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SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro

BACKGROUND: Circadian organisation of behavioural and physiological rhythms in mammals is largely driven by the clock in the suprachiasmatic nuclei (SCN) of the hypothalamus. In this clock, a molecular transcriptional repression and activation mechanism generates near 24 hour rhythms. One of the out...

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Autores principales: van der Veen, Daan R, Mulder, Ellis GA, Oster, Henrik, Gerkema, Menno P, Hut, Roelof A
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2277380/
https://www.ncbi.nlm.nih.gov/pubmed/18355404
http://dx.doi.org/10.1186/1740-3391-6-5
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author van der Veen, Daan R
Mulder, Ellis GA
Oster, Henrik
Gerkema, Menno P
Hut, Roelof A
author_facet van der Veen, Daan R
Mulder, Ellis GA
Oster, Henrik
Gerkema, Menno P
Hut, Roelof A
author_sort van der Veen, Daan R
collection PubMed
description BACKGROUND: Circadian organisation of behavioural and physiological rhythms in mammals is largely driven by the clock in the suprachiasmatic nuclei (SCN) of the hypothalamus. In this clock, a molecular transcriptional repression and activation mechanism generates near 24 hour rhythms. One of the outputs of the molecular clock in specific SCN neurons is arginine-vasopressin (AVP), which is responsive to transcriptional activation by clock gene products. As negative regulators, the protein products of the period genes are thought to repress transcriptional activity of the positive limb after heterodimerisation with CRYPTOCHROME. When both the Per1 and Per2 genes are dysfunctional by targeted deletion of the PAS heterodimer binding domain, mice lose circadian organization of behaviour upon release into constant environmental conditions. To which degree the period genes are involved in the control of AVP output is unknown. METHODS: Using an in vitro slice culture setup, SCN-AVP release of cultures made of 10 wildtype and 9 Per1/2 double-mutant mice was assayed. Mice were sacrificed in either the early light phase of the light-dark cycle, or in the early subjective day on the first day of constant dark. RESULTS: Here we report that in arrhythmic homozygous Per1/2 double-mutant mice there is still a diurnal peak in in vitro AVP release from the SCN similar to that of wildtypes but distinctively different from the release pattern from the paraventricular nucleus. Such a modulation of AVP release is unexpected in mice where the circadian clockwork is thought to be disrupted. CONCLUSION: Our results suggest that the circadian clock in these animals, although deficient in (most) behavioural and molecular rhythms, may still be (partially) functional, possibly as an hourglass mechanism. The level of perturbation of the clock in Per1/2 double mutants may therefore be less than was originally thought.
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spelling pubmed-22773802008-04-01 SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro van der Veen, Daan R Mulder, Ellis GA Oster, Henrik Gerkema, Menno P Hut, Roelof A J Circadian Rhythms Research BACKGROUND: Circadian organisation of behavioural and physiological rhythms in mammals is largely driven by the clock in the suprachiasmatic nuclei (SCN) of the hypothalamus. In this clock, a molecular transcriptional repression and activation mechanism generates near 24 hour rhythms. One of the outputs of the molecular clock in specific SCN neurons is arginine-vasopressin (AVP), which is responsive to transcriptional activation by clock gene products. As negative regulators, the protein products of the period genes are thought to repress transcriptional activity of the positive limb after heterodimerisation with CRYPTOCHROME. When both the Per1 and Per2 genes are dysfunctional by targeted deletion of the PAS heterodimer binding domain, mice lose circadian organization of behaviour upon release into constant environmental conditions. To which degree the period genes are involved in the control of AVP output is unknown. METHODS: Using an in vitro slice culture setup, SCN-AVP release of cultures made of 10 wildtype and 9 Per1/2 double-mutant mice was assayed. Mice were sacrificed in either the early light phase of the light-dark cycle, or in the early subjective day on the first day of constant dark. RESULTS: Here we report that in arrhythmic homozygous Per1/2 double-mutant mice there is still a diurnal peak in in vitro AVP release from the SCN similar to that of wildtypes but distinctively different from the release pattern from the paraventricular nucleus. Such a modulation of AVP release is unexpected in mice where the circadian clockwork is thought to be disrupted. CONCLUSION: Our results suggest that the circadian clock in these animals, although deficient in (most) behavioural and molecular rhythms, may still be (partially) functional, possibly as an hourglass mechanism. The level of perturbation of the clock in Per1/2 double mutants may therefore be less than was originally thought. BioMed Central 2008-03-20 /pmc/articles/PMC2277380/ /pubmed/18355404 http://dx.doi.org/10.1186/1740-3391-6-5 Text en Copyright © 2008 van der Veen et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
van der Veen, Daan R
Mulder, Ellis GA
Oster, Henrik
Gerkema, Menno P
Hut, Roelof A
SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro
title SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro
title_full SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro
title_fullStr SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro
title_full_unstemmed SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro
title_short SCN-AVP release of mPer1/mPer2 double-mutant mice in vitro
title_sort scn-avp release of mper1/mper2 double-mutant mice in vitro
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2277380/
https://www.ncbi.nlm.nih.gov/pubmed/18355404
http://dx.doi.org/10.1186/1740-3391-6-5
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