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二硫苏糖醇对终板电流的影响。

Effects of dithiothreitol on end-plate currents.

作者信息

Terrar D A

出版信息

J Physiol. 1978 Mar;276:403-17. doi: 10.1113/jphysiol.1978.sp012243.

Abstract
  1. End-plate currents have been studied in frog cutaneus pectoris nerve-muscle preparations mounted in continuously flowing solution, using the voltage clamp technique. 2. Exposure of the muscle to 1 mM-dithiothreitol reduced the amplitude of end-plate currents by a factor of 2.7 (mean; range 1.6-3.4; twelve fibres). 3. 1 mM-dithiothreitol also caused a 2.7-fold (2.3-3.1) increase in the rate of decay, and a 1.4-fold (1.3-1.6) decrease in the time to peak of end-plate currents. During the onset of action of dithiothreitol, there was little or no indication of departure of end-plate current decay from a simple exponential. 4. Dithiothreitol actions on amplitude and decay of end-plate currents developed with similar time courses and both effects were slower in onset at pH 7.2 than at pH 8.5. 5. The actions of dithiothreitol were reversed by exposure of the muscle to 1 mM-5,5'-dithio-bis-(2-nitrobenzoic acid). 6. Following dithiothreitol treatment, the rates of decay of end-plate currents continued to depend on membrane potential; there was little or no change in the slope of the relation between in (rate of decay) and membrane potential, consistent with little or no change in the dipole moment of a gating molecule for ion channels. 7. Dithiothreitol changed the relation between peak end-plate current and membrane potential, so that peak conductance increased at more negative membrane potentials; this finding could be accounted for in terms of the closure of ion-channel gates becoming faster though remaining voltage-sensitive after exposure to dithiothreitol. 8. It is concluded that dithiothreitol causes changes in the kinetics of gating of ion channels associated with receptors and that these changes accompany changes in the binding of ACh to receptors.
摘要
  1. 采用电压钳技术,在置于持续流动溶液中的蛙胸皮神经-肌肉标本上研究了终板电流。2. 将肌肉暴露于1 mM二硫苏糖醇中,终板电流幅度降低了2.7倍(平均值;范围1.6 - 3.4;12根纤维)。3. 1 mM二硫苏糖醇还使衰减速率增加了2.7倍(2.3 - 3.1),终板电流峰值时间减少了1.4倍(1.3 - 1.6)。在二硫苏糖醇作用开始时,几乎没有迹象表明终板电流衰减偏离简单指数形式。4. 二硫苏糖醇对终板电流幅度和衰减的作用具有相似的时间进程,且在pH 7.2时两种效应的起效都比pH 8.5时慢。5. 将肌肉暴露于1 mM 5,5'-二硫代双(2-硝基苯甲酸)可逆转二硫苏糖醇的作用。6. 二硫苏糖醇处理后,终板电流的衰减速率仍依赖于膜电位;ln(衰减速率)与膜电位之间关系的斜率几乎没有变化,这与离子通道门控分子偶极矩几乎没有变化一致。7. 二硫苏糖醇改变了终板电流峰值与膜电位之间的关系,使得在更负的膜电位下峰值电导增加;这一发现可以用离子通道门控在暴露于二硫苏糖醇后虽仍对电压敏感但关闭速度加快来解释。8. 得出结论:二硫苏糖醇导致与受体相关的离子通道门控动力学发生变化,且这些变化伴随着乙酰胆碱与受体结合的变化。

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Effects of dithiothreitol on end-plate currents.二硫苏糖醇对终板电流的影响。
J Physiol. 1978 Mar;276:403-17. doi: 10.1113/jphysiol.1978.sp012243.
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