性溶液中略有降低,在碱性溶液中略有提高。 10.发现14 C标记的哇巴因以约0.5μM的平衡解离常数结合到garfish嗅觉神经上。最大可饱和结合能力为22.3 p-mole / mg干重,表明每平方微米膜约有350个钠泵送位点。

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