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Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors

The GluN3 subunits of the N-methyl-d-aspartate (NMDA) receptor are known to reduce its Ca(2+) permeability and Mg(2+) sensitivity, however, little is known about their effects on other channel blockers. cRNAs for rat NMDA receptor subunits were injected into Xenopus oocytes and responses to NMDA and...

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Autores principales: McClymont, David W., Harris, John, Mellor, Ian R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3657159/
https://www.ncbi.nlm.nih.gov/pubmed/22564863
http://dx.doi.org/10.1016/j.ejphar.2012.04.036
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author McClymont, David W.
Harris, John
Mellor, Ian R.
author_facet McClymont, David W.
Harris, John
Mellor, Ian R.
author_sort McClymont, David W.
collection PubMed
description The GluN3 subunits of the N-methyl-d-aspartate (NMDA) receptor are known to reduce its Ca(2+) permeability and Mg(2+) sensitivity, however, little is known about their effects on other channel blockers. cRNAs for rat NMDA receptor subunits were injected into Xenopus oocytes and responses to NMDA and glycine were recorded using two electrode voltage clamp. Channel block of receptors containing GluN1-1a/2A, GluN1-1a/2A/3A or GluN1-1a/2A/3B subunits was characterised using Mg(2+), memantine, MK-801, philanthotoxin-343 and methoctramine. IC(50) values for Mg(2+) and memantine increased when receptors contained GluN3A subunits and were further increased when they contained GluN3B, e.g. IC(50)s at − 75 mV for block of GluN1-1a/2A, GluN1-1a/2A/3A and GluN1-1a/2A/3B receptors respectively were 4.2, 22.4 and 40.1 μM for Mg(2+), and 2.5, 7.5 and 17.5 μM for memantine. Blocking activity was found to be fully or partially restored when G or R (at the N and N + 1 sites respectively) were mutated to N in GluN3A. Thus, the changes cannot be attributed to the loss of the N or N + 1 sites alone, but rather involve both sites or residues elsewhere. Block by MK-801 and philanthotoxin-343 was also reduced by GluN3A, most strongly at − 100 mV but not at − 50 mV, and by GluN3B at all V(h). Methoctramine was the least sensitive to introduction of GluN3 subunits suggesting a minimal interaction with the N and N + 1 sites. We conclude that GluN3B-containing receptors provide increased resistance to channel block compared to GluN3A-containing receptors and this must be due to differences outside the deep pore region (N site and deeper).
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spelling pubmed-36571592013-05-18 Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors McClymont, David W. Harris, John Mellor, Ian R. Eur J Pharmacol Molecular and Cellular Pharmacology The GluN3 subunits of the N-methyl-d-aspartate (NMDA) receptor are known to reduce its Ca(2+) permeability and Mg(2+) sensitivity, however, little is known about their effects on other channel blockers. cRNAs for rat NMDA receptor subunits were injected into Xenopus oocytes and responses to NMDA and glycine were recorded using two electrode voltage clamp. Channel block of receptors containing GluN1-1a/2A, GluN1-1a/2A/3A or GluN1-1a/2A/3B subunits was characterised using Mg(2+), memantine, MK-801, philanthotoxin-343 and methoctramine. IC(50) values for Mg(2+) and memantine increased when receptors contained GluN3A subunits and were further increased when they contained GluN3B, e.g. IC(50)s at − 75 mV for block of GluN1-1a/2A, GluN1-1a/2A/3A and GluN1-1a/2A/3B receptors respectively were 4.2, 22.4 and 40.1 μM for Mg(2+), and 2.5, 7.5 and 17.5 μM for memantine. Blocking activity was found to be fully or partially restored when G or R (at the N and N + 1 sites respectively) were mutated to N in GluN3A. Thus, the changes cannot be attributed to the loss of the N or N + 1 sites alone, but rather involve both sites or residues elsewhere. Block by MK-801 and philanthotoxin-343 was also reduced by GluN3A, most strongly at − 100 mV but not at − 50 mV, and by GluN3B at all V(h). Methoctramine was the least sensitive to introduction of GluN3 subunits suggesting a minimal interaction with the N and N + 1 sites. We conclude that GluN3B-containing receptors provide increased resistance to channel block compared to GluN3A-containing receptors and this must be due to differences outside the deep pore region (N site and deeper). Elsevier Science 2012-07-05 /pmc/articles/PMC3657159/ /pubmed/22564863 http://dx.doi.org/10.1016/j.ejphar.2012.04.036 Text en © 2012 Elsevier B.V. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Molecular and Cellular Pharmacology
McClymont, David W.
Harris, John
Mellor, Ian R.
Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors
title Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors
title_full Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors
title_fullStr Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors
title_full_unstemmed Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors
title_short Open-channel blockade is less effective on GluN3B than GluN3A subunit-containing NMDA receptors
title_sort open-channel blockade is less effective on glun3b than glun3a subunit-containing nmda receptors
topic Molecular and Cellular Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3657159/
https://www.ncbi.nlm.nih.gov/pubmed/22564863
http://dx.doi.org/10.1016/j.ejphar.2012.04.036
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