α2 Subunit–Containing GABAA Receptor Subtypes Are Upregulated and Contribute to Alcohol-Induced Functional Plasticity in the Rat Hippocampus
Publication type: Journal Article
Publication date: 2017-05-23
scimago Q1
wos Q2
SJR: 1.052
CiteScore: 5.5
Impact factor: 3.0
ISSN: 0026895X, 15210111
PubMed ID:
28536106
Pharmacology
Molecular Medicine
Abstract
Alcohol (EtOH) intoxication causes changes in the rodent brain γ-aminobutyric acid receptor (GABAAR) subunit composition and function, playing a crucial role in EtOH withdrawal symptoms and dependence. Building evidence indicates that withdrawal from acute EtOH and chronic intermittent EtOH (CIE) results in decreased EtOH-enhanced GABAAR δ subunit-containing extrasynaptic and EtOH-insensitive α1βγ2 subtype synaptic GABAARs but increased synaptic α4βγ2 subtype, and increased EtOH sensitivity of GABAAR miniature postsynaptic currents (mIPSCs) correlated with EtOH dependence. Here we demonstrate that after acute EtOH intoxication and CIE, upregulation of hippocampal α4βγ2 subtypes, as well as increased cell-surface levels of GABAAR α2 and γ1 subunits, along with increased α2β1γ1 GABAAR pentamers in hippocampal slices using cell-surface cross-linking, followed by Western blot and coimmunoprecipitation. One-dose and two-dose acute EtOH treatments produced temporal plastic changes in EtOH-induced anxiolysis or withdrawal anxiety, and the presence or absence of EtOH-sensitive synaptic currents correlated with cell surface peptide levels of both α4 and γ1(new α2) subunits. CIE increased the abundance of novel mIPSC patterns differing in activation/deactivation kinetics, charge transfer, and sensitivity to EtOH. The different mIPSC patterns in CIE could be correlated with upregulated highly EtOH-sensitive α2βγ subtypes and EtOH-sensitive α4βγ2 subtypes. Naïve α4 subunit knockout mice express EtOH-sensitive mIPSCs in hippocampal slices, correlating with upregulated GABAAR α2 (and not α4) subunits. Consistent with α2, β1, and γ1 subunits genetically linked to alcoholism in humans, our findings indicate that these new α2-containing synaptic GABAARs could mediate the maintained anxiolytic response to EtOH in dependent individuals, rat or human, contributing to elevated EtOH consumption.
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GOST
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Lindemeyer A. K. et al. α2 Subunit–Containing GABAA Receptor Subtypes Are Upregulated and Contribute to Alcohol-Induced Functional Plasticity in the Rat Hippocampus // Molecular Pharmacology. 2017. Vol. 92. No. 2. pp. 101-112.
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Lindemeyer A. K., Shen Y., Yazdani F., Shao X. M., Spigelman I., Davies D. L., Olsen R. W., Liang J. α2 Subunit–Containing GABAA Receptor Subtypes Are Upregulated and Contribute to Alcohol-Induced Functional Plasticity in the Rat Hippocampus // Molecular Pharmacology. 2017. Vol. 92. No. 2. pp. 101-112.
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TY - JOUR
DO - 10.1124/mol.116.107797
UR - https://doi.org/10.1124/mol.116.107797
TI - α2 Subunit–Containing GABAA Receptor Subtypes Are Upregulated and Contribute to Alcohol-Induced Functional Plasticity in the Rat Hippocampus
T2 - Molecular Pharmacology
AU - Lindemeyer, A. Kerstin
AU - Shen, Yi-Cheng
AU - Yazdani, Ferin
AU - Shao, Xuesi M
AU - Spigelman, Igor
AU - Davies, Daryl L.
AU - Olsen, Richard W.
AU - Liang, Jing
PY - 2017
DA - 2017/05/23
PB - American Society for Pharmacology and Experimental Therapeutics
SP - 101-112
IS - 2
VL - 92
PMID - 28536106
SN - 0026-895X
SN - 1521-0111
ER -
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BibTex (up to 50 authors)
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@article{2017_Lindemeyer,
author = {A. Kerstin Lindemeyer and Yi-Cheng Shen and Ferin Yazdani and Xuesi M Shao and Igor Spigelman and Daryl L. Davies and Richard W. Olsen and Jing Liang},
title = {α2 Subunit–Containing GABAA Receptor Subtypes Are Upregulated and Contribute to Alcohol-Induced Functional Plasticity in the Rat Hippocampus},
journal = {Molecular Pharmacology},
year = {2017},
volume = {92},
publisher = {American Society for Pharmacology and Experimental Therapeutics},
month = {may},
url = {https://doi.org/10.1124/mol.116.107797},
number = {2},
pages = {101--112},
doi = {10.1124/mol.116.107797}
}
Cite this
MLA
Copy
Lindemeyer, A. Kerstin, et al. “α2 Subunit–Containing GABAA Receptor Subtypes Are Upregulated and Contribute to Alcohol-Induced Functional Plasticity in the Rat Hippocampus.” Molecular Pharmacology, vol. 92, no. 2, May. 2017, pp. 101-112. https://doi.org/10.1124/mol.116.107797.