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鸡睫状神经节神经元中具有生理钙水平的单个L型钙通道电导

Single L-type calcium channel conductance with physiological levels of calcium in chick ciliary ganglion neurons.

作者信息

Church P J, Stanley E F

机构信息

Snyaptic Mechanisms Section, National Institutes of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Physiol. 1996 Oct 1;496 ( Pt 1)(Pt 1):59-68. doi: 10.1113/jphysiol.1996.sp021665.

DOI:10.1113/jphysiol.1996.sp021665
PMID:8910196
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1160824/
Abstract
  1. Single L-type calcium channels in chick ciliary ganglion neurons were studied at high current resolution in cell-attached patch recordings using quartz-glass micropipettes. 2. A single open-channel current amplitude was observed when Ba2+ was the charge carrier with a conductance of 26 pS at 110 mM barium. However, with 110 mM calcium two current fluctuation amplitudes were observed. These were termed low and high fluctuation amplitudes, CaL and CaH, and had conductances of 8.8 and 12 pS, respectively. These two levels probably reflect two different channel species. CaL was identified as an L-type calcium channel on the basis of resistance to inactivation, conductance, and dihydropyridine sensitivity. 3. Single-channel current fluctuations could be detected with calcium concentrations as low as 1.0 mM. Although the unitary conductance (gamma) was much greater with barium than calcium at every concentration tested, the concentration dependence of conductance was similar for gamma Ba, gamma CaH and gamma CaL. Fitting the concentration dependencies of these conductances with a Langmuir isotherm gave KD estimates of 4.7, 5.6 and 5.0 mM for barium, CaL and CaH, respectively 4. The single-channel conductance of the L-type channel (gamma L) can be described by the relation: conductance (in pS) = 9.2/(1 + 5.6/[Ca]) where [Ca] is the external calcium concentration in the 1.0-110 mM range. Thus, at a physiological external calcium concentration of 2 mM the conductance is 2.4 pS. 5. Ca2+ transport through the L-type calcium channel is particularly sensitive to changes in external calcium concentration in the physiological range but approaches saturation at about 10 mM. this characteristic may optimize the responsiveness of the cell to small changes in ambient calcium concentrations while limiting excess entry in the presence of abnormally high calcium levels.
摘要
  1. 使用石英玻璃微电极,在细胞贴附式膜片钳记录中以高电流分辨率研究了鸡睫状神经节神经元中的单个L型钙通道。2. 当Ba2+作为载流子时,观察到单个开放通道电流幅度,在110 mM钡时电导为26 pS。然而,在110 mM钙时观察到两个电流波动幅度。这些被称为低波动幅度和高波动幅度,即CaL和CaH,电导分别为8.8和12 pS。这两个水平可能反映了两种不同的通道类型。基于对失活的抗性、电导和二氢吡啶敏感性,CaL被鉴定为L型钙通道。3. 钙浓度低至1.0 mM时即可检测到单通道电流波动。尽管在每个测试浓度下,钡的单位电导(γ)都比钙大得多,但γBa、γCaH和γCaL的电导浓度依赖性相似。用朗缪尔等温线拟合这些电导的浓度依赖性,得出钡、CaL和CaH的KD估计值分别为4.7、5.6和5.0 mM。4. L型通道的单通道电导(γL)可用以下关系式描述:电导(单位:pS)= 9.2 / (1 + 5.6 / [Ca]),其中[Ca]是1.0 - 110 mM范围内的外部钙浓度。因此,在生理外部钙浓度2 mM时,电导为2.4 pS。5. Ca2+通过L型钙通道的转运对生理范围内外部钙浓度的变化特别敏感,但在约10 mM时接近饱和。这一特性可能优化细胞对环境钙浓度微小变化的反应性,同时在钙水平异常高时限制过量进入。

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