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Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells

In non-malignant RWPE-1 prostate epithelial cells signaling by the nuclear receptor Vitamin D Receptor (VDR, NR1I1) induces cell cycle arrest through targets including CDKN1A (encodes p21((waf1/cip1))). VDR dynamically induced individual histone modification patterns at three VDR binding sites (R1,...

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Autores principales: Thorne, James L., Maguire, Orla, Doig, Craig L., Battaglia, Sebastiano, Fehr, Leah, Sucheston, Lara E., Heinaniemi, Merja, O’Neill, Laura P., McCabe, Christopher J., Turner, Bryan M., Carlberg, Carsten, Campbell, Moray J.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3064804/
https://www.ncbi.nlm.nih.gov/pubmed/21088000
http://dx.doi.org/10.1093/nar/gkq875
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author Thorne, James L.
Maguire, Orla
Doig, Craig L.
Battaglia, Sebastiano
Fehr, Leah
Sucheston, Lara E.
Heinaniemi, Merja
O’Neill, Laura P.
McCabe, Christopher J.
Turner, Bryan M.
Carlberg, Carsten
Campbell, Moray J.
author_facet Thorne, James L.
Maguire, Orla
Doig, Craig L.
Battaglia, Sebastiano
Fehr, Leah
Sucheston, Lara E.
Heinaniemi, Merja
O’Neill, Laura P.
McCabe, Christopher J.
Turner, Bryan M.
Carlberg, Carsten
Campbell, Moray J.
author_sort Thorne, James L.
collection PubMed
description In non-malignant RWPE-1 prostate epithelial cells signaling by the nuclear receptor Vitamin D Receptor (VDR, NR1I1) induces cell cycle arrest through targets including CDKN1A (encodes p21((waf1/cip1))). VDR dynamically induced individual histone modification patterns at three VDR binding sites (R1, 2, 3) on the CDKN1A promoter. The magnitude of these modifications was specific to each phase of the cell cycle. For example, H3K9ac enrichment occurred rapidly only at R2, whereas parallel accumulation of H3K27me3 occurred at R1; these events were significantly enriched in G(1) and S phase cells, respectively. The epigenetic events appeared to allow VDR actions to combine with p53 to enhance p21((waf1/cip1)) activation further. In parallel, VDR binding to the MCM7 gene induced H3K9ac enrichment associated with rapid mRNA up-regulation to generate miR-106b and consequently regulate p21((waf1/cip1)) expression. We conclude that VDR binding site- and promoter-specific patterns of histone modifications combine with miRNA co-regulation to form a VDR-regulated feed-forward loop to control p21((waf1/cip1)) expression and cell cycle arrest. Dissection of this feed-forward loop in a non-malignant prostate cell system illuminates mechanisms of sensitivity and therefore possible resistance in prostate and other VDR responsive cancers.
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spelling pubmed-30648042011-03-28 Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells Thorne, James L. Maguire, Orla Doig, Craig L. Battaglia, Sebastiano Fehr, Leah Sucheston, Lara E. Heinaniemi, Merja O’Neill, Laura P. McCabe, Christopher J. Turner, Bryan M. Carlberg, Carsten Campbell, Moray J. Nucleic Acids Res Gene Regulation, Chromatin and Epigenetics In non-malignant RWPE-1 prostate epithelial cells signaling by the nuclear receptor Vitamin D Receptor (VDR, NR1I1) induces cell cycle arrest through targets including CDKN1A (encodes p21((waf1/cip1))). VDR dynamically induced individual histone modification patterns at three VDR binding sites (R1, 2, 3) on the CDKN1A promoter. The magnitude of these modifications was specific to each phase of the cell cycle. For example, H3K9ac enrichment occurred rapidly only at R2, whereas parallel accumulation of H3K27me3 occurred at R1; these events were significantly enriched in G(1) and S phase cells, respectively. The epigenetic events appeared to allow VDR actions to combine with p53 to enhance p21((waf1/cip1)) activation further. In parallel, VDR binding to the MCM7 gene induced H3K9ac enrichment associated with rapid mRNA up-regulation to generate miR-106b and consequently regulate p21((waf1/cip1)) expression. We conclude that VDR binding site- and promoter-specific patterns of histone modifications combine with miRNA co-regulation to form a VDR-regulated feed-forward loop to control p21((waf1/cip1)) expression and cell cycle arrest. Dissection of this feed-forward loop in a non-malignant prostate cell system illuminates mechanisms of sensitivity and therefore possible resistance in prostate and other VDR responsive cancers. Oxford University Press 2011-03 2010-11-17 /pmc/articles/PMC3064804/ /pubmed/21088000 http://dx.doi.org/10.1093/nar/gkq875 Text en © The Author(s) 2010. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Gene Regulation, Chromatin and Epigenetics
Thorne, James L.
Maguire, Orla
Doig, Craig L.
Battaglia, Sebastiano
Fehr, Leah
Sucheston, Lara E.
Heinaniemi, Merja
O’Neill, Laura P.
McCabe, Christopher J.
Turner, Bryan M.
Carlberg, Carsten
Campbell, Moray J.
Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
title Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
title_full Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
title_fullStr Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
title_full_unstemmed Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
title_short Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
title_sort epigenetic control of a vdr-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
topic Gene Regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3064804/
https://www.ncbi.nlm.nih.gov/pubmed/21088000
http://dx.doi.org/10.1093/nar/gkq875
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