Literature DB >> 23147414

Linking GABA(A) receptor subunits to alcohol-induced conditioned taste aversion and recovery from acute alcohol intoxication.

Y A Blednov1, J M Benavidez, M Black, D Chandra, G E Homanics, U Rudolph, R A Harris.   

Abstract

GABA type A receptors (GABA(A)-R) are important for ethanol actions and it is of interest to link individual subunits with specific ethanol behaviors. We studied null mutant mice for six different GABA(A)-R subunits (α1, α2, α3, α4, α5 and δ). Only mice lacking the α2 subunit showed reduction of conditioned taste aversion (CTA) to ethanol. These results are in agreement with data from knock-in mice with mutation of the ethanol-sensitive site in the α2-subunit (Blednov et al., 2011). All together, they indicate that aversive property of ethanol is dependent on ethanol action on α2-containing GABA(A)-R. Deletion of the α2-subunit led to faster recovery whereas absence of the α3-subunit slowed recovery from ethanol-induced incoordination (rotarod). Deletion of the other four subunits did not affect this behavior. Similar changes in this behavior for the α2 and α3 null mutants were found for flurazepam motor incoordination. However, no differences in recovery were found in motor-incoordinating effects of an α1-selective modulator (zolpidem) or an α4-selective agonist (gaboxadol). Therefore, recovery of rotarod incoordination is under control of two GABA(A)-R subunits: α2 and α3. For motor activity, α3 null mice demonstrated higher activation by ethanol (1 g/kg) whereas both α2 (-/-) and α3 (-/Y) knockout mice were less sensitive to ethanol-induced reduction of motor activity (1.5 g/kg). These studies demonstrate that the effects of ethanol at GABAergic synapses containing α2 subunit are important for specific behavioral effects of ethanol which may be relevant to the genetic linkage of the α2 subunit with human alcoholism.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 23147414      PMCID: PMC3562427          DOI: 10.1016/j.neuropharm.2012.10.016

Source DB:  PubMed          Journal:  Neuropharmacology        ISSN: 0028-3908            Impact factor:   5.250


  70 in total

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4.  Behavioral actions of alcohol: phenotypic relations from multivariate analysis of mutant mouse data.

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5.  Distribution of the major gamma-aminobutyric acid(A) receptor subunits in the basal ganglia and associated limbic brain areas of the adult rat.

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6.  Impulsiveness and insula activation during reward anticipation are associated with genetic variants in GABRA2 in a family sample enriched for alcoholism.

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Review 4.  Alcohol dependence: molecular and behavioral evidence.

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7.  Role of interleukin-1 receptor signaling in the behavioral effects of ethanol and benzodiazepines.

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9.  Apremilast regulates acute effects of ethanol and other GABAergic drugs via protein kinase A-dependent signaling.

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10.  Rewarding and aversive effects of ethanol in High Drinking in the Dark selectively bred mice.

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