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去管实验将延迟整流电流定位到两栖动物骨骼肌纤维的表面膜。

Detubulation experiments localise delayed rectifier currents to the surface membrane of amphibian skeletal muscle fibres.

作者信息

Yee Chin Jann, Matthews Hugh R, Fraser James A, Skepper Jeremy N, Chawla Sangeeta, Huang Christopher L-H

机构信息

Physiological Laboratory and Multi-Imaging Centre, University of Cambridge, Downing Street, Cambridge, United Kingdom.

出版信息

J Muscle Res Cell Motil. 2004;25(4-5):389-95. doi: 10.1007/s10947-004-4069-9.

Abstract

Ionic currents in intact and detubulated frog sartorius muscle fibres were compared at room temperature using a loose-patch voltage clamp configuration in four experimental groups. The test fibres (i) were detubulated by a previously established osmotic shock protocol that involved the introduction and withdrawal of extracellular glycerol followed by exposure to Ca2+/Mg2+-Ringer solution and cooling. The control fibres were spared osmotic shock and (ii) simply studied in normal Ringer solution, (iii) exposed to 30 min of steady cooling to 9-10 degrees C before electrophysiological study or (iv) exposed to and studied in glycerol-Ringer solution. The presence or absence of detubulation was confirmed for all the experimental groups through assessing for the abolition or otherwise of the delayed after-depolarisation normally associated with action potential propagation into the transverse (T) tubules. All fibre groups showed similar resting potentials (-80 to -90 mV) thus ensuring consistent baseline voltages from which the voltage clamp steps were imposed. The intact muscle fibres in the three control groups (ii)-(iv) spared osmotic shock showed both inward Na+ and delayed rectifier outward (K+) currents. In contrast, patches from detubulated muscle fibres in the test group (i) showed only delayed outward currents, consistent with contrasting contributions to Na+ and K+ currents from regions of membrane affected or spared by the detubulation procedure. Nevertheless, the voltage dependence, maximum steady state amplitudes and timecourses of the delayed outward currents were conserved through all the experimental groups. These findings suggest that the surface as opposed to the tubular membrane contributes the greater part of the delayed rectifier current in amphibian skeletal muscle.

摘要

在室温下,使用松散膜片电压钳配置,在四个实验组中比较了完整和去管化青蛙缝匠肌纤维中的离子电流。测试纤维(i)通过先前建立的渗透休克方案进行去管化,该方案包括引入和去除细胞外甘油,然后暴露于Ca2+/Mg2+-林格溶液并冷却。对照纤维未经历渗透休克,并且(ii)仅在正常林格溶液中进行研究,(iii)在电生理研究之前暴露于9-10摄氏度的稳定冷却30分钟,或(iv)暴露于甘油-林格溶液中并在其中进行研究。通过评估通常与动作电位传播到横(T)小管相关的延迟后去极化的消除与否,确认了所有实验组中是否存在去管化。所有纤维组均显示出相似的静息电位(-80至-90 mV),从而确保了施加电压钳步长的一致基线电压。三个未经历渗透休克的对照组(ii)-(iv)中的完整肌肉纤维显示出内向Na+电流和延迟整流外向(K+)电流。相比之下,测试组(i)中去管化肌肉纤维的膜片仅显示出延迟外向电流,这与去管化过程影响或未影响的膜区域对Na+和K+电流的不同贡献一致。然而,所有实验组中延迟外向电流的电压依赖性、最大稳态幅度和时间进程均保持不变。这些发现表明,在两栖类骨骼肌中,延迟整流电流的大部分由表面膜而非管状膜贡献。

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