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青蛙慢肌纤维和快肌纤维中的机械激活

Mechanical activation in slow and twitch skeletal muscle fibres of the frog.

作者信息

Gilly W F, Hui C S

出版信息

J Physiol. 1980 Apr;301:137-56. doi: 10.1113/jphysiol.1980.sp013195.

Abstract
  1. Slow and twitch muscle fibres of the frog were studied with a two-micro-electrode point voltage-clamp method. Slow fibres were identified in pyriformis and cruralis muscles by their appearance in the light microscope, electrical characteristics, and rate of sarcomere shortening or of tension development. 2. The relation between the amplitude and duration of threshold depolarizing pulses was determined in sartorius twitch and pyriformis slow fibres. Strength-duration relations for contractile activation are very similar in the two fibre types. 3. The effect of a brief subthreshold pulse on the threshold voltage level decays with a half-time of 1-2 msec at 9 degrees C in both slow and twitch fibres. This fast decay, thought to reflect voltage-dependent deactivation of Ca2+ release following repolarization, is followed by a slower decay of greatly different rates in the two fibre types. the slower components of decay might reflect the rate of background Ca2+ removal by the sarcoplasmic reticulum. 4. Reducing external Ca2+ levels to about about 0.1 microM with 2.5 mM-EGTA has no effect on the shapes of strength-duration curves for both slow and twitch fibres, suggesting that activator Ca2+ in both fibre types originates entirely from intracellular stores. 5. "Tonic' contractions were studied using voltage-clamped short cruralis slow fibres at 20 degrees C. Reducing external Ca2+ to about 0.1 microM had no effect on the steepness of the steady-state tension-voltage relation or on the ability of slow fibres to maintain maximal tension during long (200 sec) depolarizations to membrane potentials of up to +50 mV. 6. Functional similarities in activation kinetics of slow and twitch fibres are discussed in relation to the sensing of tubular membrane potential by the sarcoplasmic reticulum, to Ca2+ release from it, and to possible mechanisms involved in these processes. Processes leading to the rapid turning on and off of Ca2+ release in response to changes in tubular membrane potential are probably similar in slow and twitch fibres. However, the apparent lack of voltage-and time-dependent inactivation of Ca2+ release in slow fibre points to a major difference in the two types of muscle.
摘要
  1. 采用双微电极点电压钳法对青蛙的慢肌纤维和快肌纤维进行了研究。通过梨状肌和股肌在光学显微镜下的外观、电特性以及肌节缩短或张力发展的速率来识别慢肌纤维。2. 测定了缝匠肌快肌纤维和梨状肌慢肌纤维中阈下去极化脉冲的幅度与持续时间之间的关系。两种纤维类型中收缩激活的强度-持续时间关系非常相似。3. 在9摄氏度时,一个短暂的阈下脉冲对慢肌纤维和快肌纤维阈电压水平的影响以1-2毫秒的半衰期衰减。这种快速衰减被认为反映了复极化后钙释放的电压依赖性失活,随后在两种纤维类型中以截然不同的速率出现较慢的衰减。衰减的较慢成分可能反映了肌浆网清除背景钙的速率。4. 用2.5 mM - EGTA将细胞外钙水平降低到约0.1 microM对慢肌纤维和快肌纤维的强度-持续时间曲线形状均无影响,这表明两种纤维类型中的激活钙完全源自细胞内储存。5. 在20摄氏度下,使用电压钳制的短股肌慢肌纤维研究了“强直”收缩。将细胞外钙降低到约0.1 microM对稳态张力-电压关系的斜率或慢肌纤维在长达200秒的去极化至高达+50 mV膜电位期间维持最大张力的能力均无影响。6. 讨论了慢肌纤维和快肌纤维激活动力学的功能相似性,涉及肌浆网对管状膜电位的感知、从中释放钙以及这些过程中可能涉及的机制。响应管状膜电位变化导致钙释放快速开启和关闭的过程在慢肌纤维和快肌纤维中可能相似。然而,慢肌纤维中钙释放明显缺乏电压和时间依赖性失活表明这两种肌肉类型存在重大差异。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5d3/1279388/98ce2c1c2f63/jphysiol00778-0167-a.jpg

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