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Dive into the research topics where Estelle Duprez is active.

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Featured researches published by Estelle Duprez.


Oncogene | 1997

The TEL gene products: nuclear phosphoproteins with DNA binding properties

Hélène Poirel; Cécile Oury; Clémence Carron; Estelle Duprez; Y. Laabi; A. Tsapis; S P Romana; Martine Mauchauffé; M. Le Coniat; R. Berger; Jacques Ghysdael; Olivier Bernard

The human TEL gene is involved in several 12p13 chromosomal abnormalities present in various human hematological malignancies, the most frequent being the t(12;21)(p13;q22), specific for childhood acute lymphoblastic leukemia. The predicted product of TEL harbours an amino acid region similar to the ETS DNA binding domain. We now report the isolation of the murine TEL cDNA and the characterization of the human TEL proteins. Human and murine TEL proteins are particularly homologous within their aminoterminal regions and their ETS domains. TEL proteins are nuclear and display specific DNA binding activity toward classical ETS binding sites. In addition, we show that TEL mRNAs initiate translation at either of the two first in-frame ATGs (codon 1 and 43) to encode 50u2009kDa and 57u2009kDa TEL proteins. In vivo, each of these primary translational products is modified by multiple phosphorylation events.


Cell | 2009

MafB restricts M-CSF-dependent myeloid commitment divisions of hematopoietic stem cells.

Sandrine Sarrazin; Noushine Mossadegh-Keller; Taro Fukao; Athar Aziz; Frédéric Mourcin; Louise K. Modis; Philippe Kastner; Susan Chan; Estelle Duprez; Claas Otto; Michael H. Sieweke

While hematopoietic stem cell (HSC) self-renewal is well studied, it remains unknown whether distinct control mechanisms enable HSC divisions that generate progeny cells with specific lineage bias. Here, we report that the monocytic transcription factor MafB specifically restricts the ability of M-CSF to instruct myeloid commitment divisions in HSCs. MafB deficiency specifically enhanced sensitivity to M-CSF and caused activation of the myeloid master-regulator PU.1 in HSCs in vivo. Single-cell analysis revealed that reduced MafB levels enabled M-CSF to instruct divisions producing asymmetric daughter pairs with one PU.1(+) cell. As a consequence, MafB(-/-) HSCs showed a PU.1 and M-CSF receptor-dependent competitive repopulation advantage specifically in the myelomonocytic, but not T lymphoid or erythroid, compartment. Lineage-biased repopulation advantage was progressive, maintained long term, and serially transplantable. Together, this indicates that an integrated transcription factor/cytokine circuit can control the rate of specific HSC commitment divisions without compromising other lineages or self-renewal.


Nature Communications | 2015

Site- and allele-specific polycomb dysregulation in T-cell leukaemia

Touzart A; Pradel Lc; Loosveld M; Myriam Koubi; Romain Fenouil; Le Noir S; Muhammad Ahmad Maqbool; Morgado E; Gregoire C; Jaeger S; Mamessier E; Pignon C; Hacein-Bey-Abina S; Malissen B; Marta Gut; Ivo Gut; Dombret H; Macintyre Ea; Howe Sj; Gaspar Hb; Thrasher Aj; Ifrah N; Payet-Bornet D; Estelle Duprez; Jean-Christophe Andrau; Asnafi; Nadel B

T-cell acute lymphoblastic leukaemias (T-ALL) are aggressive malignant proliferations characterized by high relapse rates and great genetic heterogeneity. TAL1 is amongst the most frequently deregulated oncogenes. Yet, over half of the TAL1+ cases lack TAL1 lesions, suggesting unrecognized (epi)genetic deregulation mechanisms. Here we show that TAL1 is normally silenced in the T-cell lineage, and that the polycomb H3K27me3-repressive mark is focally diminished in TAL1+ T-ALLs. Sequencing reveals that >20% of monoallelic TAL1+ patients without previously known alterations display microinsertions or RAG1/2-mediated episomal reintegration in a single site 5′ to TAL1. Using ‘allelic-ChIP’ and CrispR assays, we demonstrate that such insertions induce a selective switch from H3K27me3 to H3K27ac at the inserted but not the germline allele. We also show that, despite a considerable mechanistic diversity, the mode of oncogenic TAL1 activation, rather than expression levels, impact on clinical outcome. Altogether, these studies establish site-specific epigenetic desilencing as a mechanism of oncogenic activation.


Critical Reviews in Oncology Hematology | 2013

Epigenetics in focus: pathogenesis of myelodysplastic syndromes and the role of hypomethylating agents.

