Flow- and voltage-dependent blocking effect of ethosuximide on the inward rectifier K+ (Kir2.1) channel

被引:0
|
作者
Chiung-Wei Huang
Chung-Chin Kuo
机构
[1] National Taiwan University College of Medicine,Department of Physiology
[2] National Taiwan University Hospital,Department of Neurology
关键词
Inward rectifier K; channels; Ethosuximide; Absence seizure; Flow-dependent block; Voltage-dependent block;
D O I
暂无
中图分类号
学科分类号
摘要
Absence seizures are manifestations of abnormal thalamocortical oscillations characterized by spike-and-wave complexes in EEG. Ethosuximide (ETX) is one of the principal medications against absence seizures. We investigate the effect of ETX on the Kir2.1 channel, a prototypical inward rectifier K+ channel possibly playing an important role in the setting of neuronal membrane potential. We demonstrate that the outward currents of Kir2.1 channels are significantly inhibited by intracellular ETX. We further show that the movement of neutral molecule ETX in the Kir2.1 channel is accompanied by ∼1.2 K+, giving rise to the vivid voltage dependence of ETX unbinding rate. Moreover, the apparent affinity (Kd) of ETX in the channels are decreased by single-point mutations involving M183, E224, and S165, and especially by double mutations involving T141/S165, which always also disrupt the flux-coupling feature of ETX block. Molecular dynamics simulation demonstrates narrowing of the pore at ∼D172 by binding of ETX to S165 or T141. ETX block of the Kir2.1 channels may cause a modest but critical depolarization of the relevant neurons, decreasing available T-type Ca2+ channels and consequently lessening pathological thalamocortical burst discharges.
引用
收藏
页码:1733 / 1746
页数:13
相关论文
共 50 条
  • [41] [K+] dependence of polyamine-induced rectification in inward rectifier potassium channels (IRK1, Kir2.1)
    Lopatin, AN
    Nichols, CG
    JOURNAL OF GENERAL PHYSIOLOGY, 1996, 108 (02): : 105 - 113
  • [42] Ba2+ blockade of the cloned inward rectifier K+ channel Kir2.1 (IRK1) expressed in Xenopus oocytes.
    Shieh, RC
    Chang, JC
    Arreola, J
    BIOPHYSICAL JOURNAL, 1998, 74 (02) : A114 - A114
  • [43] Interaction of Ba2+ with the pores of the cloned inward rectifier K+ channels Kir2.1 expressed in Xenopus oocytes
    Shieh, RC
    Chang, JC
    Arreola, J
    BIOPHYSICAL JOURNAL, 1998, 75 (05) : 2313 - 2322
  • [44] Voltage-dependent block by internal spermine of the murine inwardly rectifying K plus channel, Kir2.1, with asymmetrical K plus concentrations
    Matsuda, Hiroko
    Hayashi, Mikio
    Okada, Masayoshi
    JOURNAL OF PHYSIOLOGY-LONDON, 2010, 588 (23): : 4673 - 4681
  • [45] Permeant ion-dependent changes in gating of Kir2.1 inward rectifier potassium channels
    Lu, T
    Wu, L
    Xiao, J
    Yang, J
    JOURNAL OF GENERAL PHYSIOLOGY, 2001, 118 (05): : 509 - 521
  • [46] Selective inhibition of inward rectifier K+ channels (Kir2.1 or kir2.2) abolishes protection by ischemic preconditioning in rabbit ventricular cardiomyocytes
    Diaz, RJ
    Zobel, C
    Cho, HC
    Batthish, M
    Hinek, A
    Backx, PH
    Wilson, GJ
    CIRCULATION RESEARCH, 2004, 95 (03) : 325 - 332
  • [47] Specific and Slow Inhibition of the Kir2.1 K+ Channel by Gambogic Acid
    Zaks-Makhina, Elena
    Li, Hui
    Grishin, Anatoly
    Salvador-Recatala, Vicenta
    Levitan, Edwin S.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (23) : 15432 - 15438
  • [48] A critical amino acid residue affecting trafficking of inward rectifier potassium channel, Kir2.1 and Kir2.2.
    Kaibara, M
    Ishihara, K
    Doi, Y
    Hayashi, H
    Ehara, T
    Taniyama, K
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2003, 91 : 245P - 245P
  • [49] The inward rectifier potassium channel Kir2.1 is expressed in mouse neutrophils from bone marrow and liver
    Masia, Ricard
    Krause, Daniela S.
    Yellen, Gary
    AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2015, 308 (03): : C264 - C276
  • [50] Conduction through the inward rectifier potassium channel, Kir2.1, is increased by negatively charged extracellular residues
    D'Avanzo, N
    Cho, HC
    Tolokh, I
    Pekhletski, R
    Tolokh, I
    Gray, C
    Goldman, S
    Backx, PH
    JOURNAL OF GENERAL PHYSIOLOGY, 2005, 125 (05): : 493 - 503