Single-channel analysis of Pb2+ modified steady-state Na-conductance in snail neurons.

O N Osipenko, T Kiss
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Abstract

Patch-clamp technique was used in order to study properties of the steady-state Na-channel in snail neurons. Experiments revealed that Pb-ions, applied extracellularly, close these channels, which are preferably in open state at the resting membrane potential. Elementary currents have a linear current-voltage (I-V) relationship with single channel conductance of 14 pS between -100 and -40 mV both in control saline and in the presence of 50 microM Pb in the pipette. Pb-ions decreased the mean open and increased the mean closed time. It was found that both open and closed times showed little voltage-dependence, however the probabilities of the open and closed times proved to be voltage-dependent. Open and closed time histograms were fitted by one exponential, therefore first order kinetics were assumed for the blocking effect of Pb2+ at the single channel level.

Pb2+修饰蜗牛神经元稳态na电导的单通道分析。
采用膜片钳技术研究了蜗牛神经元稳态na通道的特性。实验表明,细胞外施加的铅离子关闭了这些通道,这些通道在静息膜电位下优选处于开放状态。无论在对照盐水中还是在移液器中存在50微米铅的情况下,基本电流在-100和-40 mV之间与14 pS的单通道电导呈线性关系。pb离子降低了平均打开时间,增加了平均关闭时间。结果表明,打开和关闭时间对电压的依赖性很小,但打开和关闭时间的概率与电压有关。打开和关闭时间直方图由一个指数拟合,因此假设Pb2+在单通道水平上的阻断作用为一级动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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