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The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment

Patterns of methylation at lysine 4 and 27 of histone H3 have been associated with states of gene activation and repression that are developmentally regulated and are thought to underlie the establishment of lineage specific gene expression programs. Recent studies have provided fundamental insight...

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Autores principales: Burgold, Thomas, Spreafico, Fabio, De Santa, Francesca, Totaro, Maria Grazia, Prosperini, Elena, Natoli, Gioacchino, Testa, Giuseppe
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2515638/
https://www.ncbi.nlm.nih.gov/pubmed/18716661
http://dx.doi.org/10.1371/journal.pone.0003034
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author Burgold, Thomas
Spreafico, Fabio
De Santa, Francesca
Totaro, Maria Grazia
Prosperini, Elena
Natoli, Gioacchino
Testa, Giuseppe
author_facet Burgold, Thomas
Spreafico, Fabio
De Santa, Francesca
Totaro, Maria Grazia
Prosperini, Elena
Natoli, Gioacchino
Testa, Giuseppe
author_sort Burgold, Thomas
collection PubMed
description Patterns of methylation at lysine 4 and 27 of histone H3 have been associated with states of gene activation and repression that are developmentally regulated and are thought to underlie the establishment of lineage specific gene expression programs. Recent studies have provided fundamental insight into the problem of lineage specification by comparing global changes in chromatin and transcription between ES and neural stem (NS) cells, points respectively of departure and arrival for neural commitment. With these maps of the differentiated state in place, a central task is now to unravel the chromatin dynamics that enables these differentiation transitions. In particular, the observation that lineage-specific genes repressed in ES cells by Polycomb-mediated H3-K27 trimethylation (H3-K27me3) are demethylated and derepressed in differentiated cells posited the existence of a specific H3-K27 demethylase. In order to gain insight into the epigenetic transitions that enable lineage specification, we investigated the early stages of neural commitment using as model system the monolayer differentiation of mouse ES cells into neural stem (NS) cells. Starting from a comprehensive profiling of JmjC-domain genes, we report here that Jmjd3, recently identified as a H3-K27me3 specific demethylase, controls the expression of key regulators and markers of neurogenesis and is required for commitment to the neural lineage. Our results demonstrate the relevance of an enzymatic activity that antagonizes Polycomb regulation and highlight different modalities through which the dynamics of H3-K27me3 is related to transcriptional output. By showing that the H3-K27 demethylase Jmjd3 is required for commitment to the neural lineage and that it resolves the bivalent domain at the Nestin promoter, our work confirms the functional relevance of bivalent domain resolution that had been posited on the basis of the genome-wide correlation between their controlled resolution and differentiation. In addition, our data indicate that the regulation of H3-K27me3 is highly gene- and context- specific, suggesting that the interplay of methyltransferases and demethylases enables the fine-tuning more than the on/off alternation of methylation states.
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spelling pubmed-25156382008-08-21 The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment Burgold, Thomas Spreafico, Fabio De Santa, Francesca Totaro, Maria Grazia Prosperini, Elena Natoli, Gioacchino Testa, Giuseppe PLoS One Research Article Patterns of methylation at lysine 4 and 27 of histone H3 have been associated with states of gene activation and repression that are developmentally regulated and are thought to underlie the establishment of lineage specific gene expression programs. Recent studies have provided fundamental insight into the problem of lineage specification by comparing global changes in chromatin and transcription between ES and neural stem (NS) cells, points respectively of departure and arrival for neural commitment. With these maps of the differentiated state in place, a central task is now to unravel the chromatin dynamics that enables these differentiation transitions. In particular, the observation that lineage-specific genes repressed in ES cells by Polycomb-mediated H3-K27 trimethylation (H3-K27me3) are demethylated and derepressed in differentiated cells posited the existence of a specific H3-K27 demethylase. In order to gain insight into the epigenetic transitions that enable lineage specification, we investigated the early stages of neural commitment using as model system the monolayer differentiation of mouse ES cells into neural stem (NS) cells. Starting from a comprehensive profiling of JmjC-domain genes, we report here that Jmjd3, recently identified as a H3-K27me3 specific demethylase, controls the expression of key regulators and markers of neurogenesis and is required for commitment to the neural lineage. Our results demonstrate the relevance of an enzymatic activity that antagonizes Polycomb regulation and highlight different modalities through which the dynamics of H3-K27me3 is related to transcriptional output. By showing that the H3-K27 demethylase Jmjd3 is required for commitment to the neural lineage and that it resolves the bivalent domain at the Nestin promoter, our work confirms the functional relevance of bivalent domain resolution that had been posited on the basis of the genome-wide correlation between their controlled resolution and differentiation. In addition, our data indicate that the regulation of H3-K27me3 is highly gene- and context- specific, suggesting that the interplay of methyltransferases and demethylases enables the fine-tuning more than the on/off alternation of methylation states. Public Library of Science 2008-08-21 /pmc/articles/PMC2515638/ /pubmed/18716661 http://dx.doi.org/10.1371/journal.pone.0003034 Text en Burgold 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
Burgold, Thomas
Spreafico, Fabio
De Santa, Francesca
Totaro, Maria Grazia
Prosperini, Elena
Natoli, Gioacchino
Testa, Giuseppe
The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment
title The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment
title_full The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment
title_fullStr The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment
title_full_unstemmed The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment
title_short The Histone H3 Lysine 27-Specific Demethylase Jmjd3 Is Required for Neural Commitment
title_sort histone h3 lysine 27-specific demethylase jmjd3 is required for neural commitment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2515638/
https://www.ncbi.nlm.nih.gov/pubmed/18716661
http://dx.doi.org/10.1371/journal.pone.0003034
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