首页> 外文期刊>The Journal of Experimental Biology >Nanometer-scale structure differences in the myofilament lattice spacing of two cockroach leg muscles correspond to their different functions
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Nanometer-scale structure differences in the myofilament lattice spacing of two cockroach leg muscles correspond to their different functions

机译:纳米级结构差异在两个蟑螂腿部肌肉的丝丝格子间距中差异对应于不同功能

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摘要

Muscle is highly organized across multiple length scales. Consequently, small changes in the arrangement of myofilaments can influence macroscopic mechanical function. Two leg muscles of a cockroach have identical innervation, mass, twitch responses, length-tension curves and force-velocity relationships. However, during running, one muscle is dissipative (a `brake'), while the other dissipates and produces significant positive mechanical work (bifunctional). Using time-resolved X-ray diffraction in intact, contracting muscle, we simultaneously measured the myofilament lattice spacing, packing structure and macroscopic force production of these muscles to test whether structural differences in the myofilament lattice might correspond to the muscles' different mechanical functions. While the packing patterns are the same, one muscle has 1 nm smaller lattice spacing at rest. Under isometric stimulation, the difference in lattice spacing disappeared, consistent with the two muscles' identical steady-state behavior. During periodic contractions, one muscle undergoes a 1 nm greater change in lattice spacing, which correlates with force. This is the first identified structural feature in the myofilament lattice of these two muscles that shares their whole-muscle dynamic differences and quasi-static similarities.
机译:肌肉在多个长度尺度上高度组织。因此,肌细胞排列的小变化可以影响宏观机械功能。蟑螂的两条腿部肌肉具有相同的支撑,质量,抽搐响应,长度张力曲线和力速度关系。然而,在跑步期间,一根肌肉是耗散的(一个`制动'),而另一个肌肉耗散并产生显着的阳性机械工作(双官能)。使用时间分辨的X射线衍射在完整,收缩的肌肉中,我们同时测量了丝丝格子间距,包装结构和宏观的力产生这些肌肉,以测试丝丝格子的结构差是否可能对应于肌肉的不同机械功能。虽然包装模式相同,但一块肌肉在休息时具有1nm较小的晶格间距。在等距刺激下,晶格间距的差异消失,与两个肌肉相同的稳态行为一致。在周期性收缩期间,一根肌肉经历1nm的晶格间距变化,与力相关。这是这两种肌肉中的第一个识别的结构特征,这些肌肉与它们的全部肌肉动态差异和准静态相似性分享。

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