首页> 外文期刊>The Journal of Physiology >Effects of rapid shortening on rate of force regeneration and myoplasmic (Ca2+) in intact frog skeletal muscle fibres.
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Effects of rapid shortening on rate of force regeneration and myoplasmic (Ca2+) in intact frog skeletal muscle fibres.

机译:快速缩短对完整青蛙骨骼肌纤维中力再生速率和肌质(Ca2 +)的影响。

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1. The effect of rapid shortening on rate of force regeneration (dF/dtR) was examined in single, intact frog (Rana temporaria) skeletal muscle fibres (3.0 C). Step releases leading to unloaded shortening were applied after 500 ms of stimulation, during the plateau of an isometric tetanus. Initial mean sarcomere length ranged from 2.05 to 2.35 micrometer; force regeneration after shortening was at 2.00 micrometer. 2. Values for dF/dtR following a 25 nm half-sarcomere-1 release were 3.17 +/- 0.17 (mean +/- s.e.m., n = 8) times greater than the initial rate of rise of force before release (dF/dtI). As release size was increased from 25 to 175 nm half-sarcomere-1, the relationship between release size and dF/dtR decreased sharply before attaining a plateau value that was 1.34 +/- 0.09 times greater than dF/dtI. Despite wide variations in dF/dtR, the velocity of unloaded shortening remained constant (2.92 +/- 0.08 micrometer half-sarcomere-1 s-1; n = 8) for the different release amplitudes used in this study. 3. To investigate its role in the attenuation of dF/dtR with increased shortening, the effects of rapid ramp (constant velocity) shortening on intracellular free Ca2+ concentration ([Ca2+]i) were monitored using the Ca2+-sensitive fluorescent dye furaptra. Compared with an isometric contraction, rapid fibre shortening was associated with a transient increase in [Ca2+]i while force regeneration after shortening was associated with a transient reduction in [Ca2+]i. The greatest reductions in [Ca2+]i were associated with the largest amplitude ramps. 4. Cross-bridge-mediated modifications of the Ca2+ affinity of troponin C (TnC) may explain the fluctuations in [Ca2+]i observed during and after ramps. Associated fluctuations in TnC Ca2+ occupancy could play a role in the reduction of dF/dtR with increasing release size.
机译:1.在单个完整的青蛙(Rana temporaria)骨骼肌纤维(3.0 C)中检查了快速缩短对力再生速率(dF / dtR)的影响。在等距破伤风的高原期,刺激500毫秒后,施加导致空载缩短的逐步释放。最初的平均肌节长度为2.05至2.35微米;缩短后的再生力为2.00微米。 2. 25 nm半sarcomere-1释放后的dF / dtR值是释放前力的初始上升速率(dF / dtI)的3.17 +/- 0.17(平均+/- sem,n = 8)倍)。随着释放尺寸从25-175 nm Half-sarcomere-1增加,释放尺寸与dF / dtR之间的关系急剧下降,直到达到一个比dF / dtI大1.34 +/- 0.09倍的平稳值。尽管dF / dtR差异很大,但对于本研究中使用的不同释放幅度,空载起酥油的速度仍保持恒定(2.92 +/- 0.08微米半sarcomere-1 s-1; n = 8)。 3.为了研究其在缩短的增加下对dF / dtR的衰减作用,使用Ca2 +敏感的荧光染料furaptra监测了快速加速(恒定速度)缩短对细胞内游离Ca2 +浓度([Ca2 +] i)的影响。与等距收缩相比,快速的纤维缩短与[Ca2 +] i的瞬时增加有关,而缩短后的力再生与[Ca2 +] i的瞬时减少有关。 [Ca2 +] i的最大减少与最大的幅度斜坡相关。 4.跨桥介导的肌钙蛋白C(TnC)Ca2 +亲和力修饰可能解释了在斜波期间和之后观察到的[Ca2 +] i的波动。随着释放量的增加,TnC Ca2 +占用率的相关波动可能会导致dF / dtR降低。

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