Inhibition of hEAG1 and hERG1 potassium channels by clofilium and its tertiary analogue LY97241

被引:34
作者
Gessner, G [1 ]
Heinemann, SH [1 ]
机构
[1] Univ Jena, Fac Med, Res Unit Mol & Cellular Biophys, D-07747 Jena, Germany
关键词
EAG; ERG; potassium channel; clofilium; LY97241; E4031; haloperidol;
D O I
10.1038/sj.bjp.0705025
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
1 We investigated the inhibition of hEAG1 potassium channels, expressed in mammalian cells and Xenopus oocytes, by several blockers that have previously been reported to be blockers of hERG1 channels. 2 In the whole-cell mode of mammalian cells, LY97241 was shown to be a potent inhibitor of both hEAG1 and hERG1 channels (IC50 of 4.9 and 2.2 nm, respectively). Clofilium, E4031, and haloperidol apparently inhibited hEAG1 channels with lower potency than hERG1 channels, but they cannot be considered hERG1-specific. 3 The block of hEAG1 channels by LY97241 and clofilium was time-, use-, and voltage-dependent, best explained by an open-channel block mechanism. 4 Both drugs apparently bind from the intracellular side of the membrane at (a) specific site(s) within the central cavity of the channel pore. They can be trapped by closure of the activation gate. 5 In inside-out patches from Xenopus oocytes, hEAG1 block by clofilium was stronger than by LY97241 (IC50 of 0.8 and 1.9 nM. respectively). In addition, hEAG1 block by clofilium was much faster than by LY97241 although there was no difference in the voltage dependence of the on-rate of block. 6 Physico-chemical differences of clofilium and the weak base LY97241 determine the access of the drugs to the binding site and thereby the influence of the recording mode on the apparent block potencies. This phenomenon must be considered when assessing the inhibitory action of drugs on ion channels.
引用
收藏
页码:161 / 171
页数:11
相关论文
共 32 条
[1]  
Bauer CK, 2001, J MEMBRANE BIOL, V182, P1
[2]  
CASTLE NA, 1991, J PHARMACOL EXP THER, V257, P342
[3]   Blocker protection in the pore of a voltage-gated K+ channel and its structural implications [J].
del Camino, D ;
Holmgren, M ;
Liu, Y ;
Yellen, G .
NATURE, 2000, 403 (6767) :321-325
[4]   The structure of the potassium channel:: Molecular basis of K+ conduction and selectivity [J].
Doyle, DA ;
Cabral, JM ;
Pfuetzner, RA ;
Kuo, AL ;
Gulbis, JM ;
Cohen, SL ;
Chait, BT ;
MacKinnon, R .
SCIENCE, 1998, 280 (5360) :69-77
[5]   Molecular determinants of dofetilide block of HERG K+ channels [J].
Ficker, E ;
Jarolimek, W ;
Kiehn, J ;
Baumann, A ;
Brown, AM .
CIRCULATION RESEARCH, 1998, 82 (03) :386-395
[6]   Neurogenetic Analysis of Potassium Currents in Drosophila: Synergistic Effects on Neuromuscular Transmission in Double Mutants [J].
Ganetzky, Barry ;
Wu, Chun-Fang .
JOURNAL OF NEUROGENETICS, 1983, 1 (01) :17-28
[7]   Effects of imipramine on ion channels and proliferation of IGR1 melanoma cells [J].
Gavrilova-Ruch, O ;
Schönherr, K ;
Gessner, G ;
Schönherr, R ;
Klapperstück, T ;
Wohlrab, W ;
Heinemann, SH .
JOURNAL OF MEMBRANE BIOLOGY, 2002, 188 (02) :137-149
[8]   Transfer of rapid inactivation and sensitivity to the class III antiarrhythmic drug E-4031 from HERG to M-eag channels [J].
Herzberg, IM ;
Trudeau, MC ;
Robertson, GA .
JOURNAL OF PHYSIOLOGY-LONDON, 1998, 511 (01) :3-14
[9]   FUNCTIONAL EXPRESSION OF A RAT HOMOLOG OF THE VOLTAGE-GATED ETHER A GO-GO POTASSIUM CHANNEL REVEALS DIFFERENCES IN SELECTIVITY AND ACTIVATION KINETICS BETWEEN THE DROSOPHILA CHANNEL AND ITS MAMMALIAN COUNTERPART [J].
LUDWIG, J ;
TERLAU, H ;
WUNDER, F ;
BRUGGEMANN, A ;
PARDO, LA ;
MARQUARDT, A ;
STUHMER, W ;
PONGS, O .
EMBO JOURNAL, 1994, 13 (19) :4451-4458
[10]   Cloning and functional expression of rat eag2, a new member of the ether-a-go-go family of potassium channels and comparison of its distribution with that of eag1 [J].
Ludwig, J ;
Weseloh, R ;
Karschin, C ;
Liu, Q ;
Netzer, R ;
Engeland, B ;
Stansfeld, C ;
Pongs, O .
MOLECULAR AND CELLULAR NEUROSCIENCE, 2000, 16 (01) :59-70