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TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS

TET proteins convert 5-methylcytosine to 5-hydroxymethylcytosine, an emerging dynamic epigenetic state of DNA that can influence transcription. Evidence has linked TET1 function to epigenetic repression complexes, yet mechanistic information, especially for the TET2 and TET3 proteins, remains limite...

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Autores principales: Deplus, Rachel, Delatte, Benjamin, Schwinn, Marie K, Defrance, Matthieu, Méndez, Jacqui, Murphy, Nancy, Dawson, Mark A, Volkmar, Michael, Putmans, Pascale, Calonne, Emilie, Shih, Alan H, Levine, Ross L, Bernard, Olivier, Mercher, Thomas, Solary, Eric, Urh, Marjeta, Daniels, Danette L, Fuks, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Molecular Biology Organization 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3590984/
https://www.ncbi.nlm.nih.gov/pubmed/23353889
http://dx.doi.org/10.1038/emboj.2012.357
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author Deplus, Rachel
Delatte, Benjamin
Schwinn, Marie K
Defrance, Matthieu
Méndez, Jacqui
Murphy, Nancy
Dawson, Mark A
Volkmar, Michael
Putmans, Pascale
Calonne, Emilie
Shih, Alan H
Levine, Ross L
Bernard, Olivier
Mercher, Thomas
Solary, Eric
Urh, Marjeta
Daniels, Danette L
Fuks, François
author_facet Deplus, Rachel
Delatte, Benjamin
Schwinn, Marie K
Defrance, Matthieu
Méndez, Jacqui
Murphy, Nancy
Dawson, Mark A
Volkmar, Michael
Putmans, Pascale
Calonne, Emilie
Shih, Alan H
Levine, Ross L
Bernard, Olivier
Mercher, Thomas
Solary, Eric
Urh, Marjeta
Daniels, Danette L
Fuks, François
author_sort Deplus, Rachel
collection PubMed
description TET proteins convert 5-methylcytosine to 5-hydroxymethylcytosine, an emerging dynamic epigenetic state of DNA that can influence transcription. Evidence has linked TET1 function to epigenetic repression complexes, yet mechanistic information, especially for the TET2 and TET3 proteins, remains limited. Here, we show a direct interaction of TET2 and TET3 with O-GlcNAc transferase (OGT). OGT does not appear to influence hmC activity, rather TET2 and TET3 promote OGT activity. TET2/3–OGT co-localize on chromatin at active promoters enriched for H3K4me3 and reduction of either TET2/3 or OGT activity results in a direct decrease in H3K4me3 and concomitant decreased transcription. Further, we show that Host Cell Factor 1 (HCF1), a component of the H3K4 methyltransferase SET1/COMPASS complex, is a specific GlcNAcylation target of TET2/3–OGT, and modification of HCF1 is important for the integrity of SET1/COMPASS. Additionally, we find both TET proteins and OGT activity promote binding of the SET1/COMPASS H3K4 methyltransferase, SETD1A, to chromatin. Finally, studies in Tet2 knockout mouse bone marrow tissue extend and support the data as decreases are observed of global GlcNAcylation and also of H3K4me3, notably at several key regulators of haematopoiesis. Together, our results unveil a step-wise model, involving TET–OGT interactions, promotion of GlcNAcylation, and influence on H3K4me3 via SET1/COMPASS, highlighting a novel means by which TETs may induce transcriptional activation.
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spelling pubmed-35909842013-03-07 TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS Deplus, Rachel Delatte, Benjamin Schwinn, Marie K Defrance, Matthieu Méndez, Jacqui Murphy, Nancy Dawson, Mark A Volkmar, Michael Putmans, Pascale Calonne, Emilie Shih, Alan H Levine, Ross L Bernard, Olivier Mercher, Thomas Solary, Eric Urh, Marjeta Daniels, Danette L Fuks, François EMBO J Article TET proteins convert 5-methylcytosine to 5-hydroxymethylcytosine, an emerging dynamic epigenetic state of DNA that can influence transcription. Evidence has linked TET1 function to epigenetic repression complexes, yet mechanistic information, especially for the TET2 and TET3 proteins, remains limited. Here, we show a direct interaction of TET2 and TET3 with O-GlcNAc transferase (OGT). OGT does not appear to influence hmC activity, rather TET2 and TET3 promote OGT activity. TET2/3–OGT co-localize on chromatin at active promoters enriched for H3K4me3 and reduction of either TET2/3 or OGT activity results in a direct decrease in H3K4me3 and concomitant decreased transcription. Further, we show that Host Cell Factor 1 (HCF1), a component of the H3K4 methyltransferase SET1/COMPASS complex, is a specific GlcNAcylation target of TET2/3–OGT, and modification of HCF1 is important for the integrity of SET1/COMPASS. Additionally, we find both TET proteins and OGT activity promote binding of the SET1/COMPASS H3K4 methyltransferase, SETD1A, to chromatin. Finally, studies in Tet2 knockout mouse bone marrow tissue extend and support the data as decreases are observed of global GlcNAcylation and also of H3K4me3, notably at several key regulators of haematopoiesis. Together, our results unveil a step-wise model, involving TET–OGT interactions, promotion of GlcNAcylation, and influence on H3K4me3 via SET1/COMPASS, highlighting a novel means by which TETs may induce transcriptional activation. European Molecular Biology Organization 2013-03-06 2013-01-25 /pmc/articles/PMC3590984/ /pubmed/23353889 http://dx.doi.org/10.1038/emboj.2012.357 Text en Copyright © 2013, European Molecular Biology Organization https://creativecommons.org/licenses/by-nc-sa/3.0/This article is licensed under a Creative Commons Attribution-Noncommercial-Share Alike 3.0 Licence.
spellingShingle Article
Deplus, Rachel
Delatte, Benjamin
Schwinn, Marie K
Defrance, Matthieu
Méndez, Jacqui
Murphy, Nancy
Dawson, Mark A
Volkmar, Michael
Putmans, Pascale
Calonne, Emilie
Shih, Alan H
Levine, Ross L
Bernard, Olivier
Mercher, Thomas
Solary, Eric
Urh, Marjeta
Daniels, Danette L
Fuks, François
TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS
title TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS
title_full TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS
title_fullStr TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS
title_full_unstemmed TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS
title_short TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS
title_sort tet2 and tet3 regulate glcnacylation and h3k4 methylation through ogt and set1/compass
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3590984/
https://www.ncbi.nlm.nih.gov/pubmed/23353889
http://dx.doi.org/10.1038/emboj.2012.357
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