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Lack of Negatively Charged Residues at the External Mouth of Kir2.2 Channels Enable the Voltage-Dependent Block by External Mg2+

机译:Kir2.2通道的外部口缺少负电荷残基,从而使外部Mg2 +能够产生电压依赖性模块

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摘要

Kir channels display voltage-dependent block by cytosolic cations such as Mg2+ and polyamines that causes inward rectification. In fact, cations can regulate K channel activity from both the extracellular and intracellular sides. Previous studies have provided insight into the up-regulation of Kir channel activity by extracellular K+ concentration. In contrast, extracellular Mg2+ has been found to reduce the amplitude of the single-channel current at milimolar concentrations. However, little is known about the molecular mechanism of Kir channel blockade by external Mg2+ and the relationship between the Mg2+ blockade and activity potentiation by permeant K+ ions. In this study, we applied an interactive approach between theory and experiment. Electrophysiological recordings on Kir2.2 and its mutants were performed by heterologous expression in Xenopus laevis oocytes. Our results confirmed that extracellular Mg2+ could reduce heterologously expressed WT Kir2.2 currents in a voltage dependent manner. The kinetics of inhibition and recovery of Mg2+ exhibit a 3∼4s time constant. Molecular dynamics simulation results revealed a Mg2+ binding site located at the extracellular mouth of Kir2.2 that showed voltage-dependent Mg2+ binding. The mutants, G119D, Q126E and H128D, increased the number of permeant K+ ions and reduced the voltage-dependent blockade of Kir2.2 by extracellular Mg2+.
机译:Kir通道被胞质阳离子(例如Mg 2 + 和多胺)引起的电压依赖性阻滞,引起内向整流。实际上,阳离子可以从细胞外和细胞内两个方面调节K通道的活性。以往的研究提供了关于胞外K + 浓度上调Kir通道活性的见解。相比之下,已发现细胞外Mg 2 + 可以降低浓度下单通道电流的振幅。然而,关于外部Mg 2 + 阻断Kir通道的分子机制以及渗透K 对Mg 2 + 阻断与活性增强之间的关系知之甚少。 + 离子。在这项研究中,我们在理论和实验之间应用了一种互动方法。在非洲爪蟾卵母细胞中通过异源表达进行Kir2.2及其突变体的电生理记录。我们的结果证实,细胞外Mg 2 + 可以以电压依赖性方式降低异源表达的WT Kir2.2电流。 Mg 2 + 的抑制和恢复动力学具有3〜4s的时间常数。分子动力学模拟结果表明,Mir 2 + 结合位点位于Kir2.2的胞外口,与电压依赖性Mg 2 + 结合。 G119D,Q126E和H128D突变体增加了渗透性K + 离子的数量,并降低了细胞外Mg 2 + 对Kir2.2的电压依赖性阻断。

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