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小鼠胰腺β细胞中L型钙通道的渗透和门控特性

Permeation and gating properties of the L-type calcium channel in mouse pancreatic beta cells.

作者信息

Smith P A, Aschroft F M, Fewtrell C M

机构信息

University Laboratory of Physiology, Oxford, United Kingdom.

出版信息

J Gen Physiol. 1993 May;101(5):767-97. doi: 10.1085/jgp.101.5.767.

Abstract

Ba2+ currents through L-type Ca2+ channels were recorded from cell-attached patches on mouse pancreatic beta cells. In 10 mM Ba2+, single-channel currents were recorded at -70 mV, the beta cell resting membrane potential. This suggests that Ca2+ influx at negative membrane potentials may contribute to the resting intracellular Ca2+ concentration and thus to basal insulin release. Increasing external Ba2+ increased the single-channel current amplitude and shifted the current-voltage relation to more positive potentials. This voltage shift could be modeled by assuming that divalent cations both screen and bind to surface charges located at the channel mouth. The single-channel conductance was related to the bulk Ba2+ concentration by a Langmuir isotherm with a dissociation constant (Kd(gamma)) of 5.5 mM and a maximum single-channel conductance (gamma max) of 22 pS. A closer fit to the data was obtained when the barium concentration at the membrane surface was used (Kd(gamma) = 200 mM and gamma max = 47 pS), which suggests that saturation of the concentration-conductance curve may be due to saturation of the surface Ba2+ concentration. Increasing external Ba2+ also shifted the voltage dependence of ensemble currents to positive potentials, consistent with Ba2+ screening and binding to membrane surface charge associated with gating. Ensemble currents recorded with 10 mM Ca2+ activated at more positive potentials than in 10 mM Ba2+, suggesting that external Ca2+ binds more tightly to membrane surface charge associated with gating. The perforated-patch technique was used to record whole-cell currents flowing through L-type Ca2+ channels. Inward currents in 10 mM Ba2+ had a similar voltage dependence to those recorded at a physiological Ca2+ concentration (2.6 mM). BAY-K 8644 (1 microM) increased the amplitude of the ensemble and whole-cell currents but did not alter their voltage dependence. Our results suggest that the high divalent cation solutions usually used to record single L-type Ca2+ channel activity produce a positive shift in the voltage dependence of activation (approximately 32 mV in 100 mM Ba2+).

摘要

通过小鼠胰腺β细胞上的细胞贴附膜片记录了通过L型钙通道的Ba2+电流。在10 mM Ba2+中,于β细胞静息膜电位-70 mV下记录单通道电流。这表明在负膜电位下的Ca2+内流可能有助于静息细胞内Ca2+浓度,从而有助于基础胰岛素释放。增加外部Ba2+会增加单通道电流幅度,并使电流-电压关系向更正电位移动。这种电压偏移可以通过假设二价阳离子既屏蔽又结合位于通道口的表面电荷来建模。单通道电导与总体Ba2+浓度通过朗缪尔等温线相关,解离常数(Kd(γ))为5.5 mM,最大单通道电导(γmax)为22 pS。当使用膜表面的钡浓度时(Kd(γ) = 200 mM且γmax = 47 pS),能更紧密地拟合数据,这表明浓度-电导曲线的饱和可能是由于表面Ba2+浓度的饱和。增加外部Ba2+也会使总体电流的电压依赖性向正电位移动,这与Ba2+屏蔽并结合与门控相关的膜表面电荷一致。在10 mM Ca2+下记录的总体电流比在10 mM Ba2+下在更正电位时激活,表明外部Ca2+与与门控相关的膜表面电荷结合更紧密。采用穿孔膜片技术记录流经L型钙通道的全细胞电流。在10 mM Ba2+中的内向电流与在生理Ca2+浓度(2.6 mM)下记录到的电流具有相似的电压依赖性。BAY-K 8644(1 μM)增加了总体电流和全细胞电流的幅度,但未改变其电压依赖性。我们的结果表明,通常用于记录单个L型钙通道活性的高二价阳离子溶液会使激活的电压依赖性产生正向偏移(在100 mM Ba2+中约为32 mV)。

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