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Isotonic contraction of skinned muscle fibers on a slow time base: effects of ionic strength and calcium

机译:皮肤肌肉纤维在等速时基上的等张收缩:离子强度和钙的影响

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摘要

The force development by calcium-activated skinned frog skeletal muscle fibers and the motion on a slow time base after a quick decrease in load were studied at 0-1 degrees C as a function of the ionic strength and the degree of activation. The ionic strength was varied between 50 and 190 mM by adding appropriate concentrations of KCl to the bathing solution. Under these conditions, the fibers could be maximally activated for several cycles at low ionic strength without developing residual tension. We found that the steady isometric force in fully activated fibers linearly decreased when the KCl concentration was increased from 0 to 140 mM. The steady isotonic motion at a given relative load in fully activated fibers was almost the same at KCl concentration greater than or equal to 50 mM. In 0 and 20 mM KCl, the isotonic velocity decreased continuously for more than 300 ms. At a given relative load, the initial velocity of the motion in 0 and 20 mM KCl was about 0.6 and 0.9 times, respectively, that in 140 mM KCl. The initial velocity decreased further when residual tension developed; this observation provides additional evidence that residual tension may reflect the presence of an internal load. The effect of calcium on the motion was examined at 70 mM KCl. In this solution, the motion during the velocity transient at a given relative load appeared to be the same at different levels of activation. The speed of the subsequent motion was almost steady at high calcium levels but decreased continuously in low calcium levels. These results support the idea that at low ionic strength the response of the fiber to calcium is switch-like, but that other factors also affect the contraction mechanism under these conditions.
机译:研究了钙激活的皮肤青蛙骨骼肌纤维的力发展以及负荷快速降低后在缓慢的时间基础上的运动,该运动在0-1摄氏度下作为离子强度和活化程度的函数。通过向沐浴液中添加适当浓度的KCl,可以使离子强度在50至190 mM之间变化。在这些条件下,纤维可以在低离子强度下最大程度地活化几个循环而不会产生残余张力。我们发现,当KCl浓度从0增加到140 mM时,完全活化的纤维中的稳定等轴测力线性下降。在KCl浓度大于或等于50 mM时,在完全活化的纤维中,在给定的相对负载下,稳定的等渗运动几乎相同。在0和20 mM KCl中,等渗速度连续下降300毫秒以上。在给定的相对负载下,运动的初始速度在0和20 mM KCl中分别约为在140 mM KCl中的0.6倍和0.9倍。当残余张力产生时,初始速度进一步降低。该观察结果提供了其他证据,表明残余张力可能反映了内部载荷的存在。在70 mM KCl下检查了钙对运动的影响。在这种解决方案中,在给定的相对负载下,速度瞬变期间的运动在不同的激活水平下似乎是相同的。随后的运动速度在高钙水平下几乎稳定,但在低钙水平下连续下降。这些结果支持了这样的想法,即在低离子强度下纤维对钙的响应呈开关状,但在这些条件下其他因素也会影响收缩机制。

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