Valeria Santini; Ari Melnick; Jaroslaw P. Maciejewski; Estelle Duprez; Clara Nervi; Lucio Cocco; Kevin G. Ford; Ghulam J. Mufti

Dysregulation of cellular epigenetic machinery is considered a major pathogenetic determinant in many malignancies, including myelodysplastic syndromes (MDS). The importance of epigenetic dysfunction in MDS is reflected by the success of hypomethylating agents as standard of care for their treatment. Although these agents improve both survival and quality of life, knowledge gaps remain regarding the precise role of epigenetics in the pathogenesis of MDS and mechanisms by which hypomethylating agents exert their clinical effects. This article reviews the pathogenic role of epigenetic alterations in MDS, including the relationship between genetic and epigenetic abnormalities, and highlights emerging evidence that hypomethylating agents may reprogram the methylome while re-establishing hematopoiesis.


Leukemia | 2017

The cryptic IRF2BP2-RARA fusion transforms hematopoietic stem/progenitor cells and induces retinoid-sensitive acute promyelocytic leukemia.

Jelena V. Jovanovic; M. C. Chillón; C. Vincent-Fabert; Richard Dillon; Edwige Voisset; Norma C. Gutiérrez; R. G. Sanz; A. A M Lopez; Y. G. Morgan; J. Lok; Eskinder Solomon; Estelle Duprez; M. G. Díaz; David Grimwade

The cryptic IRF2BP2-RARA fusion transforms hematopoietic stem/progenitor cells and induces retinoid-sensitive acute promyelocytic leukemia


Leukemia | 2015

PcG methylation of the HIST1 cluster defines an epigenetic marker of acute myeloid leukemia

Guillaume Tiberi; Aleksandra Pekowska; Claire Oudin; Adam Ivey; Aurelie Autret; Thomas Prebet; Myriam Koubi; Frédérique Lembo; M J Mozziconacci; Ghislain Bidaut; Christian Chabannon; David Grimwade; Norbert Vey; Salvatore Spicuglia; Boris Calmels; Estelle Duprez

PcG methylation of the HIST1 cluster defines an epigenetic marker of acute myeloid leukemia


Nucleic Acids Research | 2018

Regulation of the positive transcriptional effect of PLZF through a non-canonical EZH2 activity

Myriam Koubi; Mathilde Poplineau; Julien Vernerey; Lia N’Guyen; Guillaume Tiberi; Sylvain Garciaz; Abdessamad El-Kaoutari; Muhammad Ahmad Maqbool; Jean-Christophe Andrau; Christel Guillouf; Andrew J. Saurin; Estelle Duprez

Abstract The transcription factor PLZF (promyelocytic leukemia zinc finger protein) acts as an epigenetic regulator balancing self-renewal and differentiation of hematopoietic cells through binding to various chromatin-modifying factors. First described as a transcriptional repressor, PLZF is also associated with active transcription, although the molecular bases underlying the differences are unknown. Here, we reveal that in a hematopoietic cell line, PLZF is predominantly associated with transcribed genes. Additionally, we identify a new association between PLZF and the histone methyltransferase, EZH2 at the genomic level. We find that co-occupancy of PLZF and EZH2 on chromatin at PLZF target genes is not associated with SUZ12 or trimethylated lysine 27 of histone H3 (H3K27me3) but with the active histone mark H3K4me3 and active transcription. Removal of EZH2 leads to an increase of PLZF binding and increased gene expression. Our results suggest a new role of EZH2 in restricting PLZF positive transcriptional activity independently of its canonical PRC2 activity.


M S-medecine Sciences | 2017

Au cœur d’une complexité biologique - EZH2, une protéine du groupe Polycomb

Myriam Koubi; Christian Chabannon; Estelle Duprez


Archive | 2016

French academic strenghts in epigenetic and cancer

Geneviève Almouzni; Zachary A. Gurard-Levin; Paola B. Arimondo; Catherine Baugé; Olivier Bernard; Philippe Bertrand; Pierre François Cartron; Jean Cavarelli; Hervé Chneiweiss; F. Dantzer; Valérie Schreiber; Estelle Duprez; Reini Fernandez De Luco; Pierre Ferrier; Hinrich Gronemeyer; Christophe François Grosset; Dominique Guenot; Christel Guillouf; Zdenko Herceg; Eric Julien; Saadi Khochbin; José Arturo Lindo No-Vallejo; Jérôme Moreaux; Antonin Morillon; Jean Mosser; Christian Muchardt; Peter Mulligan; Françoise Ochsenbein; Benjamin Ory; Yves Renaudineau


Blood | 2014

H3K27me3 Level of the HIST1 Cluster Defines an Epigenetic Marker of Acute Myeloid Leukemia with Prognostic Value

Guillaume Tiberi; Aleksandra Pekowska; Claire Oudin; Adam Ivey; Thomas Prebet; Myriam Koubi; Frédérique Lembo; Marie-Joelle Mozziconacci; Ghislain Bidaut; Aurelie Autret; Christian Chabannon; David Grimwade; Norbert Vey; Salvatore Spicuglia; Boris Calmels; Estelle Duprez

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Myriam Koubi

Aix-Marseille University

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Aurelie Autret

Aix-Marseille University

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Boris Calmels

Aix-Marseille University

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Claire Oudin

Aix-Marseille University

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