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从大鼠交感神经元记录的ATP门控通道的特性:电压依赖性和Zn2+离子调节

Properties of ATP-gated channels recorded from rat sympathetic neurons: voltage dependence and regulation by Zn2+ ions.

作者信息

Cloues R

机构信息

Department of Pharmacology, University College London, United Kingdom.

出版信息

J Neurophysiol. 1995 Jan;73(1):312-9. doi: 10.1152/jn.1995.73.1.312.

Abstract
  1. I recorded ATP-gated channels from excised outside-out patches from rat sympathetic neurons. The channels had a unitary conductance of approximately 12 pS at -80 mV, were activated only when ATP was present in the bath, and could be blocked by the P2-purinoceptor antagonist suramin. 2. The open probability of the channels showed a strong voltage dependence, increasing significantly with hyperpolarization. This suggests that whole cell rectification of currents evoked by P2X receptor activation is a result of channel voltage dependence and not of properties of ion permeation. 3. Low concentrations of extracellular Zn2+, which has previously been shown to potentiate whole cell ATP-evoked currents, increased the open probability of ATP-gated channels without altering the unitary conductance. 4. Zn2+ increased both the opening frequency and the burst duration of ATP-gated channels. The results are consistent with Zn2+ acting as an allosteric modulator of the P2X receptor in sympathetic neurons.
摘要
  1. 我记录了从大鼠交感神经元分离出的外向型膜片上的ATP门控通道。这些通道在-80 mV时的单位电导约为12 pS,仅在浴液中存在ATP时被激活,并且可被P2嘌呤受体拮抗剂苏拉明阻断。2. 通道的开放概率表现出强烈的电压依赖性,随着超极化而显著增加。这表明P2X受体激活所诱发电流的全细胞整流是通道电压依赖性的结果,而非离子通透特性的结果。3. 低浓度的细胞外Zn2+(先前已表明其可增强全细胞ATP诱发的电流)增加了ATP门控通道的开放概率,而不改变单位电导。4. Zn2+增加了ATP门控通道的开放频率和爆发持续时间。这些结果与Zn2+作为交感神经元中P2X受体的变构调节剂的作用一致。

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