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Interactions of protons with single open L-type calcium channels. Location of protonation site and dependence of proton-induced current fluctuations on concentration and species of permeant ion

机译:质子与单个开放的L型钙通道的相互作用。质子化位点的位置和质子诱导的电流波动对渗透离子浓度和种类的依赖性

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摘要

We further investigated the rapid fluctuations between two different conductance levels promoted by protons when monovalent ions carry current through single L-type Ca channels. We tested for voltage dependence of the proton-induced current fluctuations and for accessibility of the protonation site from both sides of the membrane patch. The results strongly suggest an extracellular location of the protonation site. We also studied the dependence of the kinetics of the fluctuations and of the two conductance levels on the concentration of permeant ion and on external ionic strength. We find that saturation curves of channel conductance vs. [K] are similar for the two conductance levels. This provides evidence that protonation does not appreciably change the surface potential near the entry of the permeation pathway. The proton-induced conduction change must therefore result from an indirect interaction between the protonation site and the ion-conducting pathway. Concentration of permeant ion and ionic strength also affect the kinetics of the current fluctuations, in a manner consistent with our previous hypothesis that channel occupancy destabilizes the low conductance channel conformation. We show that the absence of measurable fluctuations with Li and Ba as charge carriers can be explained by significantly higher affinities of these ions for permeation sites. Low concentrations of Li reduce the Na conductance and abbreviate the lifetimes of the low conductance level seen in the presence of Na. We use whole-cell recordings to extrapolate our findings to the physiological conditions of Ca channel permeation and conclude that in the presence of 1.8 mM Ca no proton-induced fluctuations occur between pH 7.5 and 6.5. Finally, we propose a possible physical interpretation of the formal model of the protonation cycle introduced in the companion paper.
机译:当单价离子通过单个L型Ca通道携带电流时,我们进一步研究了质子促进的两个不同电导水平之间的快速波动。我们测试了质子感应电流波动的电压依赖性以及膜片两侧的质子化位点的可及性。结果强烈暗示质子化位点在细胞外。我们还研究了波动动力学和两个电导水平对渗透离子浓度和外部离子强度的依赖性。我们发现,两个电导水平的通道电导的饱和度曲线与[K]的关系相似。这提供了证明质子化不会明显改变渗透途径入口附近的表面电势的证据。因此,质子诱导的传导变化必须归因于质子化位点与离子传导途径之间的间接相互作用。渗透离子的浓度和离子强度也影响电流波动的动力学,其方式与我们先前的假设一致,即通道占有率会使低电导率通道构型不稳定。我们表明,没有明显的以Li和Ba作为电荷载流子的波动,可以通过这些离子对渗透位的显着更高的亲和力来解释。低浓度的Li会降低Na电导率,并缩短存在Na时低电导率水平的寿命。我们使用全细胞记录将我们的发现外推到Ca通道渗透的生理条件,并得出结论,在存在1.8 mM Ca的情况下,pH 7.5至6.5之间不会发生质子诱导的波动。最后,我们提出了对伴随论文中引入的质子化循环形式模型的可能的物理解释。

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  • 年度 1989
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