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咖啡因对青蛙骨骼肌纤维兴奋-收缩偶联的作用。

Action of caffeine in excitation-contraction coupling of frog skeletal muscle fibres.

作者信息

Kumbaraci N M, Nastuk W L

出版信息

J Physiol. 1982 Apr;325:195-211. doi: 10.1113/jphysiol.1982.sp014145.

Abstract
  1. Frog sartorius muscle bathed in 1 mM-caffeine generates brief asynchronous contraction of individual sarcomeres, 'sarcomeric oscillations', and propagated contractile waves. 2. Analysis of cinematographic records shows that during sarcomeric oscillations the sarcomere length decreases and the distribution of sarcomere lengths is wider than in controls. 3. Caffeine can produce sarcomeric oscillations in K depolarized muscle fibres and, to a limited extent, in glycerol-treated muscle fibres. 4. Treatment of muscle with dantrolene sodium blocks production of sarcomeric oscillations by caffeine. 5. In caffeine-treated muscle fibres, electrically produced depolarization could initiate or increase the frequency of sarcomeric oscillations, and electrical hyperpolarization diminishes the frequency or stops sarcomeric oscillations. 6. Caffeine solution bathing a muscle undergoing sarcomeric oscillations (the perfusate), when applied to a fresh muscle, initiates sarcomeric oscillations with a relatively short latency. 7. An U.V.-absorbance peak at 245 nm develops in the caffeine solution bathing a muscle undergoing sarcomeric oscillations. 8. It was found that a contraction-regulating substance (oscillogen) is released from a muscle undergoing sarcomeric oscillations. From results of selective dialysis and gel permeation chromatography, the molecular weight of the oscillogen is estimated to be between 700-1000 daltons. 9. It is proposed that the oscillogen is a normally occurring substance which functions in excitation-contraction coupling at the T-tubule terminal cistern junction in skeletal muscle.
摘要
  1. 浸泡在1 mM咖啡因中的青蛙缝匠肌会产生单个肌节的短暂异步收缩,即“肌节振荡”,以及传播性收缩波。2. 对电影记录的分析表明,在肌节振荡期间,肌节长度缩短,且肌节长度的分布比对照组更宽。3. 咖啡因可在钾离子去极化的肌纤维中产生肌节振荡,在甘油处理的肌纤维中也能产生一定程度的肌节振荡。4. 用丹曲林钠处理肌肉可阻断咖啡因引起的肌节振荡。5. 在经咖啡因处理的肌纤维中,电产生的去极化可启动或增加肌节振荡的频率,而电超极化则会降低频率或停止肌节振荡。6. 浸泡在经历肌节振荡的肌肉(灌注液)中的咖啡因溶液,施加到新鲜肌肉上时,会在相对较短的潜伏期后引发肌节振荡。7. 在浸泡经历肌节振荡的肌肉的咖啡因溶液中会出现245 nm的紫外线吸收峰。8. 发现一种收缩调节物质(振荡原)从经历肌节振荡的肌肉中释放出来。根据选择性透析和凝胶渗透色谱的结果,振荡原的分子量估计在700 - 1000道尔顿之间。9. 有人提出,振荡原是一种正常存在的物质,在骨骼肌横管终末池连接处的兴奋 - 收缩偶联中起作用。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae98/1251389/def05486ef62/jphysiol00682-0218-a.jpg

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