首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Extracellular K+ concentration controls cell surface density of IKr in rabbit hearts and of the HERG channel in human cell lines
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Extracellular K+ concentration controls cell surface density of IKr in rabbit hearts and of the HERG channel in human cell lines

机译:细胞外K +浓度控制兔心脏IKr和人细胞系HERG通道的细胞表面密度

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摘要

Although the modulation of ion channel gating by hormones and drugs has been extensively studied, much less is known about how cell surface ion channel expression levels are regulated. Here, we demonstrate that the cell surface density of both the heterologously expressed K+ channel encoded by the human ether-a-go-go–related gene (HERG) and its native counterpart, the rapidly activating delayed rectifier K+ channel (IKr), in rabbit hearts in vivo is precisely controlled by extracellular K+ concentration ([K+]o) within a physiologically relevant range. Reduction of [K+]o led to accelerated internalization and degradation of HERG channels within hours. Confocal analysis revealed colocalization between HERG and ubiquitin during the process of HERG internalization, and overexpression of ubiquitin facilitated HERG degradation under low [K+]o. The HERG channels colocalized with a marker of multivesicular bodies during internalization, and the internalized HERG channels were targeted to lysosomes. Our results provide the first evidence to our knowledge that the cell surface density of a voltage-gated K+ channel, HERG, is regulated by a biological factor, extracellular K+. Because hypokalemia is known to exacerbate long QT syndrome (LQTS) and Torsades de pointes tachyarrhythmias, our findings provide a potential mechanistic link between hypokalemia and LQTS.
机译:尽管已广泛研究了激素和药物对离子通道门控的调节作用,但对如何调节细胞表面离子通道表达水平的了解还很少。在这里,我们证明了由人类以太相关基因(HERG)及其天然对应物编码的异源表达的K + 通道及其天然对应物的细胞表面密度均迅速激活,兔心脏中的整流子K + 通道(IKr)受细胞内K + 浓度([K + ] o)精确控制生理相关范围。 [K + ] o的减少导致数小时内HERG通道加速内在化和降解。共聚焦分析表明,在HERG内在化过程中,HERG与泛素之间存在共定位作用,泛素的过表达促进了在低[K + ] o下的HERG降解。内化过程中,HERG通道与多囊泡标记物共定位,而内化的HERG通道则靶向溶酶体。我们的结果为我们的知识提供了第一个证据,即电压门控K + 通道HERG的细胞表面密度受生物因子细胞外K + 调控。由于已知低血钾症会加重长QT综合征(LQTS)和尖锐性心律失常,因此我们的发现为低血钾症和LQTS之间提供了潜在的机制联系。

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