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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >The G604S-hERG mutation alters the biophysical properties and exerts a dominant-negative effect on expression of hERG channels in HEK293 cells.
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The G604S-hERG mutation alters the biophysical properties and exerts a dominant-negative effect on expression of hERG channels in HEK293 cells.

机译:G604S-hERG突变改变了生物物理特性,并对HEK293细胞中hERG通道的表达产生显性负作用。

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We have recently identified a missense mutation, G604S, in the human ether-a-go-go related gene (hERG) that results in a malignant phenotype in a full pedigree of a Chinese congenital long QT syndrome (LQTS) family. The present study characterized the pathophysiological consequences of the mutation at the cellular level. Mutant G604S-hERG channels were expressed in HEK293 cells using a lipofectamine method. hERG currents were recorded using the voltage clamp technique. The expression of hERG protein was detected by Western blotting, and the subcellular location of hERG channels in cell was analyzed by confocal microscopy. We found that the G604S mutation did not lead to any expression of detectable currents, which was consistent with Western blotting analysis that the G604S-hERG mutation only expressed a band at 135 kDa. When coexpressed with wild-type (WT)-hERG, G604S-hERG exhibited strong dominant-negative current suppression resulting in decreased current density and altered gating properties of theWT-hERG channel, as well as interference with the trafficking of WT-hERG channel protein. In addition, confocal microscopy demonstrated that G604S-hERG subunits could be inserted into the cell membrane when forming heteromultimeric channels with WT-hERG channel subunits. Our results suggest that G604S mutation causes a loss of function in hERG through a strong dominant-negative effect on WT-hERG channel function that caused by impaired trafficking of WT-hERG channels, and further accentuates this suppression by forming heteromultimeric functional channels with WT-hERG subunits.
机译:我们最近在人类以太相关基因(hERG)中发现了一个错义突变G604S,该突变导致了中国先天性长QT综合征(LQTS)家族的完整血统。本研究在细胞水平上表征了突变的病理生理后果。使用脂转染胺法在HEK293细胞中表达了突变的G604S-hERG通道。使用电压钳技术记录hERG电流。通过Western印迹检测hERG蛋白的表达,并通过共聚焦显微镜分析hERG通道在细胞中的亚细胞定位。我们发现,G604S突变不会导致任何可检测电流的表达,这与蛋白质印迹分析一致,即G604S-hERG突变仅表达135 kDa的条带。当与野生型(WT)-hERG共表达时,G604S-hERG表现出强的显性负电流抑制作用,从而导致电流密度降低和WT-hERG通道的门控特性改变,以及干扰WT-hERG通道蛋白的运输。另外,共聚焦显微镜证明当与WT-hERG通道亚基形成异源多聚体通道时,G604S-hERG亚基可插入细胞膜。我们的研究结果表明,G604S突变会通过对WT-hERG通道的运输受到损害而对WT-hERG通道功能产生强烈的显性负性作用,从而导致hERG的功能丧失,并通过与WT-hERG通道形成异源多聚体功能性通道进一步加剧这种抑制作用hERG亚基。

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