Inhibition of KCa3.1 by depolarisation and 2-aminoethoxydiphenyl borate (2-APB) during Ca2+ release activated Ca2+ (CRAC) entry in human erythroleukemia (HEL) cells: Implications for the interpretation of 2-APB inhibition of CRAC entry

被引:9
|
作者
Littlechild, Robert [1 ]
Zaidman, Nathalie [1 ]
Khodaverdi, Darren [1 ]
Mason, Michael James [1 ]
机构
[1] Univ Cambridge, Dept Physiol Dev & Neurosci, Cambridge CB2 3EG, England
关键词
2-APB; Membrane potential; KCa3.1; HEL cells; CRAC channel; Patch clamp; Current clamp; Intracellular Ca2+; CA2+-ACTIVATED K+ CHANNEL; GATED POTASSIUM CHANNELS; 2-AMINOETHYLDIPHENYL BORATE; T-LYMPHOCYTES; CALCIUM; MEMBRANE; CONDUCTANCE; MEGAKARYOCYTES; MODULATION; DEPLETION;
D O I
10.1016/j.ceca.2014.12.009
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
In the present experiments in HEL cells, we have investigated the requirement for a hyperpolarised resting membrane potential for the initial activation of the Ca2+ activated K+ channel, KCa3.1, following activation of the Ca2+ release activated Ca2+ (CRAC) entry pathway. In intact cells, fluorimetric measurements of [Ca2+](i) following thapsigargin-mediated activation of CRAC entry revealed a sustained increase in [Ca2+](i). Block of KCa3.1 by application of charybdotoxin resulted in a 50% reduction in the steady-state [Ca2+](i), consistent with the well established role for KCa3.1-mediated hyperpolarisation in augmenting CRAC entry. Interestingly, subsequent depolarisation to 0 mV by application of gramicidin resulted in a fall in steady-state Ca2+ levels to values theoretically below that required for activation of KCa3.1. Whole cell patch clamp experiments confirmed the lack of KCa3.1 activation at 0 mV following activation of the CRAC entry pathway, indicating an absolute requirement for a hyperpolarised resting membrane potential for the initial activation of KCa3.1 leading to hyperpolarisation and augmented Ca2+ entry. Current clamp experiments confirmed the requirement for a hyperpolarised resting membrane potential in KCa3.1 activation by CRAC entry. Given the critical role played by KCa3.1 and membrane potential in general in the control of CRAC-mediated [Ca2+](i) changes, we investigated the hypothesis that inhibition of the CRAC-mediated changes in [Ca2+](i) observed following 2-APB addition may in part arise from direct inhibition of KCa3.1 by 2-APB. Under whole cell patch clamp, 2-APB, at concentrations typically used to block the CRAC channel, potently inhibited KCa3.1 in a reversible manner (half maximal inhibition 14.2 mu M). This block was accompanied by a marked shift in the reversal potential to depolarised values approaching that set by endogenous membrane conductances. At the single channel level, 2-APB applied to the cytosolic face resulted in a significant reduction in open channel probability and a fall in the mean open time of the residual channel activity. Our data highlight the absolute requirement for a hyperpolarising resting membrane conductance for the initial activation of KCa3.1 by CRAC entry. Additionally, our results document direct inhibition of KCa3.1 by 2-APB, thus highlighting the need for caution when ascribing the site of inhibition of 2-APB exclusively to the CRAC entry pathway in experiments where membrane potential is not controlled. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:76 / 88
页数:13
相关论文
共 50 条
  • [31] Depolarization-mediated inhibition of Ca2+ entry in endothelial cells
    Wang, XD
    Van Breemen, C
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1999, 277 (04): : H1498 - H1504
  • [32] Store depletion-activated CaT1 currents in rat basophilic leukemia mast cells are inhibited by 2-aminoethoxydiphenyl borate -: Evidence for a regulatory component that controls activation of both CaT1 and CRAC (Ca2+ release-activated Ca2+ channel) channels
    Schindl, R
    Kahr, H
    Graz, I
    Groschner, K
    Romanin, C
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (30) : 26950 - 26958
  • [33] ROLE OF GTP-BINDING PROTEINS IN CA2+ RELEASE-ACTIVATED CA2+ (CRAC) INFLUX IN SINGLE SALIVARY ACINAR-CELLS
    FOSKETT, JK
    WONG, D
    JOURNAL OF GENERAL PHYSIOLOGY, 1994, 104 (06): : A24 - A25
  • [34] Roles of Ca2+ release-activated Ca2+(CRAC) channels on cell cycle progression and proliferation in bovine brain capillary endothelial cells
    Kito, Hiroaki
    Yamamura, Hisao
    Ohya, Susumu
    Asai, Kiyofumi
    Imaizumi, Yuji
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2013, 121 : 91P - 91P
  • [35] Capacitative Ca2+ entry in vascular endothelial cells is mediated via pathways sensitive to 2 aminoethoxydiphenyl borate and xestospongin C
    Bishara, NB
    Murphy, TV
    Hill, MA
    BRITISH JOURNAL OF PHARMACOLOGY, 2002, 135 (01) : 119 - 128
  • [36] Expression of components of Ca2+ release-activated Ca2+ (CRAC) channel in the ovine corpus luteum during the early pregnancy and PGF2α induced luteolysis
    Hitit, M.
    Kose, M.
    Atli, M. O.
    Acar, M.
    REPRODUCTION IN DOMESTIC ANIMALS, 2017, 52 : 95 - 96
  • [37] Methylglyoxal evokes acute Ca2+ transients in distinct cell types and increases agonist-evoked Ca2+ entry in endothelial cells via CRAC channels
    Sachdeva, Robin
    Fleming, Thomas
    Schumacher, Dagmar
    Homberg, Sarah
    Stilz, Kathrin
    Mohr, Franziska
    Wagner, Andreas H.
    Tsvilovskyy, Volodymyr
    Mathar, Ilka
    Freichel, Marc
    CELL CALCIUM, 2019, 78 : 66 - 75
  • [38] Inhibition by miconazole of Ca2+-ATPase intracellular Ca2+ stores and store regulated Ca2+ entry in PC-12 pheochromocytoma cells
    Astashkin, E
    Smirnov, O
    Grivennikov, I
    Glezer, M
    Krylov, J
    Grachev, S
    NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 1998, 358 (01) : R689 - R689
  • [39] Orai1 and CRAC Channel Dependence of VEGF-Activated Ca2+ Entry and Endothelial Tube Formation
    Li, Jing
    Cubbon, Richard M.
    Wilson, Lesley A.
    Amer, Mohamed S.
    McKeown, Lynn
    Hou, Bing
    Majeed, Yasser
    Tumova, Sarka
    Seymour, Victoria A. L.
    Taylor, Hilary
    Stacey, Martin
    O'Regan, David
    Foster, Richard
    Porter, Karen E.
    Kearney, Mark T.
    Beech, David J.
    CIRCULATION RESEARCH, 2011, 108 (10) : 1190 - U131
  • [40] Voltage dependence of the Ca2+-activated K+ channel KCa3.1 in human erythroleukemia cells
    Stoneking, Colin J.
    Shivakumar, Oshini
    Thomas, David Nicholson
    Colledge, William H.
    Mason, Michael J.
    AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2013, 304 (09): : C858 - C872