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A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways

Seasonal animals undergo changes in physiology and behavior between summer and winter conditions. These changes are in part driven by a switch in a series of hypothalamic genes under transcriptional control by hormones and, of recent interest, inflammatory factors. Crucial to the control of transcri...

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Autores principales: Stoney, Patrick N., Rodrigues, Diana, Helfer, Gisela, Khatib, Thabat, Ashton, Anna, Hay, Elizabeth A., Starr, Robert, Kociszewska, Dagmara, Morgan, Peter, McCaffery, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5325119/
https://www.ncbi.nlm.nih.gov/pubmed/27993690
http://dx.doi.org/10.1016/j.bbi.2016.12.013
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author Stoney, Patrick N.
Rodrigues, Diana
Helfer, Gisela
Khatib, Thabat
Ashton, Anna
Hay, Elizabeth A.
Starr, Robert
Kociszewska, Dagmara
Morgan, Peter
McCaffery, Peter
author_facet Stoney, Patrick N.
Rodrigues, Diana
Helfer, Gisela
Khatib, Thabat
Ashton, Anna
Hay, Elizabeth A.
Starr, Robert
Kociszewska, Dagmara
Morgan, Peter
McCaffery, Peter
author_sort Stoney, Patrick N.
collection PubMed
description Seasonal animals undergo changes in physiology and behavior between summer and winter conditions. These changes are in part driven by a switch in a series of hypothalamic genes under transcriptional control by hormones and, of recent interest, inflammatory factors. Crucial to the control of transcription are histone deacetylases (HDACs), generally acting to repress transcription by local histone modification. Seasonal changes in hypothalamic HDAC transcripts were investigated in photoperiod-sensitive F344 rats by altering the day-length (photoperiod). HDAC4, 6 and 9 were found to change in expression. The potential influence of HDACs on two hypothalamic signaling pathways that regulate transcription, inflammatory and nuclear receptor signaling, was investigated. For inflammatory signaling the focus was on NF-κB because of the novel finding made that its expression is seasonally regulated in the rat hypothalamus. For nuclear receptor signaling it was discovered that expression of retinoic acid receptor beta was regulated seasonally. HDAC modulation of NF-κB-induced pathways was examined in a hypothalamic neuronal cell line and primary hypothalamic tanycytes. HDAC4/5/6 inhibition altered the control of gene expression (Fos, Prkca, Prkcd and Ptp1b) by inducers of NF-κB that activate inflammation. These inhibitors also modified the action of nuclear receptor ligands thyroid hormone and retinoic acid. Thus seasonal changes in HDAC4 and 6 have the potential to epigenetically modify multiple gene regulatory pathways in the hypothalamus that could act to limit inflammatory pathways in the hypothalamus during long-day summer-like conditions.
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spelling pubmed-53251192017-03-08 A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways Stoney, Patrick N. Rodrigues, Diana Helfer, Gisela Khatib, Thabat Ashton, Anna Hay, Elizabeth A. Starr, Robert Kociszewska, Dagmara Morgan, Peter McCaffery, Peter Brain Behav Immun Full-length Article Seasonal animals undergo changes in physiology and behavior between summer and winter conditions. These changes are in part driven by a switch in a series of hypothalamic genes under transcriptional control by hormones and, of recent interest, inflammatory factors. Crucial to the control of transcription are histone deacetylases (HDACs), generally acting to repress transcription by local histone modification. Seasonal changes in hypothalamic HDAC transcripts were investigated in photoperiod-sensitive F344 rats by altering the day-length (photoperiod). HDAC4, 6 and 9 were found to change in expression. The potential influence of HDACs on two hypothalamic signaling pathways that regulate transcription, inflammatory and nuclear receptor signaling, was investigated. For inflammatory signaling the focus was on NF-κB because of the novel finding made that its expression is seasonally regulated in the rat hypothalamus. For nuclear receptor signaling it was discovered that expression of retinoic acid receptor beta was regulated seasonally. HDAC modulation of NF-κB-induced pathways was examined in a hypothalamic neuronal cell line and primary hypothalamic tanycytes. HDAC4/5/6 inhibition altered the control of gene expression (Fos, Prkca, Prkcd and Ptp1b) by inducers of NF-κB that activate inflammation. These inhibitors also modified the action of nuclear receptor ligands thyroid hormone and retinoic acid. Thus seasonal changes in HDAC4 and 6 have the potential to epigenetically modify multiple gene regulatory pathways in the hypothalamus that could act to limit inflammatory pathways in the hypothalamus during long-day summer-like conditions. Elsevier 2017-03 /pmc/articles/PMC5325119/ /pubmed/27993690 http://dx.doi.org/10.1016/j.bbi.2016.12.013 Text en © 2016 The Authors. Published by Elsevier Inc. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Full-length Article
Stoney, Patrick N.
Rodrigues, Diana
Helfer, Gisela
Khatib, Thabat
Ashton, Anna
Hay, Elizabeth A.
Starr, Robert
Kociszewska, Dagmara
Morgan, Peter
McCaffery, Peter
A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways
title A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways
title_full A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways
title_fullStr A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways
title_full_unstemmed A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways
title_short A seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways
title_sort seasonal switch in histone deacetylase gene expression in the hypothalamus and their capacity to modulate nuclear signaling pathways
topic Full-length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5325119/
https://www.ncbi.nlm.nih.gov/pubmed/27993690
http://dx.doi.org/10.1016/j.bbi.2016.12.013
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