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PMID: 9503325 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Zn2+ inhibition of recombinant GABAA receptors: an allosteric, state-dependent mechanism determined by the gamma-subunit.

The Journal of physiology ·Vol. 506 ( Pt 3) ·1998-02-01 ·Pages 609-25

Gingrich KJ, Burkat PM

Abstract

1. The gamma-subunit in recombinant gamma-aminobutyric acid (GABAA) receptors reduces the sensitivity of GABA-triggered Cl- currents to inhibition by Zn2+ and transforms the apparent mechanism of antagonism from non-competitive to competitive. To investigate underlying receptor function we studied Zn2- effects on macroscopic and single-channel currents of recombinant alpha 1 beta 2 and alpha 1 beta 2 gamma 2 receptors expressed heterologously in HEK-293 cells using the patch-clamp technique and rapid solution changes. 2. Zn2+ present for > 60 s (constant) inhibited peak, GABA (5 microM)-triggered currents of alpha 1 beta 2 receptors in a concentration-dependent manner (inhibition equation parameters: concentration at half-amplitude (IC50) = 0.94 microM; slope related to Hill coefficient, S = 0.7) that was unaffected by GABA concentration. The gamma 2 subunit (alpha 1 beta 2 gamma 2 receptor) reduced Zn2+ sensitivity more than fiftyfold (IC50 = 51 microM, S = 0.86); increased GABA concentration (100 microM) antagonized inhibition by reducing apparent affinity (IC50 = 322 microM, S = 0.79). Zn2+ slowed macroscopic gating of alpha 1 beta 2 receptors by inducing a novel slow exponential component in the activation time course and suppressing a fast component of control desensitization. For alpha 1 beta 2 gamma 2 receptors, Zn2+ accelerated a fast component of apparent desensitization. 3. Zn2+ preincubations lasting up to 10 s markedly increased current depression and activation slowing of alpha 1 beta 2 receptors, but had little effect on currents from alpha 1 beta 2 gamma 2 receptors. 4. Steady-state fluctuation analysis of macroscopic alpha 1 beta 2 gamma 2 currents (n = 5) resulted in control (2 microM GABA) power density spectra that were fitted by a sum of two Lorentzian functions (relaxation times: 37 +/- 5.6 and 1.41 +/- 0.15 ms, means +/- S.E.M.). Zn2+ (200 microM) reduced the total power almost sixfold and accelerated the slow (23 +/- 2.8 ms, P < 0.05) without altering the fast (1.40 +/- 0.16 ms) relaxation time. The ratio (fast/slow) of Lorentzian areas was increased by Zn2+ (control, 3.39 +/- 0.55; Zn2+, 4.9 +/- 0.37, P < 0.05). 5. Zn2+ (500 microM) depression of previously activated current amplitudes (% control) for alpha 1 beta 2 gamma 2 receptors was independent of GABA concentration (5 microM, 13.2 +/- 0.72%; 100 microM, 12.2 +/- 2.9%, P < 0.8, n = 5). Both onset and offset inhibition time courses were biexponential. Onset rates were enhanced by Zn2+ concentration. Inhibition onset was also biexponential for preactivated alpha 1 beta 2 receptors with current depression more than fourfold less sensitive (5 microM GABA, IC50 = 3.8 microM, S = 0.84) relative to that in constant Zn2+. 6. The results lead us to propose a general model of Zn2+ inhibition of GABAA receptors in which Zn2+ binds to a single extracellular site, induces allosteric receptor inhibition involving two non-conducting states, site affinity is state-dependent, and the features of state dependence are determined by the gamma-subunit.

