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Non-stationary fluctuations of the potassium conductance at the node of ranvier of the frog.

机译:青蛙蛙嘴节处钾电导的非平稳波动。

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摘要

Potassium currents were recorded from voltage-clamped nodes of isolated, myelinated axons of Rana pipiens. Nodes were maintained in a modified Ringer solution containing tetrodotoxin to block sodium current and 47.5 mM-potassium to minimize effects of extracellular potassium accumulation. Voltage protocols included depolarizing pulses lasting a few milliseconds to several seconds. Fluctuations about the ensemble average of the current were characterized in terms of non-stationary variance and autocovariance. The fluctuations had a Gaussian amplitude distribution and were virtually free of contaminations from systematic variations of the membrane current. Corrections for background noise were based on measurements done while potassium current was blocked with tetraethylammonium, and on simulations of extrinsic current fluctuations expected to arise from noise in the actual membrane voltage. The fluctuations were attributed to variations of nodal potassium conductance, since they were absent at the reversal potential of the potassium current and at membrane voltages that do not activate potassium current. Covariances indicated that voltage steps that reversed a macroscopic potassium current also reversed the sign of the fluctuation. Plots of the conductance variance versus the mean potassium conductance were generated from both the activation and deactivation (tail) phases of the potassium currents at various voltages between -80 and +70 mV. When the current was activated by a small depolarization (-50 mV) the trajectories from both phases were indistinguishable and were fitted by the parabola expected for a single population of channels with only one open-channel conductance. Apparent single-channel conductance from the early activation phase averaged 24 pS and was not significantly voltage dependent. In contrast, experiments with large depolarizations (+10 to +70 mV) gave significantly different variance--mean trajectories during activation and deactivation and these trajectories were poorly fitted by parabola. This result indicates that the fluctuations reflect several populations of channels and/or a population of channels that can have several levels of non-zero conductance. Projections of the fluctuation covariance showed long correlations, as well as the rapidly decaying component expected from the activation gating of channels. A slow fluctuation arose at a time slightly later than the rise of potassium current, spanned the entire length of brief depolarizations, and extended up to 880 ms during long depolarizations.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:记录了来自树蛙皮的孤立,有髓鞘的轴突的电压钳位节点的钾电流。将结节保持在含有河豚毒素的改良林格溶液中,以阻断钠电流和47.5 mM钾,以最大程度地减少细胞外钾积累的影响。电压协议包括持续数毫秒至数秒的去极化脉冲。用非平稳方差和自协方差来表征关于电流整体平均值的波动。波动具有高斯振幅分布,并且几乎没有膜电流的系统变化造成的污染。对背景噪声的校正基于在四乙基铵阻断钾电流的同时进行的测量,以及基于实际膜电压中的噪声预期产生的外部电流波动的模拟。波动归因于节点钾电导的变化,因为在钾电流的反转电位和不激活钾电流的膜电压下不存在波动。协方差表明,逆转宏观钾电流的电压阶跃也逆转了波动的迹象。在-80和+70 mV之间的各种电压下,由钾电流的激活和失活(尾)相生成电导方差与平均钾电导率的关系图。当电流通过小的去极化(-50 mV)激活时,来自两个相的轨迹是无法区分的,并且与抛物线拟合,该抛物线适用于仅具有一个明渠电导的单一渠道人口。来自早期激活阶段的表观单通道电导平均为24 pS,并且与电压无关。相比之下,具有较大去极化(+10至+70 mV)的实验给出了明显不同的方差-激活和去激活期间的平均轨迹,并且这些轨迹很难被抛物线拟合。该结果表明,波动反映了多个通道总数和/或可能具有多个非零电导水平的通道总数。波动协方差的投影显示出长的相关性,以及通道的激活门控所预期的快速衰减的分量。缓慢波动的发生时间稍晚于钾电流上升的时间,跨越短暂的去极化的整个长度,并在长的去极化期间延长至880 ms。(摘要截断为400字)

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