Class III antiarrhythmic drug dronedarone inhibits cardiac inwardly rectifying Kir2.1 channels through binding at residue E224

被引:0
|
作者
Panagiotis Xynogalos
Claudia Seyler
Daniel Scherer
Christoph Koepple
Eberhard P. Scholz
Dierk Thomas
Hugo A. Katus
Edgar Zitron
机构
[1] University Hospital Heidelberg,Department of Cardiology
[2] DZHK (German Centre for Cardiovascular Research),undefined
关键词
Class III antiarrhythmic drug; Dronedarone; Cardiac inwardly rectifying Kir2.x channels; Residue E224; I;
D O I
暂无
中图分类号
学科分类号
摘要
Dronedarone is a novel class III antiarrhythmic drug that is widely used in atrial fibrillation. It has been shown in native cardiomyocytes that dronedarone inhibits cardiac inwardly rectifying current IK1 at high concentrations, which may contribute both its antifibrillatory efficacy and its potential proarrhythmic side effects. However, the underlying mechanism has not been studied in further detail to date. In the mammalian heart, heterotetrameric assembly of Kir2.x channels is the molecular basis of IK1 current. Therefore, we studied the effects of dronedarone on wild-type and mutant Kir2.x channels in the Xenopus oocyte expression system. Dronedarone inhibited Kir2.1 currents but had no effect on Kir2.2 or Kir2.3 currents. Onset of block was slow but completely reversible upon washout. Blockade of Kir2.1 channels did not exhibit strong voltage dependence or frequency dependence. In a screening with different Kir2.1 mutants lacking specific binding sites within the cytoplasmic pore region, we found that residue E224 is essential for binding of dronedarone to Kir2.1 channels. In conclusion, direct block of Kir2.1 channel subunits by dronedarone through binding at E224 may underlie its inhibitory effects on cardiac IK1 current.
引用
收藏
页码:1153 / 1161
页数:8
相关论文
共 3 条
  • [1] Class III antiarrhythmic drug dronedarone inhibits cardiac inwardly rectifying Kir2.1 channels through binding at residue E224
    Xynogalos, Panagiotis
    Seyler, Claudia
    Scherer, Daniel
    Koepple, Christoph
    Scholz, Eberhard P.
    Thomas, Dierk
    Katus, Hugo A.
    Zitron, Edgar
    NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 2014, 387 (12) : 1153 - 1161
  • [2] Amiodarone and dronedarone inhibit inwardly rectifying Kir2.1 channels, but not Kir2.2 and Kir2.3 channels
    Seyler, C.
    Xynogalos, P.
    Scherer, D.
    Koepple, C.
    Scholz, E. P.
    Thomas, D.
    Katus, H. A.
    Zitron, E.
    CARDIOVASCULAR RESEARCH, 2014, 103
  • [3] Class III antiarrhythmic drugs amiodarone and dronedarone impair KIR2.1 backward trafficking
    Ji, Yuan
    Takanari, Hiroki
    Qile, Muge
    Nalos, Lukas
    Houtman, Marien J. C.
    Romunde, Fee L.
    Heukers, Raimond
    Henegouwen, Paul M. P. van Bergen En
    Vos, Marc A.
    van der Heyden, Marcel A. G.
    JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2017, 21 (10) : 2514 - 2523