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c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs

CpG methylation in mammalian DNA is known to interfere with gene expression by inhibiting the binding of transactivators to their cognate sequence motifs or recruiting proteins involved in gene repression. An Epstein–Barr virus-encoded transcription factor, Zta, was the first example of a sequence-s...

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Autores principales: Gustems, Montse, Woellmer, Anne, Rothbauer, Ulrich, Eck, Sebastian H., Wieland, Thomas, Lutter, Dominik, Hammerschmidt, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3950711/
https://www.ncbi.nlm.nih.gov/pubmed/24371273
http://dx.doi.org/10.1093/nar/gkt1323
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author Gustems, Montse
Woellmer, Anne
Rothbauer, Ulrich
Eck, Sebastian H.
Wieland, Thomas
Lutter, Dominik
Hammerschmidt, Wolfgang
author_facet Gustems, Montse
Woellmer, Anne
Rothbauer, Ulrich
Eck, Sebastian H.
Wieland, Thomas
Lutter, Dominik
Hammerschmidt, Wolfgang
author_sort Gustems, Montse
collection PubMed
description CpG methylation in mammalian DNA is known to interfere with gene expression by inhibiting the binding of transactivators to their cognate sequence motifs or recruiting proteins involved in gene repression. An Epstein–Barr virus-encoded transcription factor, Zta, was the first example of a sequence-specific transcription factor that preferentially recognizes and selectively binds DNA sequence motifs with methylated CpG residues, reverses epigenetic silencing and activates gene transcription. The DNA binding domain of Zta is homologous to c-Fos, a member of the cellular AP-1 (activator protein 1) transcription factor family, which regulates cell proliferation and survival, apoptosis, transformation and oncogenesis. We have identified a novel AP-1 binding site termed meAP-1, which contains a CpG dinucleotide. If methylated, meAP-1 sites are preferentially bound by the AP-1 heterodimer c-Jun/c-Fos in vitro and in cellular chromatin in vivo. In activated human primary B cells, c-Jun/c-Fos locates to these methylated elements in promoter regions of transcriptionally activated genes. Reminiscent of the viral Zta protein, c-Jun/c-Fos is the first identified cellular member of the AP-1 family of transactivators that can induce expression of genes with methylated, hence repressed promoters, reversing epigenetic silencing.
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spelling pubmed-39507112014-03-12 c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs Gustems, Montse Woellmer, Anne Rothbauer, Ulrich Eck, Sebastian H. Wieland, Thomas Lutter, Dominik Hammerschmidt, Wolfgang Nucleic Acids Res CpG methylation in mammalian DNA is known to interfere with gene expression by inhibiting the binding of transactivators to their cognate sequence motifs or recruiting proteins involved in gene repression. An Epstein–Barr virus-encoded transcription factor, Zta, was the first example of a sequence-specific transcription factor that preferentially recognizes and selectively binds DNA sequence motifs with methylated CpG residues, reverses epigenetic silencing and activates gene transcription. The DNA binding domain of Zta is homologous to c-Fos, a member of the cellular AP-1 (activator protein 1) transcription factor family, which regulates cell proliferation and survival, apoptosis, transformation and oncogenesis. We have identified a novel AP-1 binding site termed meAP-1, which contains a CpG dinucleotide. If methylated, meAP-1 sites are preferentially bound by the AP-1 heterodimer c-Jun/c-Fos in vitro and in cellular chromatin in vivo. In activated human primary B cells, c-Jun/c-Fos locates to these methylated elements in promoter regions of transcriptionally activated genes. Reminiscent of the viral Zta protein, c-Jun/c-Fos is the first identified cellular member of the AP-1 family of transactivators that can induce expression of genes with methylated, hence repressed promoters, reversing epigenetic silencing. Oxford University Press 2014-03 2013-12-25 /pmc/articles/PMC3950711/ /pubmed/24371273 http://dx.doi.org/10.1093/nar/gkt1323 Text en © The Author(s) 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), 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 Gustems, Montse
Woellmer, Anne
Rothbauer, Ulrich
Eck, Sebastian H.
Wieland, Thomas
Lutter, Dominik
Hammerschmidt, Wolfgang
c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs
title c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs
title_full c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs
title_fullStr c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs
title_full_unstemmed c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs
title_short c-Jun/c-Fos heterodimers regulate cellular genes via a newly identified class of methylated DNA sequence motifs
title_sort c-jun/c-fos heterodimers regulate cellular genes via a newly identified class of methylated dna sequence motifs
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3950711/
https://www.ncbi.nlm.nih.gov/pubmed/24371273
http://dx.doi.org/10.1093/nar/gkt1323
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