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电压钳制的藤壶肌纤维中的收缩激活现象。

Contractile activation phenomena in voltage-clamped barnacle muscle fiber.

作者信息

Caputo C, Dipolo R

出版信息

J Gen Physiol. 1978 May;71(5):467-88. doi: 10.1085/jgp.71.5.467.

Abstract

Tension development in voltage-clamped barnacle muscle fibers occurs with depolarizing pulses so small as not to activate the potassium and calcium conductance systems. Peak tension and the tension time integral appear to be graded by both amplitude and duration of the depolarizing pulses. Subthreshold depolarizing conditioning pulses shorter than 500 ms potentiate the response to a given test pulse. This effect diminishes and reverts when the duration of the conditioning pulse is increasingly prolonged. The relationship between fiber membrane potential and tension developed in response to depolarizing pulses is described by an S-shaped curve. The tension saturates at a membrane potential of about +10 mV (inside positive). For a given pulse duration the saturation value remains constant even when the fiber interior reaches a value of +230 mV, which is well above what may be estimated to be the equilibrium potential of calcium ions (Eca = +120). In the presence of 5 mM external procaine, the shape of the tension-potential curve changes; the maximum value tension besides being diminished is not sustained by falls when the potential approaches the estimated value for Eca. These results suggest that under physiological conditions the contractile activator is probably released from an internal store, and that the calcium entering the fiber as inward current does not play a direct major role in contractile activation.

摘要

在电压钳制的藤壶肌纤维中,当去极化脉冲小到不足以激活钾离子和钙离子电导系统时,张力就会产生。峰值张力和张力时间积分似乎由去极化脉冲的幅度和持续时间共同分级。短于500毫秒的阈下去极化条件脉冲会增强对给定测试脉冲的反应。当条件脉冲的持续时间不断延长时,这种效应会减弱并逆转。纤维膜电位与去极化脉冲引起的张力之间的关系由一条S形曲线描述。在膜电位约为+10毫伏(内正)时,张力达到饱和。对于给定的脉冲持续时间,即使纤维内部达到+230毫伏的值,饱和值仍保持恒定,该值远高于估计的钙离子平衡电位(Eca = +120)。在存在5毫摩尔外部普鲁卡因的情况下,张力-电位曲线的形状会发生变化;除了最大值减小外,当电位接近Eca的估计值时,张力无法维持在下降时的水平。这些结果表明,在生理条件下,收缩激活剂可能从内部储存中释放出来,并且作为内向电流进入纤维的钙离子在收缩激活中不直接起主要作用。

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