Literature DB >> 22020101

A mechanism underlying compound-induced voltage shift in the current activation of hERG by antiarrhythmic agents.

Kazuharu Furutani1, Yuko Yamakawa, Atsushi Inanobe, Miki Iwata, Yuko Ohno, Yoshihisa Kurachi.   

Abstract

Nifekalant and azimilide, Class III antiarrhythmic agents, block the human ether-à-go-go-related gene K(+) (hERG) channel. However, when a depolarizing membrane potential is applied, they also increase the current at low potentials by shifting its activation curve towards hyperpolarizing voltages. This phenomenon is called 'facilitation'. In this study, we tried to address the mechanism underlying the facilitation by analyzing the effects of various compounds on hERG expressed in Xenopus oocytes. Like nifekalant, amiodarone, quinidine and carvedilol, but not by dofetilide, caused the current facilitation of hERG, suggesting that the facilitation is a common effect to a subset of hERG blockers. As the concentration of each compound was increased, the total hERG current was suppressed progressively, while the current at low potentials was augmented. Activation curves of the remaining hERG current in the facilitation condition could be described as the sum of two Boltzmann functions reflecting two populations of hERG currents having different activation curves. The voltage shift in the activation curve from control was constant for each compound even at different concentrations; -31 mV in amiodarone, -27 mV in nifekalant, -17 mV in quinidine and -12 mV in carvedilol. Therefore, the facilitation is based on the appearance of hERG whose voltage-dependence for the activation is shifted towards hyperpolarizing voltages.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 22020101     DOI: 10.1016/j.bbrc.2011.10.034

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  5 in total

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2.  HD Physiology Project-Japanese efforts to promote multilevel integrative systems biology and physiome research.

Authors:  Kazuharu Furutani; Kunichika Tsumoto; Yoshihisa Kurachi
Journal:  NPJ Syst Biol Appl       Date:  2017-01-16

3.  Facilitation of I Kr current by some hERG channel blockers suppresses early afterdepolarizations.

Authors:  Kazuharu Furutani; Kunichika Tsumoto; I-Shan Chen; Kenichiro Handa; Yuko Yamakawa; Jon T Sack; Yoshihisa Kurachi
Journal:  J Gen Physiol       Date:  2019-01-23       Impact factor: 4.086

4.  Histidine at position 462 determines the low quinine sensitivity of ether-à-go-go channel superfamily member Kv 12.1.

Authors:  Marlen Dierich; Willem B van Ham; Anna Stary-Weinzinger; Michael G Leitner
Journal:  Br J Pharmacol       Date:  2019-06-17       Impact factor: 8.739

5.  Inhibition of the hERG potassium channel by phenanthrene: a polycyclic aromatic hydrocarbon pollutant.

Authors:  Ehab Al-Moubarak; Holly A Shiels; Yihong Zhang; Chunyun Du; Oliver Hanington; Stephen C Harmer; Christopher E Dempsey; Jules C Hancox
Journal:  Cell Mol Life Sci       Date:  2021-11-02       Impact factor: 9.261

  5 in total

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