Möller Melina, Silbernagel Nicole, Wrobel Eva, Stallmayer Birgit, Amedonu Elsie, Rinné Susanne, Peischard Stefan, Meuth Sven G, Wünsch Bernhard, Strutz-Seebohm Nathalie, Decher Niels, Schulze-Bahr Eric, Seebohm Guiscard
Myocellular Electrophysiology and Molecular Biology, Institute for Genetics of Heart Diseases (IfGH), Department of Cardiovascular Medicine, University Hospital Muenster, Muenster, Germany.
Institute of Physiology and Pathophysiology, Vegetative Physiology Group, Philipps University of Marburg, Marburg, Germany.
Cell Physiol Biochem. 2018;49(3):1197-1207. doi: 10.1159/000493301. Epub 2018 Sep 7.
BACKGROUND/AIMS: The hyperpolarization-activated cyclic nucleotide-gated cation channel HCN4 contributes significantly to the generation of basic cardiac electrical activity in the sinus node and is a mediator of modulation by β-adrenergic stimulation. Heterologous expression of sick sinus syndrome (SSS) and bradycardia associated mutations within the human HCN4 gene results in altered channel function. The main aim was to describe the functional characterization of three (two novel and one known) missense mutations of HCN4 identified in families with SSS.
Here, the two-electrode voltage clamp technique on Xenopus laevis oocytes and confocal imaging on transfected COS7 cells respectively, were used to analyze the functional effects of three HCN4 mutations; R378C, R550H, and E1193Q. Membrane surface expressions of wild type and the mutant channels were assessed by confocal microscopy, chemiluminescence assay, and Western blot in COS7 and HeLa cells.
The homomeric mutant channels R550H and E1193Q showed loss of function through increased rates of deactivation and distinctly reduced surface expression in all three homomeric mutant channels. HCN4 channels containing R550H and E1193Q mutant subunits only showed minor effects on the voltage dependence and rates of activation/deactivation. In contrast, homomeric R378C exerted a left-shifted activation curve and slowed activation kinetics. These effects were reduced in heteromeric co-expression of R378C with wild-type (WT) channels.
Dysfunction of homomeric/heteromeric mutant HCN4-R378C, R550H, and E1193Q channels in the present study was primarily caused by loss of function due to decreased channel surface expression.
背景/目的:超极化激活的环核苷酸门控阳离子通道HCN4对窦房结基本心脏电活动的产生有重要作用,并且是β-肾上腺素能刺激调节的介质。人类HCN4基因中病态窦房结综合征(SSS)和心动过缓相关突变的异源表达导致通道功能改变。主要目的是描述在患有SSS的家族中鉴定出的HCN4的三个(两个新的和一个已知的)错义突变的功能特征。
在这里,分别使用非洲爪蟾卵母细胞上的双电极电压钳技术和转染的COS7细胞上的共聚焦成像来分析三个HCN4突变(R378C、R550H和E1193Q)的功能影响。通过共聚焦显微镜、化学发光测定法和蛋白质免疫印迹法在COS7和HeLa细胞中评估野生型和突变型通道的膜表面表达。
同聚体突变通道R550H和E1193Q显示功能丧失,这是由于失活速率增加以及在所有三个同聚体突变通道中表面表达明显降低。仅含有R550H和E1193Q突变亚基的HCN4通道对电压依赖性以及激活/失活速率仅显示出轻微影响。相比之下,同聚体R378C使激活曲线左移并减慢了激活动力学。在R378C与野生型(WT)通道的异聚体共表达中,这些影响有所减弱。
本研究中同聚体/异聚体突变HCN4-R378C、R550H和E1193Q通道的功能障碍主要是由于通道表面表达降低导致的功能丧失所致。