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机械应变诱导气道平滑肌中肌球蛋白粗丝的不稳定性。

Myosin thick filament lability induced by mechanical strain in airway smooth muscle.

作者信息

Kuo K H, Wang L, Paré P D, Ford L E, Seow C Y

机构信息

Department of Anatomy, University of British Columbia, Vancouver, Canada.

出版信息

J Appl Physiol (1985). 2001 May;90(5):1811-6. doi: 10.1152/jappl.2001.90.5.1811.

Abstract

Airway smooth muscle adapts to different lengths with functional changes that suggest plastic alterations in the filament lattice. To look for structural changes that might be associated with this plasticity, we studied the relationship between isometric force generation and myosin thick filament density in cell cross sections, measured by electron microscope, after length oscillations applied to the relaxed porcine trachealis muscle. Muscles were stimulated regularly for 12 s every 5 min. Between two stimulations, the muscles were submitted to repeated passive +/- 30% length changes. This caused tetanic force and thick-filament density to fall by 21 and 27%, respectively. However, in subsequent tetani, both force and filament density recovered to preoscillation levels. These findings indicate that thick filaments in airway smooth muscle are labile, depolymerization of the myosin filaments can be induced by mechanical strain, and repolymerization of the thick filaments underlies force recovery after the oscillation. This thick-filament lability would greatly facilitate plastic changes of lattice length and explain why airway smooth muscle is able to function over a large length range.

摘要

气道平滑肌通过功能变化适应不同长度,这些变化表明细丝晶格发生了可塑性改变。为了寻找可能与这种可塑性相关的结构变化,我们研究了在对松弛的猪气管肌施加长度振荡后,通过电子显微镜测量的细胞横截面中等长力产生与肌球蛋白粗丝密度之间的关系。每5分钟对肌肉进行12秒的规律性刺激。在两次刺激之间,使肌肉反复进行±30%的被动长度变化。这导致强直力和粗丝密度分别下降21%和27%。然而,在随后的强直收缩中,力和细丝密度均恢复到振荡前水平。这些发现表明气道平滑肌中的粗丝是不稳定的,机械应变可诱导肌球蛋白丝解聚,振荡后粗丝的重新聚合是力恢复的基础。这种粗丝的不稳定性将极大地促进晶格长度的可塑性变化,并解释了气道平滑肌为何能够在较大的长度范围内发挥功能。

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