Limberg Sven H, Netter Michael F, Rolfes Caroline, Rinné Susanne, Schlichthörl Günter, Zuzarte Marylou, Vassiliou Timon, Moosdorf Rainer, Wulf Hinnerk, Daut Jürgen, Sachse Frank B, Decher Niels
Institut für Physiologie und Pathophysiologie, Abteilung vegetative Physiologie, Universität Marburg, Deutschhausstraße 1-2, Marburg, Germany.
Cell Physiol Biochem. 2011;28(4):613-24. doi: 10.1159/000335757. Epub 2011 Dec 14.
BACKGROUND/AIMS: Atrial fibrillation is the most common arrhythmia in the elderly, and potassium channels with atrium-specific expression have been discussed as targets to treat atrial fibrillation. Our aim was to characterize TASK-1 channels in human heart and to functionally describe the role of the atrial whole cell current I(TASK-1).
Using quantitative PCR, we show that TASK-1 is predominantly expressed in the atria, auricles and atrio-ventricular node of the human heart. Single channel recordings show the functional expression of TASK-1 in right human auricles. In addition, we describe for the first time the whole cell current carried by TASK-1 channels (I(TASK-1)) in human atrial tissue. We show that I(TASK-1) contributes to the sustained outward current I(Ksus) and that I(TASK-1) is a major component of the background conductance in human atrial cardiomyocytes. Using patch clamp recordings and mathematical modeling of action potentials, we demonstrate that modulation of I(TASK-1) can alter human atrial action potential duration.
Due to the lack of ventricular expression and the ability to alter human atrial action potential duration, TASK-1 might be a drug target for the treatment of atrial fibrillation.
背景/目的:心房颤动是老年人中最常见的心律失常,具有心房特异性表达的钾通道已被视为治疗心房颤动的靶点。我们的目的是对人心脏中的TASK-1通道进行表征,并从功能上描述心房全细胞电流I(TASK-1)的作用。
通过定量PCR,我们发现TASK-1主要在人心脏的心房、心耳和房室结中表达。单通道记录显示TASK-1在人右心耳中有功能性表达。此外,我们首次描述了人心房组织中由TASK-1通道携带的全细胞电流(I(TASK-1))。我们发现I(TASK-1)对持续外向电流I(Ksus)有贡献,并且I(TASK-1)是人心房心肌细胞背景电导的主要组成部分。通过膜片钳记录和动作电位的数学建模,我们证明对I(TASK-1)的调节可以改变人心房动作电位的时程。
由于缺乏心室表达以及能够改变人心房动作电位时程,TASK-1可能是治疗心房颤动的药物靶点。