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On the mechanism of action of picrotoxin on GABA receptor channels in dissociated sympathetic neurones of the rat.

机译:微小毒素对大鼠离体交感神经元GABA受体通道的作用机理。

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摘要

1. The mechanism of action of picrotoxin on GABA receptor channels in rat sympathetic neurones has been investigated with whole-cell clamp. In addition, the action of picrotoxin on single GABA channels has been examined in outside-out membrane patches from these cells. 2. Picrotoxin, at concentrations which dramatically reduced the amplitude of whole-cell GABA currents, did not alter the spectral time constants or single-channel conductance estimated by analysis of GABA-activated current noise. This was observed at potentials both negative and positive to the GABA reversal potential (i.e. for both inward and outward GABA currents). In control conditions, the slow and fast time constants from GABA noise were 40 +/- 14 ms and 2 +/- 0.4 ms, while the estimated single-channel conductance was 14 +/- 2 pS. In the presence of picrotoxin, the time constants and estimated single-channel conductance were 41 +/- 5 ms, 2.7 +/- 0.6 ms and 15 +/- 2.3 pS. 3. Picrotoxin did not alter the shape of the whole-cell GABA current-voltage relationship, indicating that the steady-state block was not voltage dependent. The lack of effect of picrotoxin on the GABA noise spectra and the lack of outward rectification makes it unlikely that picrotoxin acts by a simple voltage-dependent (or voltage-independent) channel blocking mechanism. In the presence of picrotoxin the reversal potential for GABA remained at approximately 0 mV in symmetrical chloride. 4. Distributions of total burst durations, obtained from single-channel records with low concentrations of GABA, were fitted with three or four exponential components. Picrotoxin had no consistent effect on the time constants of the total burst length distributions. It also did not alter the amplitude of the main conductance state. However, picrotoxin did reduce the frequency of channel openings. 5. The application of brief ionophoretic pulses of GABA, to cells under whole-cell voltage clamp, revealed that the rate of onset of block by picrotoxin was accelerated in the presence of GABA. In the absence of agonist, picrotoxin produced a more slowly equilibrating block. 6. Our data are consistent with a mechanism whereby picrotoxin binds preferentially to an agonist bound form of the receptor and stabilizes an agonist-bound shut state. This could, for example, mean that picrotoxin enhances the occurrence of a desensitized state or an allosterically blocked state.
机译:1.用全细胞钳研究了微毒素对大鼠交感神经元GABA受体通道的作用机理。另外,已经在这些细胞的外向内膜片中检查了微毒素对单个GABA通道的作用。 2.微量毒素的浓度可显着降低全细胞GABA电流的幅度,但不会改变通过分析GABA激活的电流噪声而估计的频谱时间常数或单通道电导。在对GABA逆转电位既有负电又有正电的电势下(即对于内向和外向GABA电流都可以观察到)。在控制条件下,来自GABA噪声的慢时间和快时间常数分别为40 +/- 14 ms和2 +/- 0.4 ms,而估计的单通道电导为14 +/- 2 pS。在存在微毒素的情况下,时间常数和估计的单通道电导分别为41 +/- 5 ms,2.7 +/- 0.6 ms和15 +/- 2.3 pS。 3.微毒素没有改变全细胞GABA电流-电压关系的形状,表明稳态阻滞与电压无关。缺乏微毒素对GABA噪声谱的影响以及缺乏向外的整流作用,使得微毒素不太可能通过简单的电压依赖性(或电压依赖性)通道阻断机制起作用。在存在微毒素的情况下,对称氯化物中GABA的逆转电位保持在约0 mV。 4.从具有低浓度GABA的单通道记录获得的总爆发持续时间的分布与三个或四个指数成分拟合。微小毒素对总突发长度分布的时间常数没有一致的影响。它也没有改变主电导状态的幅度。然而,微毒素确实减少了通道开放的频率。 5.在全细胞电压钳下向细胞施加短暂的GABA离子电离脉冲,发现在GABA存在的情况下,微毒素引起的阻断发生率加快。在没有激动剂的情况下,pictotoxin产生了一个更缓慢的平衡块。 6.我们的数据与微毒素优先结合受体的激动剂结合形式并稳定激动剂结合的闭合状态的机制一致。例如,这可能意味着微毒素会增强脱敏状态或变构阻断状态的发生。

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