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非洲爪蟾卵母细胞中牵张激活离子通道的特性分析。

Characterization of stretch-activated ion channels in Xenopus oocytes.

作者信息

Yang X C, Sachs F

机构信息

Department of Biophysical Sciences, State University of New York, Buffalo 14214.

出版信息

J Physiol. 1990 Dec;431:103-22. doi: 10.1113/jphysiol.1990.sp018322.

Abstract
  1. The gating and permeation properties of endogenous stretch-activated (SA) ion channels in Xenopus oocytes have been studied using the patch-clamp single channel recording technique. 2. As estimated from the probability of being open (Po), SA channels were equally sensitive to suction or pressure. The Po was also weakly sensitive to voltage, increasing with depolarization. Channel activation did not require Ca2+. 3. Kinetic analysis of single-channel records indicated that there are three closed states and one open state. Among three closed-time distributions, the longest was the most sensitive to both pipette pressure and membrane voltage. The open time was independent of both pressure and voltage under a wide variety of ionic conditions, but was sensitive to the species of extracellular ion as follows: Na+ greater than Cs+ greater than K+ greater than Rb+ greater than Li+. The open time had a monotonic mole fraction relationship in mixtures of Li+ and K+. 4. The SA channels were cation-selective inward rectifiers. The selectivity for permeation, based on slope conductance, was: K+ greater than NH4+ greater than Cs+ greater than Rb+ greater than Na+ greater than Li+ greater than Ca2+. 5. Tetraethylammonium (TEA+) was impermeable but was not a channel blocker. 6.Open-channel current amplitude saturated with increasing extracellular K+, and was a monotonic function of the mole fraction of Li+ and K+ in mixtures of the two ions. 7. The channel has at least two separate ion binding sites: an intra-channel site suggested by the permeation data, and an allosteric site suggested by the voltage-independent effects of permeant ions on open time. A symmetric two-barrier, one-site model can quantitatively describe the permeation data. A kinetic model is proposed to quantify the gating kinetics and the effect of ion binding at the allosteric site.
摘要
  1. 利用膜片钳单通道记录技术研究了非洲爪蟾卵母细胞内源性牵张激活(SA)离子通道的门控和通透特性。2. 根据开放概率(Po)估计,SA通道对抽吸或压力同样敏感。Po对电压也有微弱的敏感性,随去极化而增加。通道激活不需要Ca2+。3. 单通道记录的动力学分析表明存在三种关闭状态和一种开放状态。在三种关闭时间分布中,最长的对移液管压力和膜电压都最敏感。在多种离子条件下,开放时间与压力和电压均无关,但对细胞外离子种类敏感,顺序如下:Na+>Cs+>K+>Rb+>Li+。在Li+和K+的混合物中,开放时间具有单调摩尔分数关系。4. SA通道是阳离子选择性内向整流器。基于斜率电导的通透选择性为:K+>NH4+>Cs+>Rb+>Na+>Li+>Ca2+。5. 四乙铵(TEA+)不可通透,但不是通道阻断剂。6. 开放通道电流幅度随细胞外K+增加而饱和,并且是两种离子混合物中Li+和K+摩尔分数的单调函数。7. 该通道至少有两个独立的离子结合位点:一个由通透数据提示的通道内位点,以及一个由通透离子对开放时间的电压非依赖效应提示的变构位点。一个对称的双势垒、一位点模型可以定量描述通透数据。提出了一个动力学模型来量化门控动力学以及变构位点处离子结合的效应。

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