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The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release

Magnocellular neurons of the supraoptic nucleus (SON) secrete oxytocin and vasopressin from axon terminals in the neurohypophysis, but they also release large amounts of peptide from their somata and dendrites, and this can be regulated both by activity-dependent Ca(2+) influx and by mobilization of...

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Autores principales: Tobin, Vicky A., Douglas, Alison J., Leng, Gareth, Ludwig, Mike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3197583/
https://www.ncbi.nlm.nih.gov/pubmed/22028774
http://dx.doi.org/10.1371/journal.pone.0025366
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author Tobin, Vicky A.
Douglas, Alison J.
Leng, Gareth
Ludwig, Mike
author_facet Tobin, Vicky A.
Douglas, Alison J.
Leng, Gareth
Ludwig, Mike
author_sort Tobin, Vicky A.
collection PubMed
description Magnocellular neurons of the supraoptic nucleus (SON) secrete oxytocin and vasopressin from axon terminals in the neurohypophysis, but they also release large amounts of peptide from their somata and dendrites, and this can be regulated both by activity-dependent Ca(2+) influx and by mobilization of intracellular Ca(2+). This somato-dendritic release can also be primed by agents that mobilise intracellular Ca(2+), meaning that the extent to which it is activity-dependent, is physiologically labile. We investigated the role of different Ca(2+) channels in somato-dendritic release; blocking N-type channels reduced depolarisation-induced oxytocin release from SONs in vitro from adult and post-natal day 8 (PND-8) rats, blocking L-type only had effect in PND-8 rats, while blocking other channel types had no significant effect. When oxytocin release was primed by prior exposure to thapsigargin, both N- and L-type channel blockers reduced release, while P/Q and R-type blockers were ineffective. Using confocal microscopy, we found immunoreactivity for Ca(v)1.2 and 1.3 channel subunits (which both form L-type channels), 2.1 (P/Q type), 2.2 (N-type) and 2.3 (R-type) in the somata and dendrites of both oxytocin and vasopressin neurons, and the intensity of the immunofluorescence signal for different subunits differed between PND-8, adult and lactating rats. Using patch-clamp electrophysiology, the N-type Ca(2+) current density increased after thapsigargin treatment, but did not alter the voltage sensitivity of the channel. These results suggest that the expression, location or availability of N-type Ca(2+) channels is altered when required for high rates of somato-dendritic peptide release.
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spelling pubmed-31975832011-10-25 The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release Tobin, Vicky A. Douglas, Alison J. Leng, Gareth Ludwig, Mike PLoS One Research Article Magnocellular neurons of the supraoptic nucleus (SON) secrete oxytocin and vasopressin from axon terminals in the neurohypophysis, but they also release large amounts of peptide from their somata and dendrites, and this can be regulated both by activity-dependent Ca(2+) influx and by mobilization of intracellular Ca(2+). This somato-dendritic release can also be primed by agents that mobilise intracellular Ca(2+), meaning that the extent to which it is activity-dependent, is physiologically labile. We investigated the role of different Ca(2+) channels in somato-dendritic release; blocking N-type channels reduced depolarisation-induced oxytocin release from SONs in vitro from adult and post-natal day 8 (PND-8) rats, blocking L-type only had effect in PND-8 rats, while blocking other channel types had no significant effect. When oxytocin release was primed by prior exposure to thapsigargin, both N- and L-type channel blockers reduced release, while P/Q and R-type blockers were ineffective. Using confocal microscopy, we found immunoreactivity for Ca(v)1.2 and 1.3 channel subunits (which both form L-type channels), 2.1 (P/Q type), 2.2 (N-type) and 2.3 (R-type) in the somata and dendrites of both oxytocin and vasopressin neurons, and the intensity of the immunofluorescence signal for different subunits differed between PND-8, adult and lactating rats. Using patch-clamp electrophysiology, the N-type Ca(2+) current density increased after thapsigargin treatment, but did not alter the voltage sensitivity of the channel. These results suggest that the expression, location or availability of N-type Ca(2+) channels is altered when required for high rates of somato-dendritic peptide release. Public Library of Science 2011-10-20 /pmc/articles/PMC3197583/ /pubmed/22028774 http://dx.doi.org/10.1371/journal.pone.0025366 Text en Tobin 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
Tobin, Vicky A.
Douglas, Alison J.
Leng, Gareth
Ludwig, Mike
The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release
title The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release
title_full The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release
title_fullStr The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release
title_full_unstemmed The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release
title_short The Involvement of Voltage-Operated Calcium Channels in Somato-Dendritic Oxytocin Release
title_sort involvement of voltage-operated calcium channels in somato-dendritic oxytocin release
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3197583/
https://www.ncbi.nlm.nih.gov/pubmed/22028774
http://dx.doi.org/10.1371/journal.pone.0025366
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