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电压钳制的青蛙单根肌纤维的钙依赖性电活动和收缩

Calcium-dependent electrical activity and contraction of voltage-clamped frog single muscle fibres.

作者信息

Potreau D, Raymond G

出版信息

J Physiol. 1980 Oct;307:9-22. doi: 10.1113/jphysiol.1980.sp013420.

Abstract
  1. The electrical and mechanical activities of isolated frog muscle fibres have been simultaneously recorded under conditions which allow the development of a calcium permeability (chloride-free solution containing 72 mM-calcium levulinate instead of 115 mM-NaCl). 2. Long-lasting calcium action potentials and large and sustained contraction occur without inhibition of the potassium permeability. 3. The relationship observed between the slow inward calcium current and the amplitude of the contraction, under voltage-clamp conditions, resembles that found between IBa and tension in frog skeletal muscle and between ICa and the contraction in frog heart. A part of the mechanical response which is not abolished by manganese seems to be potential-dependent. 4. Integration of the current traces shows that the threshold of the contraction occurs at [Ca]1 near to 2.10(-6) M and that the contractile proteins are fully activated at [Ca]1 near to 10(-4) M, values which are in good agreement with those proposed by other authors. 5. The minimum calcium influx necessary to induce a detectable contraction is close to 4.8 p-moles/cm2. This value is 10-20 times larger than the calcium influx measured during a normal action potential. 6. On detubulated fibres the calcium permeability fails to develop: this indicates that this current originates from the T-system. The close correspondence between ICa and the contraction, and between the time course of the contraction at the end of the depolarizing steps suggests that the potential of the tubular membrane is better clamped than in normal physiological conditions.
摘要
  1. 在允许钙通透性发展的条件下(用含72 mM乙酰丙酸钙的无氯溶液代替115 mM氯化钠),同时记录了分离的青蛙肌肉纤维的电活动和机械活动。2. 出现了持久的钙动作电位以及大且持续的收缩,而钾通透性未受抑制。3. 在电压钳制条件下观察到的缓慢内向钙电流与收缩幅度之间的关系,类似于在青蛙骨骼肌中钡离子电流(IBa)与张力之间以及青蛙心脏中钙离子电流(ICa)与收缩之间所发现的关系。部分未被锰消除的机械反应似乎与电位有关。4. 对电流记录进行积分表明,收缩阈值出现在[Ca]1接近2×10⁻⁶ M时,并且收缩蛋白在[Ca]1接近10⁻⁴ M时被完全激活,这些值与其他作者提出的值非常一致。5. 诱导可检测到的收缩所需的最小钙内流接近4.8皮摩尔/平方厘米。该值比正常动作电位期间测得的钙内流大10 - 20倍。6. 在去管纤维上,钙通透性无法发展:这表明该电流源自T系统。钙离子电流(ICa)与收缩之间以及去极化步骤结束时收缩的时间进程之间的密切对应关系表明,管状膜的电位比正常生理条件下更好地被钳制。

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