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去管化两栖类骨骼肌纤维表面动作电位的正常传导

Normal conduction of surface action potentials in detubulated amphibian skeletal muscle fibres.

作者信息

Sheikh S M, Skepper J N, Chawla S, Vandenberg J I, Elneil S, Huang C L

机构信息

Physiological Laboratory, University of Cambridge, Downing Street, Cambridge CB2 3EG, UK.

出版信息

J Physiol. 2001 Sep 1;535(Pt 2):579-90. doi: 10.1111/j.1469-7793.2001.t01-1-00579.x.

Abstract
  1. The influence of the transverse (T) tubules on surface action potential conduction was investigated by comparing electrophysiological and confocal microscopic assessments of tubular changes in osmotically shocked and control fibres from frog sartorius muscle. 2. The membrane-impermeant fluorescent dye, di-8-ANEPPs spread readily from the bathing extracellular solution into the tubular membranes in control, intact fibres. Prior exposure of muscles to a hypertonic glycerol-Ringer solution, its replacement by an isotonic Ca(2+)-Mg(2+) Ringer solution and cooling sharply reduced such access. In contrast, dye application in the course of this osmotic shock procedure stained the large tubular vacuoles hitherto associated with successful muscle detubulation. 3. Conduction velocities in intact, control fibres (1.91 +/- 0.048 m s(-1), mean +/- S.E.M., n = 32 fibres) agreed with earlier values reported at room temperature (18-21 degrees C) and were unaffected by prior episodes of steady cooling to 8-10 degrees C (1.91 +/- 0.043 m s(-1), n = 30). 4. Cooling to 11.5 degrees C reduced these velocities (1.47 +/- 0.081 m s(-1), n = 25) but action potential waveforms still included early overshoots and the delayed after-depolarizations associated with tubular electrical activity. 5. In contrast, action potentials from cooled, superficial fibres in osmotically shocked muscles lacked after-depolarization phases implying tubular detachment. Their mean conduction velocities (1.62 +/- 0.169 m s(-1), n = 25) were not significantly altered from values obtained in untreated controls or in intact fibres in muscle similarly treated with glycerol, in direct contrast to earlier results. 6. Cooling produced similar reductions in maximum rates of voltage change dV/dt in action potentials from all fibre groups with lower rates of change shown by detubulated fibres. 7. Use of an antibody to a conserved epitope of the alpha-subunit of voltage-gated sodium channels suggested a concentration of sodium channels close to the mouths of the T tubules. 8. These electrophysiological and anatomical findings are consistent with a partial independence of electrical events in the transverse tubules from those responsible for the rapid conduction of surface regenerative activity. 9. The findings are discussed in terms of a partial separation of the electrical activity propagated over the surface membrane, from the initiation of propagated activity within the T tubules, by the triggering of the sodium channels clustered selectively around the mouths of the T tubules.
摘要
  1. 通过比较青蛙缝匠肌经渗透压休克处理的纤维和对照纤维中横管变化的电生理评估与共聚焦显微镜评估,研究了横(T)管对表面动作电位传导的影响。2. 膜不透性荧光染料二辛基 - 8 - 苯胺基萘磺酸盐(di - 8 - ANEPPs)在对照完整纤维中很容易从细胞外浴液扩散到横管膜中。肌肉预先暴露于高渗甘油 - 林格溶液,然后用等渗Ca(2 +)-Mg(2 +)林格溶液替代并急剧冷却,会大大减少这种进入。相反,在这种渗透压休克过程中施加染料会使迄今与成功的肌肉去横管化相关的大横管液泡染色。3. 完整对照纤维中的传导速度(1.91±0.048 m s(-1),平均值±标准误,n = 32根纤维)与先前在室温(18 - 21℃)下报道的值一致,并且不受先前稳定冷却至8 - 10℃情况的影响(1.91±0.043 m s(-1),n = 30)。4. 冷却至11.5℃会降低这些速度(1.47±0.081 m s(-1),n = 25),但动作电位波形仍包括早期超射以及与横管电活动相关的延迟后去极化。5. 相比之下,渗透压休克肌肉中冷却的表层纤维的动作电位缺乏后去极化阶段,这意味着横管分离。它们的平均传导速度(1.62±0.169 m s(-1),n = 25)与未处理对照或用甘油类似处理的肌肉中的完整纤维所获得的值相比没有显著变化,这与早期结果形成直接对比。6. 冷却使所有纤维组动作电位的最大电压变化率dV/dt产生类似的降低,去横管化纤维的变化率较低。7. 使用针对电压门控钠通道α亚基保守表位的抗体表明钠通道集中在T管开口附近。8. 这些电生理和解剖学发现与横管中的电事件与负责表面再生活动快速传导的电事件部分独立一致。9. 根据在表面膜上传播的电活动与在T管内传播活动的起始之间的部分分离来讨论这些发现,这种分离是由选择性聚集在T管开口周围的钠通道的触发引起的。

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