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首页> 外文期刊>Journal of arrhythmia. >Molecular mechanisms underlying the pilsicainide-induced stabilization of hERG proteins in transfected mammalian cells
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Molecular mechanisms underlying the pilsicainide-induced stabilization of hERG proteins in transfected mammalian cells

机译:pilsicainide诱导的hERG蛋白在转染的哺乳动物细胞中稳定的分子机制

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摘要

Background: Pilsicainide, classified as a relatively selective Na^+ channel blocker, also has an inhibitory action on the rapidly-activating delayed-rectifier K^+ current (I"K"r) through human ether-a-go-go-related gene (hERG) channels. We studied the effects of chronic exposure to pilsicainide on the expression of wild-type (WT) hERG proteins and WT-hERG channel currents, as well as on the expression of mutant hERG proteins, in a heterologous expression system. Methods: HEK293 cells stably expressing WT or mutant hERG proteins were subjected to Western blotting, immunofluorescence microscopy and patch-clamp experiments. Results: Acute exposure to pilsicainide at 0.03-10@mM influenced neither the expression of WT-hERG proteins nor WT-hERG channel currents. Chronic treatment with 0.03-10@mM pilsicainide for 48h, however, increased the expression of WT-hERG proteins and channel currents in a concentration-dependent manner. Chronic treatment with 3@mM pilsicainide for 48h delayed degradation of WT-hERG proteins and increased the channels expressed on the plasma membrane. A cell membrane-impermeant pilsicainide derivative did not influence the expression of WT-hERG, indicating that pilsicainide stabilized the protein inside the cell. Pilsicainide did not influence phosphorylation of Akt (protein kinase B) or expression of heat shock protein families such as HSF-1, hsp70 and hsp90. E4031, a chemical chaperone for hERG, abolished the pilsicainide effect on hERG. Chronic treatment with pilsicainide could also increase the protein expression of trafficking-defective mutant hERG, G601S and R752W. Conclusions: Pilsicainide penetrates the plasma membrane, stabilizes WT-hERG proteins by acting as a chemical chaperone, and enhances WT-hERG channel currents. This mechanism could also be applicable to modulations of certain mutant-hERG proteins.
机译:背景:比西卡胺被归类为相对选择性的Na ^ +通道阻滞剂,也通过与人的醚相关的快速活化的延迟整流器K ^ +电流(I“ K” r)具有抑制作用基因(hERG)通道。我们研究了在异源表达系统中长期暴露于比塞卡尼对野生型(WT)hERG蛋白和WT-hERG通道电流的表达以及突变型hERG蛋白表达的影响。方法:对稳定表达WT或突变型hERG蛋白的HEK293细胞进行Western印迹,免疫荧光显微镜和膜片钳实验。结果:以0.03-10mM的比尔斯卡尼急性暴露不影响WT-hERG蛋白的表达或WT-hERG通道电流。用0.03-10mM pilsicainide进行48h的慢性处理,以浓度依赖的方式增加了WT-hERG蛋白的表达和通道电流。用3mM pilsicainide进行的慢性处理48h延迟了WT-hERG蛋白的降解,并增加了质膜上表达的通道。细胞膜不渗透的比斯卡尼衍生物不影响WT-hERG的表达,表明比斯卡尼使细胞内的蛋白质稳定。比西卡胺不影响Akt(蛋白激酶B)的磷酸化或热休克蛋白家族(如HSF-1,hsp70和hsp90)的表达。 hERG的化学伴侣E4031取消了比斯卡尼对hERG的作用。用比斯卡尼进行慢性处理还可以增加运输缺陷型突变体hERG,G601S和R752W的蛋白质表达。结论:比西卡胺穿透质膜,通过充当化学伴侣来稳定WT-hERG蛋白,并增强WT-hERG通道电流。该机制也可适用于某些突变型hERG蛋白的调节。

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