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首页> 外文期刊>The Journal of general physiology >Contraction kinetics of intact and skinned frog muscle fibers and degree of activation. Effects of intracellular Ca2+ on unloaded shortening.
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Contraction kinetics of intact and skinned frog muscle fibers and degree of activation. Effects of intracellular Ca2+ on unloaded shortening.

机译:完整和有皮的青蛙肌肉纤维的收缩动力学和活化程度。细胞内Ca2 +对空载起酥油的影响。

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This study addresses a long-standing controversy on the effects of the degree of activation on cross-bridge kinetics in vivo, by utilizing isolated intact and skinned fiber preparations. Steady force levels ranging from 0.1 to 0.76 P0 were achieved at 0 degrees C with temperature-step stimulation of intact fibers by varying the amount of caffeine in the bathing medium. The speed of unloaded shortening (by slack test) was found to be practically constant, which suggests that intracellular Ca2+ in the intact preparation has relatively little effect on isotonic shortening. Along with the results on tetanically stimulated fibers (force, P0), we observed a minor but significant trend for the speed to decline with lowered force levels. This trend is explained by the presence of a constant internal load equaling approximately 1% P0. The effect of Ca2+ on the shortening behavior of skinned fibers was examined at 0 and 10 degrees C. At 0 degrees C, there was practically no effect of Ca2+ on the shortening response in slack tests. At 10 degrees C, there was also no Ca2+ effect during the first activation cycle, but in subsequent cycles the speed of shortening was reduced during partial activation, which indicates that there were permanent changes in the fiber properties under these experimental conditions. The latter result could be explained if the internal load had increased to approximately 5% P0 in the modified skinned fiber (compared with 1% P0 in intact fiber). These findings show that isotonic contraction of frog fibers is intrinsically unaffected by the variations in intracellular Ca2+ that modulated the force over a nearly complete range. The results provide support for the idea that Ca2+ influences the force development in vivo by on-off switching mechanisms.
机译:这项研究通过利用分离的完整和表皮的纤维制剂,解决了活化度对体内跨桥动力学影响的长期争议。通过改变沐浴介质中咖啡因的含量,在0摄氏度下通过完整纤维的温度步进刺激,可实现0.1至0.76 P0的稳定力水平。发现空载起酥油的速度(通过松弛试验)实际上是恒定的,这表明完整制剂中的细胞内Ca 2+对等渗起酥油的影响相对较小。连同受强力刺激的纤维(力,P0)的结果一起,我们观察到随着力的降低,速度下降的趋势很小但很明显。这种趋势可以通过存在恒定的内部负载(约等于P0的1%)来解释。在0和10摄氏度下检查了Ca2 +对皮肤纤维缩短作用的影响。在0摄氏度下,松弛试验中Ca2 +对缩短反应的影响几乎没有。在10摄氏度时,在第一个活化周期中也没有Ca2 +效应,但是在随后的循环中,部分活化过程中起酥油的速度降低了,这表明在这些实验条件下纤维性能存在永久性变化。如果内部负载在改性蒙皮纤维中增加到大约5%(与完整纤维中的1%P0相比),则可以解释后者的结果。这些发现表明,青蛙纤维的等渗收缩本质上不受细胞内Ca 2+的变化的影响,该变化在几乎完整的范围内调节了力。结果为Ca2 +通过开关机制影响体内力发展的想法提供了支持。

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