In the present study we evaluated the load dependence of force produced by isolated muscle myosin filaments interacting with fluorescently labeled actin filaments, using for the first time whole native myosin filaments. We used a newly developed approach that allowed the use of physiological levels of ATP. Single filaments composed of either skeletal or smooth muscle myosin and single filaments of actin were attached between pairs of nano-fabricated cantilevers of known stiffness. The filaments were brought into contact to produce force, which caused sliding of the actin filaments over the myosin filaments. We applied load to the system by either pushing or pulling the filaments during interactions and observed that increasing the load increased the force produced by myosin and decreasing the load decreased the force. We also performed additional experiments in which we clamped the filaments at predetermined levels of force, which caused the filaments to slide to adjust the different loads, allowing us to measure the velocity of length changes to construct a force-velocity relation. Force values were in the range observed previously with myosin filaments and molecules. The force-velocity curves for skeletal and smooth muscle myosins resembled the relations observed for muscle fibers. The technique can be used to investigate many issues of interest and debate in the field of muscle biophysics.
The load dependence and the force-velocity relation in intact myosin filaments from skeletal and smooth muscles.
骨骼肌和平滑肌完整肌球蛋白丝的负荷依赖性和力-速度关系
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作者:Cheng Yu-Shu, de Souza Leite Felipe, Rassier Dilson E
| 期刊: | American Journal of Physiology-Cell Physiology | 影响因子: | 4.700 |
| 时间: | 2020 | 起止号: | 2020 Jan 1; 318(1):C103-C110 |
| doi: | 10.1152/ajpcell.00339.2019 | 研究方向: | 骨科研究 |
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