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组织培养的鸡胚骨骼肌中的牵张激活单离子通道电流

Stretch-activated single ion channel currents in tissue-cultured embryonic chick skeletal muscle.

作者信息

Guharay F, Sachs F

出版信息

J Physiol. 1984 Jul;352:685-701. doi: 10.1113/jphysiol.1984.sp015317.

Abstract

The membrane of tissue-cultured chick pectoral muscle contains an ionic channel which is activated by membrane stretch. Nicotinic channels and Ca2+-activated K+ channels are not affected by stretch. In 150 mM-external K+ and 150 mM-internal Na+ the channel has a conductance of 70 pS, linear current-voltage relationship between -50 and -140 mV and a reversal potential of +30 mV. Kinetic analysis of single-channel records indicates that there are one open (O) and three closed (C) states. The data can be fitted by the reaction scheme: C1-C2-C3-O. Only the rate constant that governs the C1-C2 transition (k1,2) is stretch-sensitive. None of the rates are voltage-sensitive. The rate constant k1,2 varies with the square of the tension as k1, 2 = k0 X e alpha T2, where alpha is a constant describing the sensitivity to stretch and T is the tension. A typical value of alpha is 0.08 (dyn cm-1)-2. Following exposure to cytochalasin B the channel becomes more sensitive to stretch. The stretch-sensitivity constant, alpha, increases from 0.08 to 2.4 (dyn cm-1)-2. The probability of the channel being open is strongly dependent upon the extracellular K+ concentration. With a suction of 2 cmHg the probability increases from 0.004 in normal saline (5 mM-K+) to 0.26 in 150 mM-K+. The channel appears to gather force from a large area of membrane (greater than 3 X 10(5) A2), probably by a cytochalasin-resistant cytoskeletal network.

摘要

组织培养的鸡胸肌膜含有一种离子通道,该通道可被膜拉伸激活。烟碱型通道和Ca2+激活的K+通道不受拉伸影响。在细胞外K+浓度为150 mM和细胞内Na+浓度为150 mM时,该通道的电导为70 pS,在-50至-140 mV之间呈线性电流-电压关系,反转电位为+30 mV。单通道记录的动力学分析表明存在一个开放(O)状态和三个关闭(C)状态。数据可以用反应方案拟合:C1-C2-C3-O。只有控制C1-C2转变的速率常数(k1,2)对拉伸敏感。所有速率均对电压不敏感。速率常数k1,2随张力的平方变化,即k1, 2 = k0 X e alpha T2,其中alpha是描述对拉伸敏感性的常数,T是张力。alpha的典型值为0.08(dyn cm-1)-2。暴露于细胞松弛素B后,该通道对拉伸变得更敏感。拉伸敏感性常数alpha从0.08增加到2.4(dyn cm-1)-2。通道开放的概率强烈依赖于细胞外K+浓度。在2 cmHg的吸力下,概率从正常生理盐水(5 mM-K+)中的0.004增加到150 mM-K+中的0.26。该通道似乎从大面积的膜(大于3 X 10(5) A2)收集力量,可能是通过一个对细胞松弛素耐药的细胞骨架网络。

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