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对活性肌纤维作为肌节长度函数的光衍射研究。

Light diffraction studies of active muscles fibres as a function of sarcomere length.

作者信息

Oba T, Baskin R J, Lieber R L

出版信息

J Muscle Res Cell Motil. 1981 Jun;2(2):215-24. doi: 10.1007/BF00711871.

Abstract

This investigation has established the following points. (1) Activation of single intact frog muscle fibres or mechanically skinned fibres results in a decrease in the intensity of the first-order line at all sarcomere lengths at which filament overlap is present. (2) At long sarcomere lengths (greater than 3.6 micrometers) the intensity decrease upon stimulation of intact fibres diminishes until above 3.9 micrometers no decrease is seen. In the skinned preparation, no intensity change is seen at sacromere lengths above 3.6 micrometers. (3) The intensity decrease seen in the intact fibres in the 3.6-3.9 micrometers sarcomere length region may be due to contraction of sarcomeres near the tendons, which have a shorter sarcomere length than those illuminated by the laser beam, and thus may not be stretched beyond filament overlap. (4) No intensity decrease is observed upon activation at very long (greater than 4.5 micrometers) sarcomere lengths. (5) Mechanically skinned fibres show a graded intensity response to free calcium. (6) Scans of first-order line width show no broadening upon activation, indicating that sarcomere length dispersion in the illuminated region of the fibre does not increase.

摘要

本研究确立了以下几点。(1)对单个完整的青蛙肌肉纤维或机械去膜纤维的激活会导致在存在细丝重叠的所有肌节长度下一级谱线强度降低。(2)在长肌节长度(大于3.6微米)时,刺激完整纤维时强度降低会减小,直到超过3.9微米时不再有降低。在去膜制剂中,在肌节长度超过3.6微米时未观察到强度变化。(3)在3.6 - 3.9微米肌节长度区域内完整纤维中观察到的强度降低可能是由于靠近肌腱的肌节收缩,这些肌节的肌节长度比激光束照射的肌节短,因此可能不会被拉伸到细丝重叠之外。(4)在非常长(大于4.5微米)的肌节长度下激活时未观察到强度降低。(5)机械去膜纤维对游离钙呈现分级强度响应。(6)一级谱线宽度扫描显示激活后没有展宽,表明纤维照射区域内的肌节长度离散度没有增加。

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