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大鼠海马神经元培养物中γ-氨基丁酸激活的氯离子通道的膜片钳研究

Patch-clamp studies of chloride channels activated by gamma-aminobutyric acid in cultured hippocampal neurones of the rat.

作者信息

Ozawa S, Yuzaki M

出版信息

Neurosci Res. 1984 Oct;1(5):275-93. doi: 10.1016/0168-0102(84)90034-8.

DOI:10.1016/0168-0102(84)90034-8
PMID:6100323
Abstract

The properties of the GABA-activated ion channel in hippocampal neurones prepared from 17- to 19-day-old fetal rats in dispersed cell cultures were studied with the patch-clamp techniques. These neurones had chemosensitivity to gamma-aminobutyric acid (GABA) in the absence of synaptic inputs. GABA activated chloride ion channels selectively in these neurones. The GABA-induced Cl- current was detectable with greater than 1 microM GABA. The amplitude of the current increased with higher concentrations of GABA and apparently saturated at 100 microM. The effective single-channel conductance (gamma) was estimated to be 19 pS from the mean and variance of the steady-state GABA-induced current fluctuation in the whole-cell recordings. The power density spectra for GABA-induced current fluctuations in the whole-cell as well as cell-free outside-out membrane patch recordings had more than a single Lorentzian component. The application of GABA induced discrete pulse-like current flows through the cell-free outside-out membrane patch, after the number of channels activated by GABA had decreased due to the rundown. The single-channel conductance estimated from the amplitude of the current pulse was 29 pS when the intra- and extracellular Cl- concentrations were 150 and 120 mM, respectively. In addition to the above conducting state, the GABA channel had several open states with lower conductances. The apparent discrepancy between the effective single-channel conductance estimated from noise analysis and the single-channel conductances directly measured with individual channels may be due, at least in part, to the presence of multiple conducting states.

摘要

采用膜片钳技术研究了从17至19日龄胎鼠制备的分散细胞培养海马神经元中γ-氨基丁酸(GABA)激活的离子通道特性。这些神经元在无突触输入时对GABA具有化学敏感性。GABA在这些神经元中选择性激活氯离子通道。大于1微摩尔GABA时可检测到GABA诱导的氯离子电流。电流幅度随GABA浓度升高而增加,在100微摩尔时明显饱和。根据全细胞记录中稳态GABA诱导电流波动的均值和方差,有效单通道电导(γ)估计为19皮西门子。全细胞以及游离的外侧向外膜片记录中GABA诱导电流波动的功率密度谱具有不止一个洛伦兹分量。在由于通道功能衰减导致GABA激活的通道数量减少后,施加GABA会诱导离散的脉冲样电流通过游离的外侧向外膜片。当细胞内和细胞外氯离子浓度分别为150和120毫摩尔时,根据电流脉冲幅度估计的单通道电导为29皮西门子。除上述导通状态外,GABA通道还有几种低电导的开放状态。通过噪声分析估计的有效单通道电导与单个通道直接测量的单通道电导之间明显的差异,至少部分可能是由于存在多种导通状态。

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