首页> 外文期刊>American Journal of Physiology >Pharmacological rescue of trafficking defective HERG channels formed by coassembly of wild-type and long QT mutant N470D subunits.
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Pharmacological rescue of trafficking defective HERG channels formed by coassembly of wild-type and long QT mutant N470D subunits.

机译:通过野生型和长QT突变体N470D亚基的共同装配形成的贩运有缺陷的HERG通道的药理抢救。

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摘要

Mutations in the human ether-a-go-go-related gene (HERG) cause long QT syndrome. We previously showed that the HERG N470D mutation expressed as homotetrameric channels causes a protein trafficking defect, and this can be corrected by the HERG channel blocking drug E-4031. The N470D mutant also has been reported to cause dominant negative suppression of HERG current when coexpressed with wild-type channel subunits. The aims of this study were 1). to investigate the molecular mechanism responsible for the dominant negative effect of the N470D mutant coexpressed with wild-type subunits and 2). to test whether the trafficking defective heteromeric channels could be pharmacologically rescued by E-4031. Using a combination of immunoprecipitation and Western blot methods, we showed that N470D mutant and wild-type HERG subunits were physically associated in the endoplasmic reticulum as heteromeric channels. The coassembly resulted in the retention of both wild-type and N470D subunits in the endoplasmic reticulum. Culturing cells in E-4031 increased the cell surface expression of these channels, although with an altered electrophysiological phenotype. These results suggest that the dominant negative effect of the N470D wild-type coassembled channels is caused by retention of heteromeric channels in the endoplasmic reticulum and that the trafficking defect of these channels can be corrected by specific pharmacological strategies.
机译:人类以太相关基因(HERG)中的突变会导致长时间的QT综合征。我们以前表明,以同源四聚体通道表达的HERG N470D突变会引起蛋白质运输缺陷,并且可以通过HERG通道阻断药物E-4031进行纠正。当与野生型通道亚基共表达时,N470D突变体也被报道引起HERG电流的显性负抑制。本研究的目的是1)。研究导致与野生型亚基共表达的N470D突变体显性负效应的分子机制,以及2)。测试是否可以通过E-4031在药理上挽救贩运有缺陷的异聚通道。使用免疫沉淀和蛋白质印迹方法的组合,我们显示N470D突变体和野生型HERG亚基在内质网中作为异源通道物理关联。这种共装配导致内质网中保留了野生型和N470D亚基。 E-4031中的培养细胞增加了这些通道的细胞表面表达,尽管电生理表型发生了变化。这些结果表明,N470D野生型共装配通道的显性负作用是由内质网中异源通道的保留引起的,这些通道的运输缺陷可以通过特定的药理策略加以纠正。

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