Characterization of hERG1a and hERG1b potassium channels—a possible role for hERG1b in the IKr current

被引:0
作者
Anders Peter Larsen
Søren-Peter Olesen
Morten Grunnet
Thomas Jespersen
机构
[1] University of Copenhagen,The Danish National Research Foundation Center for Cardiac Arrhythmia, Department of Biomedical Sciences
[2] NeuroSearch A/S,undefined
来源
Pflügers Archiv - European Journal of Physiology | 2008年 / 456卷
关键词
Potassium channel; Heart; Electrophysiology; K; -channel expression; Whole-cell recording;
D O I
暂无
中图分类号
学科分类号
摘要
IKr is the fast component of the delayed rectifier potassium currents responsible for the repolarization of the cardiac muscle. The molecular correlate underlying the IKr current has been identified as the hERG1 channel. Recently, two splice variants of the hERG1 α-subunit, hERG1a and hERG1b, have been shown to be co-expressed in human cardiomyocytes. In this paper, we present the electrophysiological characterization of hERG1a, hERG1b, and co-expressed hERG1a/b channels in a mammalian expression system using the whole-cell patch clamp technique. We also quantified the messenger RNA (mRNA) levels of hERG1a and hERG1b in human cardiac tissue, and based on the expressed ratios, we evaluated the resulting currents in Xenopus laevis oocytes. Compared to hERG1a channels, activation was faster for both hERG1b and hERG1a/b channels. The deactivation kinetics was greatly accelerated in the presence of hERG1b, whereas no difference in the time constant of inactivation was observed. The voltage-dependent recovery from inactivation was also similar. However, the time constant of recovery from inactivation was significantly faster for hERG1b channels compared to hERG1a and hERG1a/b. Quantification of hERG1a and hERG1b mRNA in the human heart showed that hERG1b mRNA constitutes, on average, 19% in the right atrium and 12% in the left ventricle of the total hERG1 mRNA. Expression of the observed ratios of hERG1a to hERG1b in X. laevis oocytes showed that these ratios are indeed sufficient to change the deactivation phenotype markedly. The present work suggests that hERG1b is likely to play a role in the formation of the native IKr current.
引用
收藏
页码:1137 / 1148
页数:11
相关论文
共 34 条
  • [21] Differential Expression of hERG1 Channel Isoforms Reproduces Properties of Native IKr and Modulates Cardiac Action Potential Characteristics
    Larsen, Anders Peter
    Olesen, Soren-Peter
    PLOS ONE, 2010, 5 (02):
  • [22] Absence of Direct Cyclic Nucleotide Modulation of mEAG1 and hERG1 Channels Revealed with Fluorescence and Electrophysiological Methods
    Brelidze, Tinatin I.
    Carlson, Anne E.
    Zagotta, William N.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (41) : 27989 - 27997
  • [23] Colombian Scorpion Centruroides margaritatus: Purification and Characterization of a Gamma Potassium Toxin with Full-Block Activity on the hERG1 Channel
    Beltran-Vidal, Jose
    Carcamo-Noriega, Edson
    Pastor, Nina
    Zamudio-Zuniga, Fernando
    Alexander Guerrero-Vargas, Jimmy
    Castano, Santiago
    Domingos Possani, Lourival
    Restano-Cassulini, Rita
    TOXINS, 2021, 13 (06)
  • [24] Hydroxyzine, a First Generation H1-Receptor Antagonist, Inhibits Human Ether-a-go-go-Related Gene (HERG) Current and Causes Syncope in a Patient With the HERG Mutation
    Sakaguchi, Tomoko
    Itoh, Hideki
    Ding, Wei-Guang
    Tsuji, Keiko
    Nagaoka, Iori
    Oka, Yuko
    Ashihara, Takashi
    Ito, Makoto
    Yumoto, Yoshihiro
    Zenda, Naoko
    Higashi, Yukei
    Takeyama, Youichi
    Matsuura, Hiroshi
    Horie, Minoru
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2008, 108 (04) : 462 - 471
  • [25] Mechanism of hERG inhibition by gating-modifier toxin, APETx1, deduced by functional characterization
    Matsumura, Kazuki
    Shimomura, Takushi
    Kubo, Yoshihiro
    Oka, Takayuki
    Kobayashi, Naohiro
    Imai, Shunsuke
    Yanase, Naomi
    Akimoto, Madoka
    Fukuda, Masahiro
    Yokogawa, Mariko
    Ikeda, Kazuyoshi
    Kurita, Jun-ichi
    Nishimura, Yoshifumi
    Shimada, Ichio
    Osawa, Masanori
    BMC MOLECULAR AND CELL BIOLOGY, 2021, 22 (01)
  • [26] Cooperative interactions between R531 and acidic residues in the voltage sensing module of hERG1 channels
    Piper, David R.
    Rupp, Jason
    Sachse, Frank B.
    Sanguinetti, Michael C.
    Tristani-Firouzi, Martin
    CELLULAR PHYSIOLOGY AND BIOCHEMISTRY, 2008, 21 (1-3) : 37 - 46
  • [27] PD-118057 contacts the pore helix of hERG1 channels to attenuate inactivation and enhance K+ conductance
    Perry, Matthew
    Sachse, Frank B.
    Abbruzzese, Jennifer
    Sanguinetti, Michael C.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (47) : 20075 - 20080
  • [28] Effects of the histamine H1 receptor antagonist hydroxyzine on hERG K+ channels and cardiac action potential duration
    Byung Hoon Lee
    Seung Ho Lee
    Daehyun Chu
    Jin Won Hyun
    Han Choe
    Bok Hee Choi
    Su-Hyun Jo
    Acta Pharmacologica Sinica, 2011, 32 : 1128 - 1137
  • [29] HERG1 potassium channel expression in potentially malignant disorders of the oral mucosa and prognostic relevance in oral squamous cell carcinoma
    Fernandez-Valle, Alvaro
    Pablo Rodrigo, Juan
    Rodriguez-Santamarta, Tania
    Angeles Villaronga, M.
    Alvarez-Teijeiro, Saul
    Garcia-Pedrero, Juana M.
    Suarez-Fernandez, Laura
    Lequerica-Fernandez, Paloma
    Carlos de Vicente, Juan
    HEAD AND NECK-JOURNAL FOR THE SCIENCES AND SPECIALTIES OF THE HEAD AND NECK, 2016, 38 (11): : 1672 - 1678
  • [30] Regulation of hERG and hEAG Channels by Src and by SHP-1 Tyrosine Phosphatase via an ITIM Region in the Cyclic Nucleotide Binding Domain
    Schlichter, Lyanne C.
    Jiang, Jiahua
    Wang, John
    Newell, Evan W.
    Tsui, Florence W. L.
    Lam, Doris
    PLOS ONE, 2014, 9 (02):