MeSH Terms
Cell Line Electrophysiology GABA-A Receptor Antagonists Humans Ion Channel Gating/drug effects,physiology Kinetics Membrane Potentials/physiology Molecular Conformation Patch-Clamp Techniques Receptors, GABA-A/chemistry,genetics Recombinant Proteins Transfection Zinc/pharmacology
Chemicals
GABA-A Receptor Antagonists Receptors, GABA-A Recombinant Proteins Zinc
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Gingrich K J
Department of Anesthesiology, University of Rochester, School of Medicine, NY 14642, USA. [email protected]
Burkat P M
References (44)
44 references, click to expand
  1. Kinetic properties of the GABAA receptor main conductance state of mouse spinal cord neurones in culture.
    J Physiol. 1989 Mar;410:479-99 PMID: 2477526
  2. Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches.
    Pflugers Arch. 1981 Aug;391(2):85-100 PMID: 6270629
  3. Negative modulation of the gamma-aminobutyric acid response by extracellular zinc.
    Mol Pharmacol. 1991 Nov;40(5):766-73 PMID: 1658609
  4. Modulation of inhibitory and excitatory amino acid receptor ion channels by zinc.
    Prog Neurobiol. 1994 Feb;42(3):393-441 PMID: 7520185
  5. Selective release of endogenous zinc from the hippocampal mossy fibers in situ.
    Brain Res. 1987 Feb 24;404(1-2):58-64 PMID: 3567585
  6. Conductance fluctuations and ionic pores in membranes.
    Annu Rev Biophys Bioeng. 1977;6:345-81 PMID: 68708
  7. Micromolar concentrations of Zn2+ antagonize NMDA and GABA responses of hippocampal neurons.
    Nature. 1987 Aug 13-19;328(6131):640-3 PMID: 3039375
  8. Electron microscopical localization of the zinc in hippocampal mossy fibre synapses by a modified sulfide silver procedure.
    Histochemie. 1967;8(4):355-68 PMID: 4876575
  9. Stimulation-induced uptake and release of zinc in hippocampal slices.
    Nature. 1984 Apr 19-25;308(5961):736-8 PMID: 6717567
  10. Differential effect of zinc on the vertebrate GABAA-receptor complex.
    Br J Pharmacol. 1990 Apr;99(4):643-54 PMID: 2163276
  11. Divalent cations reduce depolarization of primary afferent terminations by GABA.
    Brain Res. 1987 Sep 29;422(1):192-5 PMID: 3676782
  12. A novel modulatory binding site for zinc on the GABAA receptor complex in cultured rat neurones.
    J Physiol. 1992 Feb;447:587-625 PMID: 1375632
  13. Dependence of the GABAA receptor gating kinetics on the alpha-subunit isoform: implications for structure-function relations and synaptic transmission.
    J Physiol. 1995 Dec 1;489 ( Pt 2):529-43 PMID: 8847645
  14. Acetylcholine receptor channel imaged in the open state.
    Nature. 1995 Jan 5;373(6509):37-43 PMID: 7800037
  15. A single histidine residue is essential for zinc inhibition of GABA rho 1 receptors.
    J Neurosci. 1995 Nov;15(11):7684-91 PMID: 7472519
  16. Functional and molecular distinction between recombinant rat GABAA receptor subtypes by Zn2+.
    Neuron. 1990 Dec;5(6):781-8 PMID: 1702644
  17. Pharmacology of GABA receptor Cl- channels in rat retinal bipolar cells.
    Nature. 1993 Jan 14;361(6408):159-62 PMID: 7678450
  18. Studies on the mechanism of action of picrotoxinin and other convulsants at the crustacean muscle GABA receptor.
    Proc R Soc Lond B Biol Sci. 1986 Mar 22;227(1247):191-216 PMID: 26151987
  19. The action of zinc on synaptic transmission and neuronal excitability in cultures of mouse hippocampus.
    J Physiol. 1989 Aug;415:351-65 PMID: 2561789
  20. GABAA receptors are differentially sensitive to zinc: dependence on subunit composition.
    Br J Pharmacol. 1991 Aug;103(4):1837-9 PMID: 1655141
  21. How quickly can GABAA receptors open?
