Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.

Taurine is a semi-essential sulfonic acid found at high concentrations in plasma and mammalian tissues which regulates osmolarity, ion channel activity and glucose homeostasis. The structural requirements of GABAA-receptors (GABAAR) gated by taurine are not yet known. We determined taurine potency a...

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Main Authors: Olaf Kletke, Guenter Gisselmann, Andrea May, Hanns Hatt, Olga A Sergeeva
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3640040?pdf=render
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spelling doaj-438a5ba9d84b41b9bdda2f2c6acff1b42020-11-25T01:14:11ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0184e6173310.1371/journal.pone.0061733Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.Olaf KletkeGuenter GisselmannAndrea MayHanns HattOlga A SergeevaTaurine is a semi-essential sulfonic acid found at high concentrations in plasma and mammalian tissues which regulates osmolarity, ion channel activity and glucose homeostasis. The structural requirements of GABAA-receptors (GABAAR) gated by taurine are not yet known. We determined taurine potency and efficacy relative to GABA at different types of recombinant GABAAR occurring in central histaminergic neurons of the mouse hypothalamic tuberomamillary nucleus (TMN) which controls arousal. At binary α(1/2)β(1/3) receptors taurine was as efficient as GABA, whereas incorporation of the γ(1/2) subunit reduced taurine efficacy to 60-90% of GABA. The mutation γ(2F77I), which abolishes zolpidem potentiation, significantly reduced taurine efficacy at recombinant and native receptors compared to the wild type controls. As taurine was a full- or super- agonist at recombinant αxβ1δ-GABAAR, we generated a chimeric γ(2) subunit carrying the δ subunit motif around F77 (MTVFLH). At α(1/2)β(1)γ2(MTVFLH) receptors taurine became a super-agonist, similar to δ-containing ternary receptors, but remained a partial agonist at β3-containing receptors. In conclusion, using site-directed mutagenesis we found structural determinants of taurine's partial agonism at γ-containing GABAA receptors. Our study sheds new light on the β1 subunit conferring the widest range of taurine-efficacies modifying GABAAR function under (patho)physiological conditions.http://europepmc.org/articles/PMC3640040?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Olaf Kletke
Guenter Gisselmann
Andrea May
Hanns Hatt
Olga A Sergeeva
spellingShingle Olaf Kletke
Guenter Gisselmann
Andrea May
Hanns Hatt
Olga A Sergeeva
Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.
PLoS ONE
author_facet Olaf Kletke
Guenter Gisselmann
Andrea May
Hanns Hatt
Olga A Sergeeva
author_sort Olaf Kletke
title Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.
title_short Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.
title_full Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.
title_fullStr Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.
title_full_unstemmed Partial agonism of taurine at gamma-containing native and recombinant GABAA receptors.
title_sort partial agonism of taurine at gamma-containing native and recombinant gabaa receptors.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Taurine is a semi-essential sulfonic acid found at high concentrations in plasma and mammalian tissues which regulates osmolarity, ion channel activity and glucose homeostasis. The structural requirements of GABAA-receptors (GABAAR) gated by taurine are not yet known. We determined taurine potency and efficacy relative to GABA at different types of recombinant GABAAR occurring in central histaminergic neurons of the mouse hypothalamic tuberomamillary nucleus (TMN) which controls arousal. At binary α(1/2)β(1/3) receptors taurine was as efficient as GABA, whereas incorporation of the γ(1/2) subunit reduced taurine efficacy to 60-90% of GABA. The mutation γ(2F77I), which abolishes zolpidem potentiation, significantly reduced taurine efficacy at recombinant and native receptors compared to the wild type controls. As taurine was a full- or super- agonist at recombinant αxβ1δ-GABAAR, we generated a chimeric γ(2) subunit carrying the δ subunit motif around F77 (MTVFLH). At α(1/2)β(1)γ2(MTVFLH) receptors taurine became a super-agonist, similar to δ-containing ternary receptors, but remained a partial agonist at β3-containing receptors. In conclusion, using site-directed mutagenesis we found structural determinants of taurine's partial agonism at γ-containing GABAA receptors. Our study sheds new light on the β1 subunit conferring the widest range of taurine-efficacies modifying GABAAR function under (patho)physiological conditions.
url http://europepmc.org/articles/PMC3640040?pdf=render
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