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一种昆虫(桑天牛)肌肉纤维中的钙电流和钾电流。

Calcium and potassium currents in muscle fibres of an insect (Carausius morosus).

作者信息

Ashcroft F M, Stanfield P R

出版信息

J Physiol. 1982 Feb;323:93-115. doi: 10.1113/jphysiol.1982.sp014063.

Abstract
  1. A three electrode voltage-clamp was used to investigate membrane currents in the skeletal muscle fibres of the stick insect, Carausius morosus. Contraction was blocked by hypertonic solutions. 2. Membrane currents elicited by step depolarizations consisted of an inward current, an early outward current and a delayed outward current. 3. The reversal potential of the delayed outward current did not change when SO4(2-) was substituted for Cl-, but shifted by 14.1 mV when [K]0 was increased from 20 mM to 40 mM in SO4(2-) solution, suggesting that the delayed current is carried by K+. Both early and delayed outward currents were substantially reduced by 120 mM-tetraethylammonium (TEA) ions. 4. The small size of the shift in the reversal potential of the delayed outward current with increased pulse duration suggests that the delayed current measured flows mainly across the surface membrane. 5. Increasing [Ca]o made the apparent reversal potential for the inward current (120 mM-TEA Ringer) more positive and increased the size of the maximum inward current. However, Ca-currents showed saturation with increasing [Ca]o, indicating that there is a site to which Ca ions bind during their passage through the membrane. The dissociation constant of this site was 7.3 mM at 0 mV and was voltage-dependent. 6. Inward currents were blocked by 1 mM-La3+ or Cd2+, or by substitution of Co2+ or Ni2+ for Mg2+. Strontium and barium were able to permeate the channel but Na+ and Mg2+ appear impermeant. 7. As expected from the low intracellular Ca concentration, the instantaneous current-voltage relation of the Ca current rectified strongly in the inward direction. 8. Both constant field theory and the simplest, single site, Eyring rate theory model predict the rectification of the instantaneous current-voltage relation. The rate theory model also predicts saturation of the Ca current with [Ca]o.
摘要
  1. 采用三电极电压钳来研究竹节虫(Carausius morosus)骨骼肌纤维中的膜电流。高渗溶液可阻断收缩。

  2. 阶跃去极化引发的膜电流包括内向电流、早期外向电流和延迟外向电流。

  3. 当用SO4(2-)替代Cl-时,延迟外向电流的反转电位不变,但在SO4(2-)溶液中,当[K]0从20 mM增加到40 mM时,反转电位偏移了14.1 mV,这表明延迟电流由K+携带。早期和延迟外向电流都被120 mM的四乙铵(TEA)离子大幅降低。

  4. 随着脉冲持续时间增加,延迟外向电流反转电位的偏移量较小,这表明所测量的延迟电流主要通过表面膜流动。

  5. 增加[Ca]o会使内向电流(120 mM - TEA林格液)的表观反转电位更正,并增加最大内向电流的大小。然而,Ca电流随着[Ca]o的增加而出现饱和,这表明在Ca离子穿过膜的过程中有一个与之结合的位点。该位点在0 mV时的解离常数为7.3 mM,且与电压有关。

  6. 内向电流被1 mM的La3+或Cd2+阻断,或者用Co2+或Ni2+替代Mg2+时也被阻断。锶和钡能够透过该通道,但Na+和Mg2+似乎不能透过。

  7. 正如细胞内低Ca浓度所预期的那样,Ca电流的瞬时电流 - 电压关系在向内方向上强烈整流。

  8. 恒定场理论和最简单的单位点艾林速率理论模型都预测了瞬时电流 - 电压关系的整流。速率理论模型还预测Ca电流会随着[Ca]o饱和。

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