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Single-channel currents from acetylcholine receptors in embryonic chick muscle. Kinetic and conductance properties of gaps within bursts.

机译:胚胎雏鸡肌肉中乙酰胆碱受体的单通道电流。突发内间隙的动力学和电导特性。

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摘要

In tissue-cultured chick muscle, bursts of current from single nicotinic ion channels contain a variety of low-conductance gaps. One population has a lifetime of approximately 0.1 ms and an unknown conductance. A second population has a lifetime of 2-10 ms and conductance of zero. The third population has a lifetime of 0.5-1 ms and a mean conductance approximately 2% that of the main conductance state. This subconductance state has an agonist-dependent lifetime, longer for suberyldicholine than for acetylcholine, and is liganded to the same extent as the main conductance state. Subconductance gaps have a linear current-voltage behavior in the range -60 to -140 mV and appear to have the same reversal potential as the main state. The subconductance state is composed of a group of states which interconvert with correlation times longer than 300 microseconds.
机译:在组织培养的雏鸡肌肉中,来自单个烟碱离子通道的电流爆发包含各种低电导间隙。一个人口的寿命约为0.1毫秒,电导未知。第二种群的寿命为2-10毫秒,电导为零。第三族的寿命为0.5-1 ms,平均电导约为主要电导状态的2%。该亚电导状态具有取决于激动剂的寿命,对于亚辛基二胆碱比对乙酰胆碱长,并且以与主要电导状态相同的程度进行配位。次导体间隙在-60至-140 mV范围内具有线性电流-电压行为,并且似乎具有与主状态相同的反向电位。次导状态由一组状态互相关换,该状态的互相关时间长于300微秒。

著录项

  • 作者

    Auerbach, A; Sachs, F;

  • 作者单位
  • 年度 1984
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  • 原文格式 PDF
  • 正文语种 en
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