MODULATION OF BRAIN NA+ CHANNELS BY A G-PROTEIN-COUPLED PATHWAY

被引:70
|
作者
MA, JY
LI, M
CATTERALL, WA
SCHEUER, T
机构
[1] Department of Pharmacology, SJ-30, University of Washington, Seattle
关键词
WHOLE-CELL VOLTAGE CLAMP; ELECTRICAL EXCITABILITY; PERTUSSIS TOXIN;
D O I
10.1073/pnas.91.25.12351
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Na+ channels in acutely dissociated rat hippocampal neurons and in Chinese hamster ovary (CHO) cells transfected with a cDNA encoding the alpha subunit of rat brain type IIA Na+ channel (CNaIIA-1 cells) are modulated by guanine nucleotide binding protein (G protein)-coupled pathways under conditions of whole cell voltage clamp. Activation of G proteins by 0.2-0.5 mM guanosine 5'-[gamma-thio]triphosphate (GTP[gamma S]), a nonhydrolyzable GTP analog, increased Na+ currents recorded in both cell types. The increase in current amplitude was caused by an 8- to 10-mV negative shift in the voltage dependence of both activation and inactivation. The effects of G-protein activators were blocked by treatment with pertussis toxin or guanosine 5'-[gamma-thio]diphosphate (GDP[gamma]), a nonhydrolyzable GDP analog, but not by cholera toxin. GDP[beta S] (2 mM) alone had effects opposite those of GTP[gamma S], shifting Na+-channel gating 8-10 mV toward more-positive membrane potentials and suggesting that basal activation of G proteins in the absence of stimulation is sufficient to modulate Na+ channels. In CNaIIA-1 cells, thrombin, which activates pertussis toxin-sensitive G proteins in CHO cells, caused a further negative shift in the voltage dependence of Na+-channel activation and inactivation beyond that observed with GTP alone. The results in CNaIIA-1 cells indicate that the alpha subunit of the Na+ channel alone is sufficient to mediate G protein effects on gating. The modulation of Na+ channels via a G-protein-coupled pathway acting on Na+-channel alpha subunits may regulate electrical excitability through integration of different G protein coupled synaptic inputs.
引用
收藏
页码:12351 / 12355
页数:5
相关论文
共 50 条
  • [31] G-protein-coupled inwardly rectifying potassium channels are targets of alcohol action
    Lewohl, JM
    Wilson, WR
    Mayfield, RD
    Brozowski, SJ
    Morrisett, RA
    Harris, RA
    NATURE NEUROSCIENCE, 1999, 2 (12) : 1084 - 1090
  • [32] HUMAN BRAIN RECEPTORS .2. G-PROTEIN-COUPLED RECEPTORS
    TAMMINGA, CA
    AMERICAN JOURNAL OF PSYCHIATRY, 1994, 151 (03): : 342 - 342
  • [33] G-protein-coupled inwardly rectifying potassium channels are targets of alcohol action
    Joanne M. Lewohl
    Walter R. Wilson
    R. Dayne Mayfield
    Susan J. Brozowski
    Richard A. Morrisett
    R. Adron Harris
    Nature Neuroscience, 1999, 2 : 1084 - 1090
  • [34] Signalling between G-protein-coupled receptors and TASK1 channels
    Mubagwa, Kanigula
    CARDIOVASCULAR RESEARCH, 2013, 97 (01) : 10 - 12
  • [35] CLONING AND FUNCTIONAL EXPRESSION OF A BRAIN G-PROTEIN-COUPLED ATP RECEPTOR
    WEBB, TE
    SIMON, J
    KRISHEK, BJ
    BATESON, AN
    SMART, TG
    KING, BF
    BURNSTOCK, G
    BARNARD, EA
    FEBS LETTERS, 1993, 324 (02) : 219 - 225
  • [36] Genetic variation in G-protein-coupled receptors - consequences for G-protein-coupled receptors as drug targets
    Tang, CM
    Insel, PA
    EXPERT OPINION ON THERAPEUTIC TARGETS, 2005, 9 (06) : 1247 - 1265
  • [37] CDNA CLONING OF A PUTATIVE G-PROTEIN-COUPLED RECEPTOR FROM BRAIN
    HATA, S
    EMI, Y
    IYANAGI, T
    OSUMI, T
    BIOCHIMICA ET BIOPHYSICA ACTA-GENE STRUCTURE AND EXPRESSION, 1995, 1261 (01): : 121 - 125
  • [38] G-protein-coupled receptors: From classical modes of modulation to allosteric mechanisms
    Bridges, Thomas M.
    Lindsley, Craig W.
    ACS CHEMICAL BIOLOGY, 2008, 3 (09) : 530 - 541
  • [39] Efficacy at g-protein-coupled receptors
    Terry Kenakin
    Nature Reviews Drug Discovery, 2002, 1 : 103 - 110
  • [40] G-PROTEIN-COUPLED RECEPTOR KINASES
    HAGA, T
    HAGA, K
    KAMEYAMA, K
    JOURNAL OF NEUROCHEMISTRY, 1994, 63 (02) : 400 - 412