首页> 外文期刊>The Journal of general physiology >Characterization of cross-bridge elasticity and kinetics of cross-bridge cycling during force development in single smooth muscle cells.
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Characterization of cross-bridge elasticity and kinetics of cross-bridge cycling during force development in single smooth muscle cells.

机译:在单个平滑肌细胞内力发展过程中跨桥弹性和跨桥循环动力学的表征。

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Force development in smooth muscle, as in skeletal muscle, is believed to reflect recruitment of force-generating myosin cross-bridges. However, little is known about the events underlying cross-bridge recruitment as the muscle cell approaches peak isometric force and then enters a period of tension maintenance. In the present studies on single smooth muscle cells isolated from the toad (Bufo marinus) stomach muscularis, active muscle stiffness, calculated from the force response to small sinusoidal length changes (0.5% cell length, 250 Hz), was utilized to estimate the relative number of attached cross-bridges. By comparing stiffness during initial force development to stiffness during force redevelopment immediately after a quick release imposed at peak force, we propose that the instantaneous active stiffness of the cell reflects both a linearly elastic cross-bridge element having 1.5 times the compliance of the cross-bridge in frog skeletal muscle and a series elastic component having an exponential length-force relationship. At the onset of force development, the ratio of stiffness to force was 2.5 times greater than at peak isometric force. These data suggest that, upon activation, cross-bridges attach in at least two states (i.e., low-force-producing and high-force-producing) and redistribute to a steady state distribution at peak isometric force. The possibility that the cross-bridge cycling rate was modulated with time was also investigated by analyzing the time course of tension recovery to small, rapid step length changes (0.5% cell length in 2.5 ms) imposed during initial force development, at peak force, and after 15 s of tension maintenance. The rate of tension recovery slowed continuously throughout force development following activation and slowed further as force was maintained. Our results suggest that the kinetics of force production in smooth muscle may involve a redistribution of cross-bridge populations between two attached states and that the average cycling rate of these cross-bridges becomes slower with time during contraction.
机译:平滑肌和骨骼肌中的力发展被认为反映了产生力的肌球蛋白跨桥的募集。但是,关于肌肉细胞接近峰值等轴测力然后进入一段维持张力的过程,对于跨桥募集背后的事件知之甚少。在本研究中,从蟾蜍(Bufo marinus)胃肌分离出的单个平滑肌细胞,根据对微小正弦长度变化(0.5%的细胞长度,250 Hz)的力响应计算出的活跃肌肉僵硬度被用来估计相对的连接的跨桥数量。通过比较初始力发展期间的刚度与施加在峰值力处的快速释放后立即进行力再发展期间的刚度,我们认为单元的瞬时活动刚度反映了线性弹性的跨桥元件,该元件的跨度为交叉力的1.5倍。青蛙骨骼肌中的桥和一系列具有指数长度-力关系的弹性组件。在力开始发展时,刚度与力之比是峰值等轴测力的2.5倍。这些数据表明,在激活时,跨桥至少以两种状态(即,产生低力和产生高力)连接,并在等轴测力峰值处重新分布到稳态分布。还通过分析在初始力发展过程中在峰值力作用下施加的小而快速的步长变化(在2.5毫秒内0.5%的细胞长度)的张力恢复的时间过程,研究了跨桥循环速率随时间调节的可能性。并在维持张力15秒钟后。张力恢复的速度在激活后整个力发展过程中持续减慢,并随着力的保持而进一步减慢。我们的结果表明,在平滑肌中产生力的动力学可能涉及跨桥种群在两个附着状态之间的重新分布,并且这些跨桥的平均循环速率会随着时间的推移而变慢。

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