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青蛙肌肉氯离子电导的电压依赖性。

The voltage dependence of the chloride conductance of frog muscle.

作者信息

Hutter O F, Warner A E

出版信息

J Physiol. 1972 Dec;227(1):275-90. doi: 10.1113/jphysiol.1972.sp010032.

Abstract
  1. The effect of extracellular pH changes on the voltage-current relation of frog muscle membrane has been studied using intracellular microelectrodes. To reduce the cation conductance of the membrane, potassium in Ringer solution was replaced by rubidium.2. When the relatively impermeant methyl sulphate ion replaced extracellular chloride the membrane conductance was low, time independent and little influenced by extracellular pH changes. The voltage-current relation was linear at both high and low pH values.3. In rubidium Ringer solution at pH 7.4 the membrane conductance fell as the inside of the fibre was made more negative, in a manner consistent with the predictions of the constant field theory.4. At a high pH value (9.8) the resting conductance was high, but it fell steeply as the membrane potential was increased; for large hyperpolarizing voltages the membrane current tended to a limiting value. The voltage-current relation crossed those recorded at pH 7.4 and 5.0.5. In acid Ringer solution (pH 5.0) the resting membrane conductance was low and remained constant until the membrane potential was hyperpolarized more than 30 mV beyond the resting value; the conductance then rose as the membrane potential was further increased. For large hyperpolarizations the membrane conductance was higher at pH 5.0 than at pH 9.8.6. Experiments using two successive, identical, constant current pulses suggested that the membrane conductance altered during the passage of current across the membrane; in alkaline solution the conductance fell with time, in acid solution it rose.7. Because no time or voltage dependence of the membrane conductance was seen in the absence of chloride ions it is inferred that the movements of chloride ions across the muscle membrane are responsible for both the time and voltage dependent alterations in membrane conductance seen at different pH values.
摘要
  1. 利用细胞内微电极研究了细胞外pH变化对蛙肌膜电压-电流关系的影响。为降低膜的阳离子电导,用铷取代了林格溶液中的钾。

  2. 当相对不易透过的甲基硫酸根离子取代细胞外氯离子时,膜电导较低,与时间无关,且几乎不受细胞外pH变化的影响。在高pH值和低pH值时,电压-电流关系均为线性。

  3. 在pH 7.4的铷林格溶液中,随着纤维内部变得更负,膜电导下降,这与恒场理论的预测一致。

  4. 在高pH值(9.8)时,静息电导较高,但随着膜电位升高而急剧下降;对于大的超极化电压,膜电流趋于极限值。电压-电流关系与在pH 7.4和5.0时记录的曲线相交。

  5. 在酸性林格溶液(pH 5.0)中,静息膜电导较低,且保持恒定,直到膜电位超极化超过静息值30 mV以上;然后随着膜电位进一步升高,电导上升。对于大的超极化,pH 5.0时的膜电导高于pH 9.8时的。

  6. 使用两个连续、相同的恒流脉冲进行的实验表明,在电流通过膜的过程中,膜电导发生了变化;在碱性溶液中,电导随时间下降,在酸性溶液中则上升。

  7. 由于在没有氯离子的情况下未观察到膜电导的时间或电压依赖性,因此可以推断,氯离子跨肌膜的移动是在不同pH值下观察到的膜电导的时间和电压依赖性变化的原因。

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本文引用的文献

1
Some Cation Interactions in Muscle.一些阳离子在肌肉中的相互作用。
J Gen Physiol. 1961 May 1;44(5):929-62. doi: 10.1085/jgp.44.5.929.
2
POTENTIAL, IMPEDANCE, AND RECTIFICATION IN MEMBRANES.膜的电位、阻抗和整流。
J Gen Physiol. 1943 Sep 20;27(1):37-60. doi: 10.1085/jgp.27.1.37.
7
THE RUBIDIUM AND POTASSIUM PERMEABILITY OF FROG MUSCLE MEMBRANE.青蛙肌肉膜的铷和钾通透性
J Physiol. 1964 Dec;175(1):134-59. doi: 10.1113/jphysiol.1964.sp007508.

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