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Kinetics of inactivation and restoration from inactivation of the L-type calcium current in human myotubes.

机译:人肌管中L型钙电流失活和失活恢复的动力学。

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摘要

1. Inactivation and recovery kinetics of L-type calcium currents were measured in myotubes derived from satellite cells of human skeletal muscle using the whole cell patch clamp technique. 2. The time course of inactivation at potentials above the activation threshold was obtained from the decay of the current during 15 s depolarizing pulses. At subthreshold potentials, prepulses of different durations, followed by +20 mV test pulses, were used. The time course could be well described by single exponential functions of time. The time constant decreased from 17.8 +/- 7.5 s at -30 mV to 1.78 +/- 0.15 s at +50 mV. 3. Restoration from inactivation caused by 15 s depolarization to +20 mV was slowed by depolarization in the restoration interval. The time constant increased from 1.11 +/- 0.17 s at -90 mV to 7.57 +/- 2.54 s at -10 mV. 4. Restoration showed different kinetics depending on the duration of the conditioning depolarization. While the time constant was similar at restoration potentials of -90 and -50 mV after a 1 s conditioning prepulse, it increased with increasing prepulse duration at -50 mV and decreased at -90 mV. 5. The experiments showed that the rates of inactivation and restoration of the L-type calcium current in human myotubes were not identical when observed at the same potential. The results indicate the presence of more than one inactivated state and point to different voltage-dependent pathways for inactivation and restoration.
机译:1.使用全细胞膜片钳技术,在源自人骨骼肌卫星细胞的肌管中测量L型钙电流的失活和恢复动力学。 2.在15 s的去极化脉冲期间电流的衰减获得了在高于激活阈值的电势下失活的时间过程。在亚阈值电势下,使用了不同持续时间的预脉冲,然后是+20 mV测试脉冲。时间过程可以通过时间的单指数函数很好地描述。时间常数从-30 mV时的17.8 +/- 7.5 s降至+50 mV时的1.78 +/- 0.15 s。 3.在恢复间隔中,通过去极化减慢了15 s的去极化引起的失活恢复至+20 mV的速度。时间常数从-90 mV时的1.11 +/- 0.17 s增加到-10 mV时的7.57 +/- 2.54 s。 4.恢复显示不同的动力学,这取决于条件性去极化的持续时间。尽管在经过1 s的预脉冲后,恢复时间分别为-90和-50 mV时,时间常数相似,但在-50 mV时随着预脉冲持续时间的增加而增加,而在-90 mV时则降低。 5.实验表明,以相同的电位观察时,人肌管中L型钙电流的失活和恢复速率不同。结果表明存在一种以上的失活状态,并指向用于失活和恢复的不同电压依赖性途径。

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