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A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes

The transcriptional shift from repression to activation of target genes is crucial for the fidelity of Notch responses through incompletely understood mechanisms that likely involve chromatin-based control. To activate silenced genes, repressive chromatin marks are removed and active marks must be a...

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Autores principales: Oswald, Franz, Rodriguez, Patrick, Giaimo, Benedetto Daniele, Antonello, Zeus A., Mira, Laura, Mittler, Gerhard, Thiel, Verena N., Collins, Kelly J., Tabaja, Nassif, Cizelsky, Wiebke, Rothe, Melanie, Kühl, Susanne J., Kühl, Michael, Ferrante, Francesca, Hein, Kerstin, Kovall, Rhett A., Dominguez, Maria, Borggrefe, Tilman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889922/
https://www.ncbi.nlm.nih.gov/pubmed/26912830
http://dx.doi.org/10.1093/nar/gkw105
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author Oswald, Franz
Rodriguez, Patrick
Giaimo, Benedetto Daniele
Antonello, Zeus A.
Mira, Laura
Mittler, Gerhard
Thiel, Verena N.
Collins, Kelly J.
Tabaja, Nassif
Cizelsky, Wiebke
Rothe, Melanie
Kühl, Susanne J.
Kühl, Michael
Ferrante, Francesca
Hein, Kerstin
Kovall, Rhett A.
Dominguez, Maria
Borggrefe, Tilman
author_facet Oswald, Franz
Rodriguez, Patrick
Giaimo, Benedetto Daniele
Antonello, Zeus A.
Mira, Laura
Mittler, Gerhard
Thiel, Verena N.
Collins, Kelly J.
Tabaja, Nassif
Cizelsky, Wiebke
Rothe, Melanie
Kühl, Susanne J.
Kühl, Michael
Ferrante, Francesca
Hein, Kerstin
Kovall, Rhett A.
Dominguez, Maria
Borggrefe, Tilman
author_sort Oswald, Franz
collection PubMed
description The transcriptional shift from repression to activation of target genes is crucial for the fidelity of Notch responses through incompletely understood mechanisms that likely involve chromatin-based control. To activate silenced genes, repressive chromatin marks are removed and active marks must be acquired. Histone H3 lysine-4 (H3K4) demethylases are key chromatin modifiers that establish the repressive chromatin state at Notch target genes. However, the counteracting histone methyltransferase required for the active chromatin state remained elusive. Here, we show that the RBP-J interacting factor SHARP is not only able to interact with the NCoR corepressor complex, but also with the H3K4 methyltransferase KMT2D coactivator complex. KMT2D and NCoR compete for the C-terminal SPOC-domain of SHARP. We reveal that the SPOC-domain exclusively binds to phosphorylated NCoR. The balance between NCoR and KMT2D binding is shifted upon mutating the phosphorylation sites of NCoR or upon inhibition of the NCoR kinase CK2β. Furthermore, we show that the homologs of SHARP and KMT2D in Drosophila also physically interact and control Notch-mediated functions in vivo. Together, our findings reveal how signaling can fine-tune a committed chromatin state by phosphorylation of a pivotal chromatin-modifier.
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spelling pubmed-48899222016-06-06 A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes Oswald, Franz Rodriguez, Patrick Giaimo, Benedetto Daniele Antonello, Zeus A. Mira, Laura Mittler, Gerhard Thiel, Verena N. Collins, Kelly J. Tabaja, Nassif Cizelsky, Wiebke Rothe, Melanie Kühl, Susanne J. Kühl, Michael Ferrante, Francesca Hein, Kerstin Kovall, Rhett A. Dominguez, Maria Borggrefe, Tilman Nucleic Acids Res Gene regulation, Chromatin and Epigenetics The transcriptional shift from repression to activation of target genes is crucial for the fidelity of Notch responses through incompletely understood mechanisms that likely involve chromatin-based control. To activate silenced genes, repressive chromatin marks are removed and active marks must be acquired. Histone H3 lysine-4 (H3K4) demethylases are key chromatin modifiers that establish the repressive chromatin state at Notch target genes. However, the counteracting histone methyltransferase required for the active chromatin state remained elusive. Here, we show that the RBP-J interacting factor SHARP is not only able to interact with the NCoR corepressor complex, but also with the H3K4 methyltransferase KMT2D coactivator complex. KMT2D and NCoR compete for the C-terminal SPOC-domain of SHARP. We reveal that the SPOC-domain exclusively binds to phosphorylated NCoR. The balance between NCoR and KMT2D binding is shifted upon mutating the phosphorylation sites of NCoR or upon inhibition of the NCoR kinase CK2β. Furthermore, we show that the homologs of SHARP and KMT2D in Drosophila also physically interact and control Notch-mediated functions in vivo. Together, our findings reveal how signaling can fine-tune a committed chromatin state by phosphorylation of a pivotal chromatin-modifier. Oxford University Press 2016-06-02 2016-02-23 /pmc/articles/PMC4889922/ /pubmed/26912830 http://dx.doi.org/10.1093/nar/gkw105 Text en © The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Gene regulation, Chromatin and Epigenetics
Oswald, Franz
Rodriguez, Patrick
Giaimo, Benedetto Daniele
Antonello, Zeus A.
Mira, Laura
Mittler, Gerhard
Thiel, Verena N.
Collins, Kelly J.
Tabaja, Nassif
Cizelsky, Wiebke
Rothe, Melanie
Kühl, Susanne J.
Kühl, Michael
Ferrante, Francesca
Hein, Kerstin
Kovall, Rhett A.
Dominguez, Maria
Borggrefe, Tilman
A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes
title A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes
title_full A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes
title_fullStr A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes
title_full_unstemmed A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes
title_short A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes
title_sort phospho-dependent mechanism involving ncor and kmt2d controls a permissive chromatin state at notch target genes
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889922/
https://www.ncbi.nlm.nih.gov/pubmed/26912830
http://dx.doi.org/10.1093/nar/gkw105
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