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去神经支配的成年蟾蜍缝匠肌纤维中离子通过单个乙酰胆碱激活通道的渗透:温度的影响

Ion permeation through single ACh-activated channels in denervated adult toad sartorius skeletal muscle fibres: effect of temperature.

作者信息

Quartararo N, Barry P H

机构信息

School of Physiology and Pharmacology, University of New South Wales, Kensington, Australia.

出版信息

Pflugers Arch. 1988 Jan;411(1):101-12. doi: 10.1007/BF00581653.

Abstract

The gigaohm seal technique was used to study the effects of temperature on ion permeation through acetylcholine-activated channels. This was done in cell-attached patches of the extrajunctional membrane of chronically-denervated, enzyme-treated cells from sartorius muscle of the toad Bufo marinus. The predominant extracellular cation in the pipette solution was Na+. Single channel current-voltage curves were measured at different temperatures and electrodiffusion and three-site-four-barrier rate theory models were used to characterize ion permeation through the channels and determine the effects of temperature on permeation parameters. The fitting of the experimental data to these models suggested the presence of at least three and probably more ion-selective sites within the channel. The most frequently occurring channel type (greater than 95% of channel openings) had a chord conductance of 25 pS at 11 degrees C and -70 mV and was classified as 'extrajunctional'. The single channel conductance of this channel had a low temperature-dependence (Q10 approximately equal to 1.3). The apparent activation enthalpy, Ea, for the conductance between 11 degrees C and 20 degrees C, did not appear to be significantly voltage-sensitive and had a value of about 17 +/- 2 kJ . mol-1 at a voltage of -70 mV. The Arrhenius plot of conductance appeared linear between 11 and 20 degrees C at all potentials examined. The data was consistent with a break in the slope of the Arrhenius plot at temperatures between 5 and 11 degrees C at all potentials examined, suggesting a possible phase transition of the membrane lipids. In contrast to the relative permeability, which was not very temperature sensitive, the relative binding constant was significantly affected by temperature. The relative Na/K binding constant sequence was: K5 degrees C greater than K20 degrees C greater than K15 degrees C much greater than K11 degrees C. In addition, the decrease in conductance observed at the most depolarized potentials was accentuated as the temperature was increased, suggesting a rate-limiting access step for ions from the intracellular solution into the channel.

摘要

采用千兆欧封接技术研究温度对离子通过乙酰胆碱激活通道渗透的影响。实验在蟾蜍(Bufo marinus)缝匠肌经长期去神经支配和酶处理的细胞的结外膜的细胞贴附式膜片上进行。移液管溶液中主要的细胞外阳离子是Na⁺。在不同温度下测量单通道电流-电压曲线,并使用电扩散和三位点四屏障速率理论模型来表征离子通过通道的渗透情况,并确定温度对渗透参数的影响。将实验数据拟合到这些模型表明通道内至少存在三个且可能更多的离子选择性位点。最常见的通道类型(超过95%的通道开放)在11℃和-70 mV时的弦电导为25 pS,被归类为“结外”通道。该通道的单通道电导对温度的依赖性较低(Q10约等于1.3)。在11℃至20℃之间,电导的表观活化焓Ea似乎对电压不敏感,在-70 mV的电压下约为17±2 kJ·mol⁻¹。在所研究的所有电位下,电导的阿伦尼乌斯图在11℃至20℃之间呈线性。数据表明在所研究的所有电位下,在5℃至11℃之间温度下阿伦尼乌斯图的斜率出现断点,这表明膜脂可能发生相变。与相对渗透率对温度不太敏感相反,相对结合常数受温度的显著影响。相对Na/K结合常数顺序为:K5℃>K20℃>K15℃>>K11℃。此外,随着温度升高,在最去极化电位下观察到的电导下降加剧,这表明离子从细胞内溶液进入通道存在限速进入步骤。

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