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Characterization of actomyosin bond properties in intact skeletal muscle by force spectroscopy

机译:力光谱法表征完整骨骼肌中的肌动球蛋白结合特性

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Force generation and motion in skeletal muscle result from interaction between actin and myosin myofilaments through the cyclical formation and rupture of the actomyosin bonds, the cross-bridges, in the overlap region of the sarcomeres. Actomyosin bond properties were investigated here in single intact muscle fibers by using dynamic force spectroscopy. The force needed to forcibly detach the cross-bridge ensemble in the half-sarcomere (hs) was measured in a range of stretching velocity between 3.4 x 10~3 nm·hs~(-1)·s~(-1) or 3.3 fiber length per second (I_0s~(-1)) and 6.1 x 10~4 nm·hs~(-1)·s~(-1) or 50 I_0·s~(-1) during tetanic force development. The rupture force of the actomyosin bond increased linearly with the logarithm of the loading rate, in agreement with previous experiments on noncovalent single bond and with Bell theory [Bell GI (1978) Science 200:618-627]. The analysis permitted calculation of the actomyosin interaction length, x_β and the dissociation rate constant for zero external load, k_0. Mean x_β was 1.25 nm, a value similar to that reported for single actomyosin bond under rigor condition. Mean k_0 was 20 s~(-1), a value about twice as great as that reported in the literature for isometric force relaxation in the same type of muscle fibers. These experiments show, for the first time, that force spectroscopy can be used to reveal the properties of the individual cross-bridge in intact skeletal muscle fibers.
机译:肌动蛋白和肌球蛋白肌丝之间的相互作用是通过肌动蛋白结合物(跨桥)在肉瘤重叠区域中的周期性形成和断裂而产生的,从而引起骨骼肌中的力产生和运动。此处使用动态力波谱法研究了完整肌纤维中的肌动球蛋白结合特性。在3.4 x 10〜3 nm·hs〜(-1)·s〜(-1)或3.3范围内的拉伸速度范围内测量了在半肌节(hs)中强行拆卸跨桥集合所需的力在强直力发展过程中,光纤的每秒长度(I_0s〜(-1))和6.1 x 10〜4 nm·hs〜(-1)·s〜(-1)或50 I_0·s〜(-1)。与以前对非共价单键的实验和贝尔理论相一致,放线菌素键的断裂力随加载速率的对数线性增加。[Bell GI(1978)Science 200:618-627]。该分析允许计算肌动球蛋白相互作用长度x_β和零外部载荷k_0的解离速率常数。平均x_β为1.25 nm,该值类似于在严格条件下单肌动球蛋白键的报道值。平均k_0为20 s〜(-1),约为文献中相同类型的肌肉纤维中等距力松弛值的两倍。这些实验首次表明,力谱可以用来揭示完整的骨骼肌纤维中单个横桥的特性。

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