Electrophysiological properties of the human N-type Ca2+ channel .1. Channel gating in Ca2+, Ba2+ and Sr2+ containing solutions

被引:34
|
作者
McNaughton, NCL
Randall, AD
机构
[1] Division of Neurobiology, MRC Laboratory of Molecular Biology, Cambridge CB2 2QH, Hills Road
关键词
calcium channel; gating; permeation; toxin pharmacology;
D O I
10.1016/S0028-3908(97)00085-3
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We have characterized the properties of the human N-type Ca2+ channel produced by the stable co-expression of the alpha(1B-1), alpha(2b)delta and beta B-1b subunits. The channel displayed the expected pharmacology with respect to the toxins omega-CTx-GVIA and omega-CTx-MVIIC, which depressed currents in a voltage-independent fashion. We characterized a variety of biophysical properties of the channel under conditions in which either Ca2+, Ba2+ or Sr2+ was the sole extracellular divalent ion. In all three ions, current-voltage relationships revealed that the channel was clearly high-voltage activated. Current activation was significantly slower in Ca2+ than either Sr2+ or Ba2+. Construction of conductance-voltage relationships from tail current measurements indicated that the channel was more high-voltage activated in Ca2+ than in either Sr2+ Or Ba2+. The rank order of current amplitude at +4 mV was Ba2+ > Sr2+ greater than or equal to Ca2+. Elevation of the extracellular concentration of Ba2+ increased maximal current amplitude and shifted the current-voltage relationship to the right. In all three ions channel inactivation was complex consisting of three distinct exponentials. Recovery from inactivation was slow taking several seconds to reach completion. Steady-state inactivation curves revealed that channel inactivation became detectable at holding potentials of between -101 and -91 mV depending on the permeating species. The rank order of mid-points of steady state inactivation was (most negative) Sr2+ > Ca2+ > Ba2+ (most positive). Deactivation of the N-type Ca2+ channel was voltage-dependent and very fast in all three ions. The deactivation rate in Ba2+ was significantly slower than that in both Ca2+ and Sr2+, however the voltage-dependence of deactivation rate was indistinguishable in all three ions. (C) Elsevier Science Ltd.
引用
收藏
页码:895 / 915
页数:21
相关论文
共 50 条
  • [31] THE EFFECT OF N-TYPE CA2+ CHANNEL BLOCKERS ON [CA2+]I DYNAMICS IN SOMA AND DENDRITES OF DOPAMINERGIC-NEURONS
    DEERAUSQUIN, GA
    BROOKER, G
    HANBAUER, I
    FASEB JOURNAL, 1991, 5 (05): : A1102 - A1102
  • [32] ROLE OF CA2+ IN THE INSULIN SECRETORY PROCESS AS OUTLINED BY THE CA2+ ANALOG BA2+
    BERGGREN, PO
    ACTA ENDOCRINOLOGICA, 1979, 91 : 12 - 12
  • [33] Solution structure of ω-grammotoxin SIA, a gating modifier of P/Q and N-type Ca2+ channel
    Takeuchi, K
    Park, EJ
    Lee, CW
    Jae, KI
    Takahashi, H
    Swartz, KJ
    Shimada, I
    JOURNAL OF MOLECULAR BIOLOGY, 2002, 321 (03) : 517 - 526
  • [34] A structure and phase analysis investigation of the "1:1" ordered A2InNbO6 perovskites (A = Ca2+, Sr2+, Ba2+)
    Ting, V
    Liu, Y
    Withers, RL
    Norén, L
    James, M
    Gerald, JDF
    JOURNAL OF SOLID STATE CHEMISTRY, 2006, 179 (02) : 551 - 562
  • [35] Interaction between N-type Ca2+ channel inactivation gating and binding of an omega-conotoxin.
    Stocker, JW
    Nadasdi, L
    Silva, D
    Aldrich, RW
    Tsien, RW
    BIOPHYSICAL JOURNAL, 1996, 70 (02) : TUAM6 - TUAM6
  • [36] Divergence of Ca2+ selectivity and equilibrium Ca2+ blockade in a Ca2+ release-activated Ca2+ channel
    Yamashita, Megumi
    Prakriya, Murali
    JOURNAL OF GENERAL PHYSIOLOGY, 2014, 143 (03): : 325 - 343
  • [37] Regulation of cardiac SR Ca2+ release channel by lumenal and cytosolic Ca2+ and pH
    Xu, L
    Mann, G
    Meissner, G
    BIOPHYSICAL JOURNAL, 1996, 70 (02) : TUP32 - TUP32
  • [38] Effects of Na+ , Mg2+ , Ca2+ , Sr2+ and Ba2+ Doping on the Scintillation Properties of CeBr3
    Awater, Roy H. P.
    Kraemer, Karl. W.
    Dorenbos, Pieter
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2015, 62 (05) : 2343 - 2348
  • [39] INTRALUMINAL CA2+ SITES REGULATE THE SARCOPLASMIC-RETICULUM (SR) CA2+ CHANNEL
    VELEZ, P
    SUAREZISLA, BA
    FASEB JOURNAL, 1992, 6 (01): : A430 - A430
  • [40] Regulation of IP3R Channel Gating by Ca2+ and Ca2+ Binding Proteins
    Foskett, J. Kevin
    Mak, Don-On Daniel
    STRUCTURE AND FUNCTION OF CALCIUM RELEASE CHANNELS, 2010, 66 : 235 - 272