首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Transmembrane Mg2+ currents and intracellular free Mg2+ concentration in Paramecium tetraurelia.
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Transmembrane Mg2+ currents and intracellular free Mg2+ concentration in Paramecium tetraurelia.

机译:四脲草履虫中的跨膜Mg2 +电流和细胞内游离Mg2 +浓度。

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摘要

The properties of Mg2+ conductances in Paramecium tetraurelia were investigated under two-electrode voltage clamp. When bathed in physiological Mg2+ concentrations (0.5 mm), depolarizing steps from rest elicited a prominent Mg2+-specific current (IMg) that has been noted previously. The dependence of this current on extracellular Mg2+ approximated that of Mg2+-induced backward swimming, demonstrating that IMg contributes to normal membrane excitation and behavior in this ciliate. Closer analysis revealed that the Mg2+ current deactivated biphasically. While this might suggest the involvement of two Mg2+-specific pathways, both tail-current components were affected similarly by current-specific mutations and they had similar ion selectivities, suggesting a common pathway. In contrast, a Mg2+ current activated upon hyperpolarization could be separated into three components. The first, IMg, had similar properties to the current activated upon depolarization. The second was a nonspecific divalent cation current (INS) that was revealed following suppression of IMg by eccentric mutation. The final current was relatively minor and was revealed following suppression of IMg and INS by obstinate A gene mutation. Reversal-potential analyses suggested that IMg and INS define two intracellular compartments that contain, respectively, low (0.4 mM) and high (8 mM) concentrations of Mg2+. Measurement of intracellular free Mg2+ using the fluorescent dye, Mag-fura-2, suggested that bulk [Mg2+]i rests at around 0.4 mM in Paramecium.
机译:在两电极电压钳制下研究了草履虫中Mg2 +的电导特性。当沐浴在生理Mg2 +浓度(0.5 mm)中时,从休息中除极化的步骤会引起一个显着的Mg2 +比电流(IMg),这已在前面提到过。该电流对细胞外Mg2 +的依赖性近似于Mg2 +诱导的向后游泳,表明IMg有助于纤毛虫的正常膜兴奋和行为。进一步分析发现,Mg2 +电流双相失活。尽管这可能暗示了两个Mg2 +特异性途径的参与,但两个尾电流组件均受到电流特异性突变的类似影响,并且它们具有相似的离子选择性,表明存在共同的途径。相反,在超极化时激活的Mg2 +电流可以分为三个分量。第一个IMg具有与去极化时激活的电流相似的特性。第二个是非特异性二价阳离子电流(INS),在偏心突变抑制IMg后发现。最终电流相对较小,并且在顽固的A基因突变抑制IMg和INS后才显示出来。反向电位分析表明,IMg和INS定义了两个细胞内区室,分别包含低(0.4 mM)和高(8 mM)浓度的Mg2 +。使用荧光染料Mag-fura-2对细胞内游离Mg2 +的测量表明,草履虫中的[Mg2 +] i总量约为0.4 mM。

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