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Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis

The generation of distinctive cell types that form different tissues and organs requires precise, temporal and spatial control of gene expression. This depends on specific cis-regulatory elements distributed in the noncoding DNA surrounding their target genes. Studies performed on mammalian embryoni...

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Autores principales: Bogdanović, Ozren, Fernandez-Miñán, Ana, Tena, Juan J., de la Calle-Mustienes, Elisa, Hidalgo, Carmen, van Kruysbergen, Ila, van Heeringen, Simon J., Veenstra, Gert Jan C., Gómez-Skarmeta, José Luis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3460198/
https://www.ncbi.nlm.nih.gov/pubmed/22593555
http://dx.doi.org/10.1101/gr.134833.111
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author Bogdanović, Ozren
Fernandez-Miñán, Ana
Tena, Juan J.
de la Calle-Mustienes, Elisa
Hidalgo, Carmen
van Kruysbergen, Ila
van Heeringen, Simon J.
Veenstra, Gert Jan C.
Gómez-Skarmeta, José Luis
author_facet Bogdanović, Ozren
Fernandez-Miñán, Ana
Tena, Juan J.
de la Calle-Mustienes, Elisa
Hidalgo, Carmen
van Kruysbergen, Ila
van Heeringen, Simon J.
Veenstra, Gert Jan C.
Gómez-Skarmeta, José Luis
author_sort Bogdanović, Ozren
collection PubMed
description The generation of distinctive cell types that form different tissues and organs requires precise, temporal and spatial control of gene expression. This depends on specific cis-regulatory elements distributed in the noncoding DNA surrounding their target genes. Studies performed on mammalian embryonic stem cells and Drosophila embryos suggest that active enhancers form part of a defined chromatin landscape marked by histone H3 lysine 4 mono-methylation (H3K4me1) and histone H3 lysine 27 acetylation (H3K27ac). Nevertheless, little is known about the dynamics and the potential roles of these marks during vertebrate embryogenesis. Here, we provide genomic maps of H3K4me1/me3 and H3K27ac at four developmental time-points of zebrafish embryogenesis and analyze embryonic enhancer activity. We find that (1) changes in H3K27ac enrichment at enhancers accompany the shift from pluripotency to tissue-specific gene expression, (2) in early embryos, the peaks of H3K27ac enrichment are bound by pluripotent factors such as Nanog, and (3) the degree of evolutionary conservation is higher for enhancers that become marked by H3K27ac at the end of gastrulation, suggesting their implication in the establishment of the most conserved (phylotypic) transcriptome that is known to occur later at the pharyngula stage.
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spelling pubmed-34601982013-04-01 Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis Bogdanović, Ozren Fernandez-Miñán, Ana Tena, Juan J. de la Calle-Mustienes, Elisa Hidalgo, Carmen van Kruysbergen, Ila van Heeringen, Simon J. Veenstra, Gert Jan C. Gómez-Skarmeta, José Luis Genome Res Resource The generation of distinctive cell types that form different tissues and organs requires precise, temporal and spatial control of gene expression. This depends on specific cis-regulatory elements distributed in the noncoding DNA surrounding their target genes. Studies performed on mammalian embryonic stem cells and Drosophila embryos suggest that active enhancers form part of a defined chromatin landscape marked by histone H3 lysine 4 mono-methylation (H3K4me1) and histone H3 lysine 27 acetylation (H3K27ac). Nevertheless, little is known about the dynamics and the potential roles of these marks during vertebrate embryogenesis. Here, we provide genomic maps of H3K4me1/me3 and H3K27ac at four developmental time-points of zebrafish embryogenesis and analyze embryonic enhancer activity. We find that (1) changes in H3K27ac enrichment at enhancers accompany the shift from pluripotency to tissue-specific gene expression, (2) in early embryos, the peaks of H3K27ac enrichment are bound by pluripotent factors such as Nanog, and (3) the degree of evolutionary conservation is higher for enhancers that become marked by H3K27ac at the end of gastrulation, suggesting their implication in the establishment of the most conserved (phylotypic) transcriptome that is known to occur later at the pharyngula stage. Cold Spring Harbor Laboratory Press 2012-10 /pmc/articles/PMC3460198/ /pubmed/22593555 http://dx.doi.org/10.1101/gr.134833.111 Text en © 2012, Published by Cold Spring Harbor Laboratory Press This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 3.0 Unported License), as described at http://creativecommons.org/licenses/by-nc/3.0/.
spellingShingle Resource
Bogdanović, Ozren
Fernandez-Miñán, Ana
Tena, Juan J.
de la Calle-Mustienes, Elisa
Hidalgo, Carmen
van Kruysbergen, Ila
van Heeringen, Simon J.
Veenstra, Gert Jan C.
Gómez-Skarmeta, José Luis
Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis
title Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis
title_full Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis
title_fullStr Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis
title_full_unstemmed Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis
title_short Dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis
title_sort dynamics of enhancer chromatin signatures mark the transition from pluripotency to cell specification during embryogenesis
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3460198/
https://www.ncbi.nlm.nih.gov/pubmed/22593555
http://dx.doi.org/10.1101/gr.134833.111
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