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Force generation and temperature-jump and length-jump tension transients in muscle fibers.

机译:肌肉纤维中的力产生以及温度跳跃和长度跳跃的张力瞬变。

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摘要

Muscle tension rises with increasing temperature. The kinetics that govern the tension rise of maximally Ca(2+)-activated, skinned rabbit psoas fibers over a temperature range of 0-30 degrees C was characterized in laser temperature-jump experiments. The kinetic response is simple and can be readily interpreted in terms of a basic three-step mechanism of contraction, which includes a temperature-sensitive rapid preequilibrium(a) linked to a temperature-insensitive rate-limiting step and followed by a temperature-sensitive tension-generating step. These data and mechanism are compared and contrasted with the more complex length-jump Huxley-Simmons phases in which all states that generate tension or bear tension are perturbed. The rate of the Huxley-Simmons phase 4 is temperature sensitive at low temperatures but plateaus at high temperatures, indicating a change in rate-limiting step from a temperature-sensitive (phase 4a) to a temperature-insensitive reaction (phase 4b); the latter appears to correlate with the slow, temperature-insensitive temperature-jump relaxation. Phase 3 is absent in the temperature-jump, which excludes it from tension generation. We confirm that de novo tension generation occurs as an order-disorder transition during phase 2slow and the equivalent, temperature-sensitive temperature-jump relaxation.
机译:肌肉张力随温度升高而升高。在0-30摄氏度的温度范围内,控制最大Ca(2+)活化,剥皮的兔腰肌纤维的张力升高的动力学动力学在激光温度跳跃实验中得到了表征。动力学响应很简单,可以通过基本的三步收缩机制来解释,该机制包括与温度无关的限速步骤相关的温度敏感的快速预平衡(a),然后是温度敏感的产生张力的步骤。将这些数据和机理与更复杂的长度跳跃赫ley黎-西蒙斯相进行了比较和对比,在该相中,所有产生张力或承受张力的状态都受到干扰。赫x黎-西蒙斯相4的速率在低温下对温度敏感,但在高温下达到平稳,表明速率限制步骤从对温度敏感的反应(相4a)变为对温度不敏感的反应(相4b);后者似乎与缓慢的,对温度不敏感的温度跳跃松弛有关。温度跃变不存在阶段3,这使它不产生张力。我们确认从头产生张力是在阶段2缓慢和等效的,对温度敏感的温度跳跃松弛过程中发生的有序无序过渡。

著录项

  • 作者

    Davis, J S; Rodgers, M E;

  • 作者单位
  • 年度 1995
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  • 原文格式 PDF
  • 正文语种 en
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