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Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body

Nitric Oxide (NO) is a diffusible second messenger that modulates ion channels, intrinsic excitability and mediates synaptic plasticity. In light of its activity-dependent generation in the principal neurons of the medial nucleus of the trapezoid body (MNTB), we have investigated its potential modul...

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Autores principales: Tozer, Adam J. B., Forsythe, Ian D., Steinert, Joern R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3289649/
https://www.ncbi.nlm.nih.gov/pubmed/22389692
http://dx.doi.org/10.1371/journal.pone.0032256
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author Tozer, Adam J. B.
Forsythe, Ian D.
Steinert, Joern R.
author_facet Tozer, Adam J. B.
Forsythe, Ian D.
Steinert, Joern R.
author_sort Tozer, Adam J. B.
collection PubMed
description Nitric Oxide (NO) is a diffusible second messenger that modulates ion channels, intrinsic excitability and mediates synaptic plasticity. In light of its activity-dependent generation in the principal neurons of the medial nucleus of the trapezoid body (MNTB), we have investigated its potential modulatory effects on native voltage-gated calcium channels (Ca(V)) within this nucleus. Whole-cell patch recordings were made from brain slices from P13–15 CBA mice. Slices were incubated with the inhibitor of neuronal nitric oxide synthase (nNOS) 7-nitroindazole (10 µM) and pharmacological blockers used to isolate Ca(2+) current subtypes. Unpaired observations in the presence and absence of the NO-donors sodium nitroprusside (SNP, 100 µM) or Diethyl-ammonium-nonoate (DEA, 100 µM) were made to elucidate NO-dependent modulation of the expressed Ca(V) subtypes. A differential effect of NO on the calcium channel subtypes was observed: Ca(V)1 and Ca(V)2.1 (L+R- and P/Q+R-type) conductances were potentiated, whereas N+R-type (Ca(V)2.2) and R-type (Ca(V)2.3) current amplitudes were unaffected. L+R-type currents increased from 0.36±0.04 nA to 0.64±0.11 nA and P/Q+R-type from 0.55±0.09 nA to 0.94±0.05 nA, thereby changing the balance and relative contribution of each subtype to the whole cell calcium current. In addition, N+R-type half-activation voltage was left shifted following NO exposure. NO-dependent modulation of P/Q+R and N+R-type, but not L+R-type, channels was removed by inhibition of soluble guanylyl cyclase (sGC) activity. This data demonstrates a differential effect of NO signalling on voltage-gated calcium entry, by distinct NO-dependent pathways.
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spelling pubmed-32896492012-03-02 Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body Tozer, Adam J. B. Forsythe, Ian D. Steinert, Joern R. PLoS One Research Article Nitric Oxide (NO) is a diffusible second messenger that modulates ion channels, intrinsic excitability and mediates synaptic plasticity. In light of its activity-dependent generation in the principal neurons of the medial nucleus of the trapezoid body (MNTB), we have investigated its potential modulatory effects on native voltage-gated calcium channels (Ca(V)) within this nucleus. Whole-cell patch recordings were made from brain slices from P13–15 CBA mice. Slices were incubated with the inhibitor of neuronal nitric oxide synthase (nNOS) 7-nitroindazole (10 µM) and pharmacological blockers used to isolate Ca(2+) current subtypes. Unpaired observations in the presence and absence of the NO-donors sodium nitroprusside (SNP, 100 µM) or Diethyl-ammonium-nonoate (DEA, 100 µM) were made to elucidate NO-dependent modulation of the expressed Ca(V) subtypes. A differential effect of NO on the calcium channel subtypes was observed: Ca(V)1 and Ca(V)2.1 (L+R- and P/Q+R-type) conductances were potentiated, whereas N+R-type (Ca(V)2.2) and R-type (Ca(V)2.3) current amplitudes were unaffected. L+R-type currents increased from 0.36±0.04 nA to 0.64±0.11 nA and P/Q+R-type from 0.55±0.09 nA to 0.94±0.05 nA, thereby changing the balance and relative contribution of each subtype to the whole cell calcium current. In addition, N+R-type half-activation voltage was left shifted following NO exposure. NO-dependent modulation of P/Q+R and N+R-type, but not L+R-type, channels was removed by inhibition of soluble guanylyl cyclase (sGC) activity. This data demonstrates a differential effect of NO signalling on voltage-gated calcium entry, by distinct NO-dependent pathways. Public Library of Science 2012-02-28 /pmc/articles/PMC3289649/ /pubmed/22389692 http://dx.doi.org/10.1371/journal.pone.0032256 Text en Tozer et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tozer, Adam J. B.
Forsythe, Ian D.
Steinert, Joern R.
Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body
title Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body
title_full Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body
title_fullStr Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body
title_full_unstemmed Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body
title_short Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (Ca(V)1) and P/Q-Type (Ca(V)2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body
title_sort nitric oxide signalling augments neuronal voltage-gated l-type (ca(v)1) and p/q-type (ca(v)2.1) channels in the mouse medial nucleus of the trapezoid body
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3289649/
https://www.ncbi.nlm.nih.gov/pubmed/22389692
http://dx.doi.org/10.1371/journal.pone.0032256
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