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大鼠和牛蛙感觉神经元中的ATP激活通道:电流-电压关系及单通道行为

ATP-activated channels in rat and bullfrog sensory neurons: current-voltage relation and single-channel behavior.

作者信息

Bean B P, Williams C A, Ceelen P W

机构信息

Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

J Neurosci. 1990 Jan;10(1):11-9. doi: 10.1523/JNEUROSCI.10-01-00011.1990.

Abstract

Ionic currents activated by extracellular adenosine 5'-triphosphate (ATP) were studied in voltage-clamped dorsal root ganglion neurons from rats and bullfrogs. Under quasiphysiological ionic conditions, ATP-activated current reversed near 0 mV and showed strong inward rectification. Strong inward rectification was maintained even in symmetric solutions of divalent-free Cs glutamate. Examined with a resolution of 10s of microseconds, the rectification was instantaneous. Inward current was greatly reduced when N-methyl-D-glucamine was substituted for external Na. ATP-activated inward currents could be recorded with Ca as the only external cation; estimated from reversal potentials, the ratio of Ca to Na permeability is about 0.3. Unitary channel activity could be recorded when ATP was applied to outside-out patches. When activated, a single channel flickered rapidly, with a mean current of about 0.5 pA at -100 mV. Large concentrations of ATP put the channel in the activated, flickery condition virtually all the time, while at lower concentrations, periods of flickering were interspersed with closures. Analysis of whole-cell current fluctuations showed precisely the characteristics expected if such channels underlie the macroscopic currents.

摘要

在电压钳制的大鼠和牛蛙背根神经节神经元中,研究了细胞外5'-三磷酸腺苷(ATP)激活的离子电流。在准生理离子条件下,ATP激活电流在0 mV附近反转,并表现出强烈的内向整流。即使在无二价阳离子的Cs谷氨酸对称溶液中,也能保持强烈的内向整流。以几十微秒的分辨率进行检测时,整流是瞬间完成的。当用N-甲基-D-葡萄糖胺替代外部Na时,内向电流大大降低。以Ca作为唯一的外部阳离子时,可以记录到ATP激活的内向电流;根据反转电位估计,Ca与Na的通透性之比约为0.3。当将ATP应用于外翻膜片时,可以记录到单通道活性。激活后,单个通道快速闪烁,在-100 mV时平均电流约为0.5 pA。高浓度的ATP几乎使通道一直处于激活的闪烁状态,而在较低浓度下,闪烁期与关闭期交替出现。全细胞电流波动分析精确显示了如果此类通道是宏观电流的基础时所预期的特征。

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