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Excitation-Contraction Coupling in a Barnacle Muscle Fiber As Examined with Voltage Clamp Technique

机译:电压钳技术研究的藤壶肌纤维中的激励-收缩耦合

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摘要

Relations between the membrane potential and the tension associated with changes in membrane potential were analyzed in barnacle giant muscle fibers by using voltage clamp techniques. With a step change in membrane potential the tension reaches its final level with a time course which is expressed by the difference of two exponential functions. The time constants τ1 (0.2–0.4 sec at 23°C) and τ2 (0.07–0.12 sec at 23°C) are independent of the new membrane potential at least for a relatively small membrane potential change while the final level of tension is a function of the potential. Decreasing the temperature increases both τ1 and τ2 (Q 10 = -2 to -3) and the increase of the tonicity of the external medium increases τ1 but not τ2. The final level of tension is related by an S-shaped curve to the membrane potential. The slope of the final tension-membrane potential curve increases with increasing external Ca concentration and is reduced when a small amount of transition metal ions is added to the medium. This suggests that the influx of Ca ions through the membrane is an important factor in the development of tension.
机译:通过使用电压钳技术分析了藤壶巨肌纤维中膜电位和与膜电位变化相关的张力之间的关系。随着膜电位的逐步变化,张力随着时间进程达到其最终水平,该时程由两个指数函数之差表示。时间常数τ1(在23°C时为0.2-0.4秒)和τ2(在23°C时为0.07-0.12秒)与新膜电位无关,至少对于较小的膜电位变化而言,而最终张力为功能的潜力。降低温度会同时增加τ1和τ2(Q 10 = -2至-3),并且外部介质的渗透压增加会增加τ1,但不会增加τ2。张力的最终水平通过S形曲线与膜电位相关。最终张力-膜电势曲线的斜率随着外部Ca浓度的增加而增加,而当向介质中添加少量过渡金属离子时,斜率会减小。这表明Ca离子通过膜的流入是产生张力的重要因素。

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