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大鼠和家兔去皮肤骨骼肌纤维中张力重建速率和次最大张力的肌节长度依赖性

Sarcomere length dependence of the rate of tension redevelopment and submaximal tension in rat and rabbit skinned skeletal muscle fibres.

作者信息

McDonald K S, Wolff M R, Moss R L

机构信息

Department of Physiology and Medicine, University of Wisconsin Medical School, Madison 53706, USA.

出版信息

J Physiol. 1997 Jun 15;501 ( Pt 3)(Pt 3):607-21. doi: 10.1111/j.1469-7793.1997.607bm.x.

Abstract
  1. We examined the hypothesis that in skeletal muscle the steep relationship between twitch tension and sarcomere length (SL) within the range 2.30 to 1.85 microns involves SL-dependent alterations in the rate of tension development. 2. In skinned preparations of both rat slow-twitch and rabbit fast-twitch skeletal muscle fibres the rate of tension redevelopment (ktr) at 15 degrees C was reduced at short SL (approximately 2.00 microns) compared with a longer SL (approximately 2.30 microns). In submaximally activated fibres, the decrease in ktr over this range of lengths was greater in fast-twitch fibres (38% reduction) than in slow-twitch fibres (14% reduction). 3. Ca2+ sensitivity of tension, as assessed as the pCa (-log[Ca2+]) for half-maximal activation, or pCa50, decreased to a greater extent in rabbit fast-twitch skeletal muscle fibres than in slow-twitch fibres from both rabbit and rat when SL was reduced from approximately 2.30 to approximately 1.85 microns. The delta pCa50 over this SL range was 0.24 +/- 0.07 pCa units in fast-twitch fibres from rabbit psoas muscle. The delta pCa50 for slow-twitch fibres from rabbit and rat soleus muscle was 0.08 +/- 0.02 and 0.10 +/- 0.04 pCa units, respectively. 4. Osmotic compression of both slow-twitch and fast-twitch fibres at a SL of 2.00 microns increased ktr to values similar to those obtained at a SL of 2.30 microns in the absence of dextran. This result indicates that the slower rate of tension redevelopment at short SL is due in large part to the increase in interfilament lattice spacing associated with shorter SL. 5. Taken together, these results suggest that length dependence of twitch tension is, in part, due to length dependence of isometric cross-bridge interaction kinetics, an effect that is mediated by length-dependent changes in interfilament lattice spacing.
摘要
  1. 我们检验了这样一个假设:在骨骼肌中,肌节长度(SL)在2.30至1.85微米范围内时,单收缩张力与肌节长度之间的陡峭关系涉及张力发展速率中依赖于肌节长度的改变。2. 在大鼠慢肌和兔快肌骨骼肌纤维的脱膜标本中,与较长肌节长度(约2.30微米)相比,在15℃时短肌节长度(约2.00微米)下的张力再发展速率(ktr)降低。在次最大激活的纤维中,快肌纤维在这个长度范围内ktr的降低幅度(降低38%)大于慢肌纤维(降低14%)。3. 当肌节长度从约2.30微米降至约1.85微米时,兔快肌骨骼肌纤维中张力的Ca2+敏感性(以半最大激活时的pCa(-log[Ca2+])或pCa50评估)的降低程度大于兔和大鼠的慢肌纤维。在兔腰大肌的快肌纤维中,这个肌节长度范围内的ΔpCa50为0.24±0.07 pCa单位。兔和大鼠比目鱼肌慢肌纤维的ΔpCa50分别为0.08±0.02和0.10±0.04 pCa单位。4. 在2.00微米肌节长度下对慢肌和快肌纤维进行渗透压压缩,使ktr增加到与不存在右旋糖酐时在2.30微米肌节长度下获得的值相似。这一结果表明,短肌节长度下张力再发展速率较慢在很大程度上是由于与较短肌节长度相关的丝间晶格间距增加。5. 综上所述,这些结果表明单收缩张力的长度依赖性部分归因于等长横桥相互作用动力学的长度依赖性,这种效应由丝间晶格间距的长度依赖性变化介导。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6fa/1159461/8c677098ab6d/jphysiol00277-0126-a.jpg

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