首页> 美国卫生研究院文献>The Journal of Physiology >Effects of calcium and ionic strength on shortening velocity and tension development in frog skinned muscle fibres.
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Effects of calcium and ionic strength on shortening velocity and tension development in frog skinned muscle fibres.

机译:钙和离子强度对蛙皮肌肉纤维缩短速度和产生张力的影响。

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摘要

1. The influence of Ca2+ concentration and ionic strength on the maximum velocity of shortening (Vmax) and the tension generating capability of frog skinned muscle fibres has been studied at temperatures between 1 and 10 degrees C. 2. Fibre segments were mounted between a force transducer and servo motor, where they could be viewed and photographed through a microscope. Segments in which the striations became non-uniform during activation were discarded. 3. Velocity was obtained as a function of load by stepping the tension to values less than the steady isometric tension. Vmax was then determined by an extrapolation technique. Vmax was also obtained using a second, independent method by measuring the times required to take up various amounts of slack imposed on the segments. 4. Vmax was significantly influenced by the Ca2+ concentration, decreasing by about one half when the Ca2+ concentration was reduced to give steady tensions less than half-maximal. 5. Vmax was not influenced by changes in ionic strength, in the range 0.09-0.18 M. Steady tension was found to increase as ionic strength was decreased in the same range. 6. These results indicate that the effect of changes in ionic strength is to alter the numbers or stiffness of attached cross-bridges, while there is no apparent influence of ionic strength on the steady-state kinetics of the actin-myosin interaction during unloaded shortening. The mechanism responsible for the influence of Ca2+ on Vmax is unknown, though possible sites of action for Ca2+ are discussed.
机译:1.研究了在1至10摄氏度之间的温度下,Ca2 +浓度和离子强度对最大缩短速度(Vmax)和蛙皮肌纤维产生拉力的影响。2.纤维段安装在力之间传感器和伺服电机,可以在显微镜下查看和拍照。在激活过程中条纹变得不均匀的片段将被丢弃。 3.通过将张力逐步减小到小于等轴测静态张力的值,来获得速度与载荷的关系。然后通过外推技术确定Vmax。还使用第二种独立方法通过测量吸收施加在段上的各种松弛量所需的时间来获得Vmax。 4. Vmax受到Ca2 +浓度的显着影响,当Ca2 +浓度降低以使稳定张力小于最大最大值时,Vmax减小约一半。 5. Vmax不受离子强度变化的影响,在0.09-0.18 M范围内。随着离子强度在相同范围内降低,稳定张力会增加。 6.这些结果表明,离子强度变化的作用是改变连接的跨桥的数量或刚度,而在空载缩短过程中,离子强度对肌动蛋白-肌球蛋白相互作用的稳态动力学没有明显影响。 。尽管讨论了Ca2 +的可能作用部位,但尚不清楚Ca2 +对Vmax影响的机理。

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