Suppr超能文献

人红细胞膜的钙激活钾电导:外向电流的电压依赖性钠阻断

Ca2+-activated K+ conductance of the human red cell membrane: voltage-dependent Na+ block of outward-going currents.

作者信息

Stampe P, Vestergaard-Bogind B

机构信息

Zoophysiological Laboratory B, August Krogh Institute, University of Copenhagen, Denmark.

出版信息

J Membr Biol. 1989 Nov;112(1):9-14. doi: 10.1007/BF01871159.

Abstract

Human red cells were prepared with various cellular Na+ and K+ concentrations at a constant sum of 156 mM. At maximal activation of the K+ conductance. gK(Ca). the net efflux of K+ was determined as a function of the cellular Na+ and K+ concentrations and the membrane potential. Vm, at a fixed [K+]ex of approximately 3.5 mM. Vm was only varied from (Vm-EK) approximately equal to 25 mV and upwards, that is, outside the range of potentials with a steep inward rectifying voltage dependence (Stampe & Vestergaard-Bogind, 1988). gK(Ca) as a function of cellular Na+ and K+ concentrations at Vm = -40.0 and 40 mV indicated a competitive, voltage-dependent block of the outward current conductance by cellular Na+. Since the present Ca2+-activated K+ channels have been shown to be of the multi-ion type, the experimental data from each set of Na+ and K+ concentrations were fitted separately to a Boltzmann-type equation, assuming that the outward current conductance in the absence of cellular Na+ is independent of voltage. The equivalent valence determined in this way was a function of the cellular Na+ concentration increasing from 0.5 to 1.5 as this concentration increased from 11 to 101 mM. Data from a previous study of voltage dependence as a function of the degree of Ca2+ activation of the channel could be accounted for in this way as well. It is therefore suggested that the voltage dependence of gK(Ca) for outward currents at (Vm-Ek) greater than 25 mV reflects a voltage-dependent Na+ block of the Ca2+-activated K+ channels.

摘要

制备了细胞内Na⁺和K⁺浓度各异但总和恒定为156 mM的人红细胞。在K⁺电导gK(Ca)达到最大激活时,在细胞外[K⁺]约为3.5 mM固定不变的情况下,测定K⁺的净外流作为细胞内Na⁺和K⁺浓度以及膜电位Vm的函数。Vm仅在(Vm - EK)约等于25 mV及以上的范围内变化,即处于具有陡峭内向整流电压依赖性的电位范围之外(Stampe和Vestergaard - Bogind,1988)。在Vm = -40.0和40 mV时,gK(Ca)作为细胞内Na⁺和K⁺浓度的函数表明,细胞内Na⁺对向外电流电导存在竞争性的电压依赖性阻断。由于目前已证明Ca²⁺激活的K⁺通道属于多离子类型,假设在没有细胞内Na⁺时向外电流电导与电压无关,将每组Na⁺和K⁺浓度的实验数据分别拟合到玻尔兹曼型方程。以这种方式确定的等效价是细胞内Na⁺浓度的函数,当该浓度从11 mM增加到101 mM时,等效价从0.5增加到1.5。之前关于通道Ca²⁺激活程度与电压依赖性关系的研究数据也可以用这种方式解释。因此,有人提出,在(Vm - Ek)大于25 mV时,gK(Ca)对向外电流的电压依赖性反映了Ca²⁺激活的K⁺通道存在电压依赖性的Na⁺阻断。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验