Promoter nucleosome dynamics regulated by signalling through the CTD code

The phosphorylation of the RNA polymerase II C-terminal domain (CTD) plays a key role in delineating transcribed regions within chromatin by recruiting histone methylases and deacetylases. Using genome-wide nucleosome mapping, we show that CTD S2 phosphorylation controls nucleosome dynamics in the p...

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Main Authors: Philippe Materne, Jayamani Anandhakumar, Valerie Migeot, Ignacio Soriano, Carlo Yague-Sanz, Elena Hidalgo, Carole Mignion, Luis Quintales, Francisco Antequera, Damien Hermand
Format: Article
Language:English
Published: eLife Sciences Publications Ltd 2015-06-01
Series:eLife
Subjects:
Online Access:https://elifesciences.org/articles/09008
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spelling doaj-7766f9965c0843ab9fec4418e90c464f2021-05-04T23:52:53ZengeLife Sciences Publications LtdeLife2050-084X2015-06-01410.7554/eLife.09008Promoter nucleosome dynamics regulated by signalling through the CTD codePhilippe Materne0Jayamani Anandhakumar1Valerie Migeot2Ignacio Soriano3Carlo Yague-Sanz4Elena Hidalgo5Carole Mignion6Luis Quintales7Francisco Antequera8Damien Hermand9URPHYM-GEMO, Namur Research College, University of Namur, Namur, BelgiumURPHYM-GEMO, Namur Research College, University of Namur, Namur, BelgiumURPHYM-GEMO, Namur Research College, University of Namur, Namur, BelgiumInstituto de Biología Funcional y Genómica, Consejo Superior de Investigaciones Científicas, Universidad de Salamanca, Salamanca, SpainURPHYM-GEMO, Namur Research College, University of Namur, Namur, BelgiumDepartament de Ciencies Experimentals i de la Salut, Universitat Pompeu Fabra, Barcelona, SpainURPHYM-GEMO, Namur Research College, University of Namur, Namur, BelgiumInstituto de Biología Funcional y Genómica, Consejo Superior de Investigaciones Científicas, Universidad de Salamanca, Salamanca, SpainInstituto de Biología Funcional y Genómica, Consejo Superior de Investigaciones Científicas, Universidad de Salamanca, Salamanca, SpainURPHYM-GEMO, Namur Research College, University of Namur, Namur, BelgiumThe phosphorylation of the RNA polymerase II C-terminal domain (CTD) plays a key role in delineating transcribed regions within chromatin by recruiting histone methylases and deacetylases. Using genome-wide nucleosome mapping, we show that CTD S2 phosphorylation controls nucleosome dynamics in the promoter of a subset of 324 genes, including the regulators of cell differentiation ste11 and metabolic adaptation inv1. Mechanistic studies on these genes indicate that during gene activation a local increase of phospho-S2 CTD nearby the promoter impairs the phospho-S5 CTD-dependent recruitment of Set1 and the subsequent recruitment of specific HDACs, which leads to nucleosome depletion and efficient transcription. The early increase of phospho-S2 results from the phosphorylation of the CTD S2 kinase Lsk1 by MAP kinase in response to cellular signalling. The artificial tethering of the Lsk1 kinase at the ste11 promoter is sufficient to activate transcription. Therefore, signalling through the CTD code regulates promoter nucleosomes dynamics.https://elifesciences.org/articles/09008RNA polymerasechromatinSet1MAP kinaseHDAC
collection DOAJ
language English
format Article
sources DOAJ
author Philippe Materne
Jayamani Anandhakumar
Valerie Migeot
Ignacio Soriano
Carlo Yague-Sanz
Elena Hidalgo
Carole Mignion
Luis Quintales
Francisco Antequera
Damien Hermand
spellingShingle Philippe Materne
Jayamani Anandhakumar
Valerie Migeot
Ignacio Soriano
Carlo Yague-Sanz
Elena Hidalgo
Carole Mignion
Luis Quintales
Francisco Antequera
Damien Hermand
Promoter nucleosome dynamics regulated by signalling through the CTD code
eLife
RNA polymerase
chromatin
Set1
MAP kinase
HDAC
author_facet Philippe Materne
Jayamani Anandhakumar
Valerie Migeot
Ignacio Soriano
Carlo Yague-Sanz
Elena Hidalgo
Carole Mignion
Luis Quintales
Francisco Antequera
Damien Hermand
author_sort Philippe Materne
title Promoter nucleosome dynamics regulated by signalling through the CTD code
title_short Promoter nucleosome dynamics regulated by signalling through the CTD code
title_full Promoter nucleosome dynamics regulated by signalling through the CTD code
title_fullStr Promoter nucleosome dynamics regulated by signalling through the CTD code
title_full_unstemmed Promoter nucleosome dynamics regulated by signalling through the CTD code
title_sort promoter nucleosome dynamics regulated by signalling through the ctd code
publisher eLife Sciences Publications Ltd
series eLife
issn 2050-084X
publishDate 2015-06-01
description The phosphorylation of the RNA polymerase II C-terminal domain (CTD) plays a key role in delineating transcribed regions within chromatin by recruiting histone methylases and deacetylases. Using genome-wide nucleosome mapping, we show that CTD S2 phosphorylation controls nucleosome dynamics in the promoter of a subset of 324 genes, including the regulators of cell differentiation ste11 and metabolic adaptation inv1. Mechanistic studies on these genes indicate that during gene activation a local increase of phospho-S2 CTD nearby the promoter impairs the phospho-S5 CTD-dependent recruitment of Set1 and the subsequent recruitment of specific HDACs, which leads to nucleosome depletion and efficient transcription. The early increase of phospho-S2 results from the phosphorylation of the CTD S2 kinase Lsk1 by MAP kinase in response to cellular signalling. The artificial tethering of the Lsk1 kinase at the ste11 promoter is sufficient to activate transcription. Therefore, signalling through the CTD code regulates promoter nucleosomes dynamics.
topic RNA polymerase
chromatin
Set1
MAP kinase
HDAC
url https://elifesciences.org/articles/09008
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