首页> 美国卫生研究院文献>The Journal of Physiology >Voltage-clamp analysis of the potassium current that produces a negative-going action potential in Ascaris muscle.
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Voltage-clamp analysis of the potassium current that produces a negative-going action potential in Ascaris muscle.

机译:钾电流的电压钳分析在A骨肌中产生负向动作电位。

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摘要

1. A voltage clamp has been developed for the pharyngeal muscle of the nematode Ascaris lumbricoides and has been used to analyse the potassium current that produces a negative-going, regenerative action potential in this muscle. 2. Depolarizing voltage steps elicit a sustained inward current; returning the membrane voltage to the resting level evokes a strong, transient, outward current. This outward current reverses direction at the same voltage as that reached by the negative-going spike and is identified as the negative spike current. 3. The negative spike current decays with a time constant of 30 msec at voltages more negative than -30mV. This inactivation of the negative spike conductance is removed by holding the membrane at potentials more positive than -15mV. The time constant for removal of inactivation decreases from more than 300 msec at -15 mV to about 30 msec at +10 mV. 4. When inactivation has been removed, the negative spike conductance is turned on by stepping to potentials more negative than -15 mV. 5. Although the reversal potential for this current depends strongly on [K+]o (42 mV/decade), the potential at which the conductance is turned on is independent of [K+]o. 6. External Na+ seems to facilitate the negative spike current. Reduction of [Na+]o reduces its conductance and shifts the reversal potential to more positive values. 7. External Rb+ and Cs+ show voltage-dependent blocking of this current. 8. This K current is different from all the K currents which have been studied previously; however, it is analogous to the classical Na current of nerve and muscle, except for an inversion of the voltage dependencies.
机译:1.已经为线虫A虫的咽肌开发了一种电压钳,并已将其用于分析钾电流,该钾电流在该肌肉中产生负向的再生动作电位。 2.去极化电压阶跃会引起持续的内向电流;使膜片电压恢复到静止水平会产生强大的瞬态向外电流。该向外电流以与负尖峰达到的电压相同的电压反向,并被识别为负尖峰电流。 3.负尖峰电流在大于-30mV的负电压时以30毫秒的时间常数衰减。通过将膜保持在高于-15mV的正电位,可以消除负尖峰电导的这种失活。去除失活的时间常数从-15 mV时的300毫秒降低到+10 mV时的约30毫秒。 4.取消灭活后,通过步进到负于-15 mV的电位来开启负尖峰电导。 5.尽管此电流的反向电势在很大程度上取决于[K +] o(42 mV /十倍),但接通电导的电势与[K +] o无关。 6.外部Na +似乎促进了负尖峰电流。减少[Na +] o会降低其电导率,并将反转电位转换为更正的值。 7.外部Rb +和Cs +表示该电流的电压依赖性阻断。 8.该K电流不同于先前研究的所有K电流;但是,它类似于经典的神经和肌肉Na电流,除了电压依赖性的倒置。

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