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Epitranscriptomics & Cancer Adaptation : A.David

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Our research work focuses on the contribution of post-transcriptional mechanisms on cancer cell adaptation, in particular RNA epigenetic & translational control.

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Added by standudu
Last modified by ircm doc
Group name EquipeCTCS
Item Type Journal Article
Title Histone H4K20 tri-methylation at late-firing origins ensures timely heterochromatin replication
Creator Brustel et al.
Author Julien Brustel
Author Nina Kirstein
Author Fanny Izard
Author Charlotte Grimaud
Author Paulina Prorok
Author Christelle Cayrou
Author Gunnar Schotta
Author Alhassan F. Abdelsamie
Author Jérôme Déjardin
Author Marcel Méchali
Author Giuseppe Baldacci
Author Claude Sardet
Author Jean-Charles Cadoret
Author Aloys Schepers
Author Eric Julien
Abstract Among other targets, the protein lysine methyltransferase PR-Set7 induces histone H4 lysine 20 monomethylation (H4K20me1), which is the substrate for further methylation by the Suv4-20h methyltransferase. Although these enzymes have been implicated in control of replication origins, the specific contribution of H4K20 methylation to DNA replication remains unclear. Here, we show that H4K20 mutation in mammalian cells, unlike in Drosophila, partially impairs S-phase progression and protects from DNA re-replication induced by stabilization of PR-Set7. Using Epstein-Barr virus-derived episomes, we further demonstrate that conversion of H4K20me1 to higher H4K20me2/3 states by Suv4-20h is not sufficient to define an efficient origin per se, but rather serves as an enhancer for MCM2-7 helicase loading and replication activation at defined origins. Consistent with this, we find that Suv4-20h-mediated H4K20 tri-methylation (H4K20me3) is required to sustain the licensing and activity of a subset of ORCA/LRWD1-associated origins, which ensure proper replication timing of late-replicating heterochromatin domains. Altogether, these results reveal Suv4-20h-mediated H4K20 tri-methylation as a critical determinant in the selection of active replication initiation sites in heterochromatin regions of mammalian genomes.
Publication The EMBO journal
Volume 36
Issue 18
Pages 2726-2741
Date 09 15, 2017
Journal Abbr EMBO J.
Language eng
DOI 10.15252/embj.201796541
ISSN 1460-2075
Library Catalog PubMed
Extra PMID: 28778956 PMCID: PMC5599798
Tags DNA Replication, DNA replication origins, Heterochromatin, histone H4K20 methylation, Histone-Lysine N-Methyltransferase, Histones, Humans, Lysine, Methylation, original, Protein Processing, Post-Translational
Date Added 2018/11/14 - 15:24:24
Date Modified 2025/01/09 - 15:17:59
Notes and Attachments PubMed entry (Attachment)


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