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Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands

The synaptic α1β2γ2 GABA(A) receptor is activated phasically by presynaptically released GABA. The receptor is considered to be inactive between synaptic events when exposed to ambient GABA because of its low resting affinity to the transmitter. We tested the hypothesis that a combination of physiol...

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Autores principales: Germann, Allison L., Pierce, Spencer R., Senneff, Thomas C., Burbridge, Ariel B., Steinbach, Joe Henry, Akk, Gustav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6757177/
https://www.ncbi.nlm.nih.gov/pubmed/31549483
http://dx.doi.org/10.14814/phy2.14230
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author Germann, Allison L.
Pierce, Spencer R.
Senneff, Thomas C.
Burbridge, Ariel B.
Steinbach, Joe Henry
Akk, Gustav
author_facet Germann, Allison L.
Pierce, Spencer R.
Senneff, Thomas C.
Burbridge, Ariel B.
Steinbach, Joe Henry
Akk, Gustav
author_sort Germann, Allison L.
collection PubMed
description The synaptic α1β2γ2 GABA(A) receptor is activated phasically by presynaptically released GABA. The receptor is considered to be inactive between synaptic events when exposed to ambient GABA because of its low resting affinity to the transmitter. We tested the hypothesis that a combination of physiological and/or clinical positive allosteric modulators of the GABA(A) receptor with ambient GABA generates measurable steady‐state activity. Recombinant α1β2γ2L GABA(A) receptors were expressed in Xenopus oocytes and activated by combinations of low concentrations of orthosteric (GABA, taurine) and allosteric (the steroid allopregnanolone, the anesthetic propofol) agonists, in the absence and presence of the inhibitory steroid pregnenolone sulfate. Steady‐state activity was analyzed using the three‐state cyclic Resting‐Active‐Desensitized model. We estimate that the steady‐state open probability of the synaptic α1β2γ2L GABA(A) receptor in the presence of ambient GABA (1 μmol/L), taurine (10 μmol/L), and physiological levels of allopregnanolone (0.01 μmol/L) and pregnenolone sulfate (0.1 μmol/L) is 0.008. Coapplication of a clinical concentration of propofol (1 μmol/L) increases the steady‐state open probability to 0.03. Comparison of total charge transfer for phasic and tonic activity indicates that steady‐state activity can contribute strongly (~20 to >99%) to integrated activity from the synaptic GABA(A) receptor.
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spelling pubmed-67571772019-09-26 Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands Germann, Allison L. Pierce, Spencer R. Senneff, Thomas C. Burbridge, Ariel B. Steinbach, Joe Henry Akk, Gustav Physiol Rep Original Research The synaptic α1β2γ2 GABA(A) receptor is activated phasically by presynaptically released GABA. The receptor is considered to be inactive between synaptic events when exposed to ambient GABA because of its low resting affinity to the transmitter. We tested the hypothesis that a combination of physiological and/or clinical positive allosteric modulators of the GABA(A) receptor with ambient GABA generates measurable steady‐state activity. Recombinant α1β2γ2L GABA(A) receptors were expressed in Xenopus oocytes and activated by combinations of low concentrations of orthosteric (GABA, taurine) and allosteric (the steroid allopregnanolone, the anesthetic propofol) agonists, in the absence and presence of the inhibitory steroid pregnenolone sulfate. Steady‐state activity was analyzed using the three‐state cyclic Resting‐Active‐Desensitized model. We estimate that the steady‐state open probability of the synaptic α1β2γ2L GABA(A) receptor in the presence of ambient GABA (1 μmol/L), taurine (10 μmol/L), and physiological levels of allopregnanolone (0.01 μmol/L) and pregnenolone sulfate (0.1 μmol/L) is 0.008. Coapplication of a clinical concentration of propofol (1 μmol/L) increases the steady‐state open probability to 0.03. Comparison of total charge transfer for phasic and tonic activity indicates that steady‐state activity can contribute strongly (~20 to >99%) to integrated activity from the synaptic GABA(A) receptor. John Wiley and Sons Inc. 2019-09-23 /pmc/articles/PMC6757177/ /pubmed/31549483 http://dx.doi.org/10.14814/phy2.14230 Text en © 2019 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Germann, Allison L.
Pierce, Spencer R.
Senneff, Thomas C.
Burbridge, Ariel B.
Steinbach, Joe Henry
Akk, Gustav
Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands
title Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands
title_full Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands
title_fullStr Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands
title_full_unstemmed Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands
title_short Steady‐state activation and modulation of the synaptic‐type α1β2γ2L GABA(A) receptor by combinations of physiological and clinical ligands
title_sort steady‐state activation and modulation of the synaptic‐type α1β2γ2l gaba(a) receptor by combinations of physiological and clinical ligands
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6757177/
https://www.ncbi.nlm.nih.gov/pubmed/31549483
http://dx.doi.org/10.14814/phy2.14230
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