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A bursting potassium channel in isolated cholinergic synaptosomes of Torpedo electric organ.

机译:鱼雷电器官的分离胆碱能突触体中的钾离子通道破裂。

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摘要

1. Pinched-off cholinergic nerve terminals (synaptosomes) prepared from the electric organ of Torpedo ocelata were fused into large structures (greater than 20 microns) using dimethyl sulphoxide and polyethylene glycol 1500, as previously described for synaptic vesicles from the same organ. 2. The giant fused synaptosomes were easily amenable to the patch clamp technique and 293 seals with a resistance greater than 4 G omega were obtained in the 'cell-attached' configuration. In a large fraction of the experiments, an 'inside-out' patch configuration was achieved. 3. Several types of unitary ionic currents were observed. This study describes the most frequently observed single-channel activity which was found in 247 out of the 293 membrane patches (84.3%). 4. The single-channel current-voltage relation was linear between -60 and 20 mV and showed a slope conductance of 23.8 +/- 1.3 pS when the pipette contained 350-390 mM-Na+ and the bath facing the inside of the synaptosomal membrane contained 390 mM-K+. 5. From extrapolated reversal potential measurements, it was concluded that this channel has a large selectivity for K+ over Na+ (70.4 +/- 11.5, mean +/- S.E.M.). Chloride ions are not transported significantly through this potassium channel. 6. This potassium channel has a low probability of opening. The probability of being in the open state increases upon depolarization and reaches about 1% when the inside of the patch is 20 mV positive compared to the pipette side. 7. The mean channel open time increases with depolarization; thus the product current x time (= charge) also increases upon depolarization, showing properties of an outward rectifier. 8. The potassium channel in the giant synaptosome membrane has a bursting behaviour. Open-time distribution, closed-time distribution and a Poisson analysis indicate that the minimal kinetic scheme requires one open state and three closed states.
机译:1.如前所述,用二甲亚砜和聚乙二醇1500将由鱼雷的电器官制备的夹在一起的胆碱能神经末梢(突触体)融合成大结构(大于20微米),如先前所述的来自同一器官的突触小泡。 2.巨大的融合突触小体很容易接受膜片钳技术,在“细胞附着”构型中获得了293密封,电阻大于4 GΩ。在很大一部分实验中,实现了“由内而外”的贴片配置。 3.观察到几种类型的单一离子电流。这项研究描述了最频繁观察到的单通道活性,该活性在293个膜片中占247个(84.3%)。 4.当移液管中含有350-390 mM-Na +且浴面对突触膜内部时,单通道电流-电压关系在-60和20 mV之间呈线性,并显示23.8 +/- 1.3 pS的斜率电导。包含390 mM-K +。 5.根据外推的反向电势测量结果,可以得出结论,该通道对钾离子的选择性高于对钠离子的选择性(70.4 +/- 11.5,平均+/- S.E.M.)。氯离子不会明显地通过该钾通道转运。 6.该钾通道打开的可能性低。相对于移液器侧,当去极化时,处于打开状态的可能性增加,并且当贴片内部为20 mV正时,达到打开状态的可能性约为1%。 7.平均信道打开时间随着去极化而增加;因此,乘积电流x时间(=电荷)在去极化时也会增加,显示出向外整流器的特性。 8.巨大的突触体膜中的钾通道具有爆发性行为。开放时间分布,封闭时间分布和泊松分析表明,最小动力学方案需要一个开放状态和三个封闭状态。

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