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J Physiol
2006 Dec 01;577Pt 2:569-77. doi: 10.1113/jphysiol.2006.120287.
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Stoichiometry of a pore mutation that abolishes picrotoxin-mediated antagonism of the GABAA receptor.
Sedelnikova A
,
Erkkila BE
,
Harris H
,
Zakharkin SO
,
Weiss DS
.
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Picrotoxin, a potent antagonist of the inhibitory central nervous system GABAA and glycine receptors, is believed to interact with residues that line the central ion pore. These pore-lining residues are in the second transmembrane domain (TM2) of each of the five constituent subunits. One of these amino acids, a threonine at the 6' location, when mutated to phenylalanine, abolishes picrotoxin sensitivity. It has been suggested that this threonine, via hydrogen bonding, directly interacts with the picrotoxin molecule. We previously demonstrated that this mutation, in the alpha, beta or gamma subunit, can impart picrotoxin resistance to the GABA receptor. Since the functional pentameric GABA receptor contains two alpha subunits, two beta subunits and one gamma subunit, it is not clear how many alpha and beta subunits must carry this mutation to impart the resistant phenotype. In this study, by coexpression of mutant alpha or beta subunits with their wild-type counterparts in various defined ratios, we demonstrate that any single subunit carrying the 6' mutation imparts picrotoxin resistance. Implications of this finding in terms of the mechanism of antagonism are considered.
Akaike,
Bicuculline and picrotoxin block gamma-aminobutyric acid-gated Cl- conductance by different mechanisms.
1985, Pubmed
Akaike,
Bicuculline and picrotoxin block gamma-aminobutyric acid-gated Cl- conductance by different mechanisms.
1985,
Pubmed
Baumann,
Individual properties of the two functional agonist sites in GABA(A) receptors.
2003,
Pubmed
,
Xenbase
Baumann,
Forced subunit assembly in alpha1beta2gamma2 GABAA receptors. Insight into the absolute arrangement.
2002,
Pubmed
,
Xenbase
Baur,
A GABA(A) receptor of defined subunit composition and positioning: concatenation of five subunits.
2006,
Pubmed
,
Xenbase
Boulineau,
Consequence of the presence of two different beta subunit isoforms in a GABA(A) receptor.
2005,
Pubmed
,
Xenbase
Buhr,
Two novel residues in M2 of the gamma-aminobutyric acid type A receptor affecting gating by GABA and picrotoxin affinity.
2001,
Pubmed
,
Xenbase
Chang,
Site-specific fluorescence reveals distinct structural changes with GABA receptor activation and antagonism.
2002,
Pubmed
,
Xenbase
Chang,
Stoichiometry of a recombinant GABAA receptor.
1996,
Pubmed
,
Xenbase
Chang,
Substitutions of the highly conserved M2 leucine create spontaneously opening rho1 gamma-aminobutyric acid receptors.
1998,
Pubmed
,
Xenbase
Constanti,
The "mixed" effect of picrotoxin on the GABA dose/conductance relation recorded from lobster muscle.
1978,
Pubmed
Davidoff,
Picrotoxin antagonism of the inhibition of interneurons by glycine.
1969,
Pubmed
Dibas,
Identification of a novel residue within the second transmembrane domain that confers use-facilitated block by picrotoxin in glycine alpha 1 receptors.
2002,
Pubmed
Engberg,
On the interaction of picrotoxin with GABA and glycine in the spinal cord.
1970,
Pubmed
Galindo,
GABA-picrotoxin interaction in the mammalian central nervous system.
1969,
Pubmed
Goutman,
Studies on the mechanisms of action of picrotoxin, quercetin and pregnanolone at the GABA rho 1 receptor.
2004,
Pubmed
,
Xenbase
Gurley,
Point mutations in the M2 region of the alpha, beta, or gamma subunit of the GABAA channel that abolish block by picrotoxin.
1995,
Pubmed
,
Xenbase
Hawthorne,
A picrotoxin-specific conformational change in the glycine receptor M2-M3 loop.
2005,
Pubmed
Hill,
Antagonism of GABA by picrotoxin in the feline cerebral cortex.
1972,
Pubmed
Inoue,
Blockade of gamma-aminobutyric acid-gated chloride current in frog sensory neurons by picrotoxin.
1988,
Pubmed
Kammann,
Rapid insertional mutagenesis of DNA by polymerase chain reaction (PCR).
1989,
Pubmed
Liman,
Subunit stoichiometry of a mammalian K+ channel determined by construction of multimeric cDNAs.
1992,
Pubmed
,
Xenbase
Lynch,
Mutations affecting the glycine receptor agonist transduction mechanism convert the competitive antagonist, picrotoxin, into an allosteric potentiator.
1995,
Pubmed
Miyazawa,
Structure and gating mechanism of the acetylcholine receptor pore.
2003,
Pubmed
Newland,
On the mechanism of action of picrotoxin on GABA receptor channels in dissociated sympathetic neurones of the rat.
1992,
Pubmed
Pribilla,
The atypical M2 segment of the beta subunit confers picrotoxinin resistance to inhibitory glycine receptor channels.
1992,
Pubmed
Shan,
A single beta subunit M2 domain residue controls the picrotoxin sensitivity of alphabeta heteromeric glycine receptor chloride channels.
2001,
Pubmed
Smart,
Studies on the mechanism of action of picrotoxinin and other convulsants at the crustacean muscle GABA receptor.
1986,
Pubmed
Tretter,
Stoichiometry and assembly of a recombinant GABAA receptor subtype.
1997,
Pubmed
Xu,
Interaction of picrotoxin with GABAA receptor channel-lining residues probed in cysteine mutants.
1995,
Pubmed
,
Xenbase
Zhang,
Cloning of a gamma-aminobutyric acid type C receptor subunit in rat retina with a methionine residue critical for picrotoxinin channel block.
1995,
Pubmed
,
Xenbase
Zhorov,
Chloride channels of glycine and GABA receptors with blockers: Monte Carlo minimization and structure-activity relationships.
2000,
Pubmed