    Neuron. 1994 Jan;12(1):61-71 PMID: 8292360
  22. Assembly of GABAA receptor subunits: role of the delta subunit.
    J Neurosci. 1994 Nov;14(11 Pt 2):7077-86 PMID: 7525894
  23. Functional properties of recombinant rat GABAA receptors depend upon subunit composition.
    Neuron. 1990 Jun;4(6):919-28 PMID: 1694446
  24. Zinc coordination, function, and structure of zinc enzymes and other proteins.
    Biochemistry. 1990 Jun 19;29(24):5647-59 PMID: 2200508
  25. The distribution of 13 GABAA receptor subunit mRNAs in the rat brain. I. Telencephalon, diencephalon, mesencephalon.
    J Neurosci. 1992 Mar;12(3):1040-62 PMID: 1312131
  26. Intravesicular localization of zinc in rat telencephalic boutons. A histochemical study.
    Brain Res. 1985 Jun 24;337(1):91-8 PMID: 2408711
  27. Noncompetitive inhibition of gamma-aminobutyric acidA channels by Zn.
    Mol Pharmacol. 1991 Mar;39(3):267-74 PMID: 1706468
  28. Neurosteroids act on recombinant human GABAA receptors.
    Neuron. 1990 May;4(5):759-65 PMID: 2160838
  29. A physiological role for endogenous zinc in rat hippocampal synaptic neurotransmission.
    Nature. 1991 Feb 7;349(6309):521-4 PMID: 1846946
  30. Release of endogenous Zn2+ from brain tissue during activity.
    Nature. 1984 Apr 19-25;308(5961):734-6 PMID: 6717566
  31. Cationic modulation of rho 1-type gamma-aminobutyrate receptors expressed in Xenopus oocytes.
    Proc Natl Acad Sci U S A. 1994 Dec 20;91(26):12725-9 PMID: 7809110
  32. Zinc-containing neurons.
    Biol Signals. 1994 May-Jun;3(3):127-39 PMID: 7531563
  33. A novel effect of zinc on the lobster muscle GABA receptor.
    Proc R Soc Lond B Biol Sci. 1982 Jun 22;215(1200):327-41 PMID: 6127710
  34. In situ hybridization histochemistry reveals a diversity of GABAA receptor subunit mRNAs in neurons of the rat spinal cord and dorsal root ganglia.
    Neuroscience. 1991;42(2):497-507 PMID: 1654537
  35. The "mixed" effect of picrotoxin on the GABA dose/conductance relation recorded from lobster muscle.
    Neuropharmacology. 1978 Mar;17(3):159-67 PMID: 643162
  36. Multiple mechanisms of antagonism of gamma-aminobutyric acid (GABA) responses.
    Cell Mol Neurobiol. 1987 Mar;7(1):97-103 PMID: 3594520
  37. Zinc is a mixed antagonist of homomeric rho 1 gamma-aminobutyric acid-activated channels.
    Mol Pharmacol. 1995 Mar;47(3):595-602 PMID: 7535381
  38. Antagonists of GABA responses, studied using internally perfused frog dorsal root ganglion neurons.
    Neuroscience. 1987 Sep;22(3):1123-33 PMID: 2825069
  39. Zinc enhances GABAergic transmission in rat neocortical neurons.
    J Neurophysiol. 1993 Sep;70(3):1264-9 PMID: 8229173
  40. Alpha subunits influence Zn block of gamma 2 containing GABAA receptor currents.
    Neuroreport. 1995 Feb 15;6(3):461-4 PMID: 7766843
  41. Structural and functional basis for GABAA receptor heterogeneity.
    Nature. 1988 Sep 1;335(6185):76-9 PMID: 2842688
  42. The effect of subunit composition of rat brain GABAA receptors on channel function.
    Neuron. 1990 Nov;5(5):703-11 PMID: 1699569
  43. Activation of a potassium current by rapid photochemically generated step increases of intracellular calcium in rat sympathetic neurons.
    Proc Natl Acad Sci U S A. 1987 May;84(10):3496-500 PMID: 2437582
  44. Sequence and functional expression of the GABA A receptor shows a ligand-gated receptor super-family.
    Nature. 1987 Jul 16-22;328(6127):221-7 PMID: 3037384
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1998-02-01
Pages
609-25
Language
English
Region
England
NLM ID
0266262
PMCID
PMC2230740
Subset
IM
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