Dominique Duménil
Paris Descartes University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Dominique Duménil.
Experimental Hematology | 2011
Claude Capron; Catherine Lacout; Yann Lécluse; Orianne Wagner-Ballon; Anna-Lila Kaushik; Elisabeth Cramer-Bordé; Fred Sablitzky; Dominique Duménil; William Vainchenker
OBJECTIVEnLYL-1 is a transcription factor containing a basic helix-loop-helix motif closely related to SCL/TAL-1, a regulator of erythroid differentiation. Because LYL-1 is expressed in erythroid cell populations, we addressed its role in erythropoiesis using knockin mice.nnnMATERIALS AND METHODSnErythropoiesis of LYL-1(-/-) mice was studied by progenitor assays, flow cytometry, reconstitution assays, and functional tests. Expression of LYL-1, SCL, and GATA-1 was assessed at messenger RNA level by quantitative reverse transcription polymerase chain reaction.nnnRESULTSnLYL-1(-/-) mice displayed decreased erythropoiesis with a partial arrest in differentiation, and enhanced apoptosis associated with decreased Bcl-x(L) expression in the bone marrow (BM). In addition, LYL-1(-/-) BM cells were severely impaired in their abilities to reconstitute the erythroid lineage in competitive assays, suggesting a cell autonomous abnormality of erythropoiesis. In parallel, erythroid progenitor and precursor cells were significantly increased in the spleen of LYL-1(-/-) mice. Expression of LYL-1 was differentially regulated during maturation of erythroblasts and strikingly different between spleen- and BM-derived erythroblasts. Expression of LYL-1 decreased during erythroid differentiation in the spleen whereas it increased in the BM to reach the same level in mature erythroblasts as in the soleen. Loss of Lyl-1 expression was accompanied with an increase of SCL/TAL-1 and GATA-1 transcripts in spleen but not in BM-derived erythroblasts. Furthermore, phenylhydrazine-induced stress erythropoiesis was elevated in LYL-1(-/-) mice and mutant BM and spleen erythroid progenitors were hypersensitive to erythropoietin.nnnCONCLUSIONSnTaken together, these results suggest that LYL-1 plays a definite role in erythropoiesis, albeit with different effects in BM specifically regulating basal erythropoiesis, and spleen, controlling stress-induced erythropoiesis.
Blood | 2006
Claude Capron; Yann Lécluse; Anna Lila Kaushik; Adlen Foudi; Catherine Lacout; Dalila Sekkaï; Isabelle Godin; Olivier Albagli; Isabelle Poullion; Fédor Svinartchouk; Elisabeth Schanze; William Vainchenker; Fred Sablitzky; Annelise Bennaceur-Griscelli; Dominique Duménil
Blood | 2003
Catherine Lacout; Elie Haddad; Siham Sabri; Fedor Svinarchouk; Loïc Garçon; Claude Capron; Adlen Foudi; Rym Mzali; Scott B. Snapper; Fawzia Louache; William Vainchenker; Dominique Duménil
Blood | 2007
Laure Meyer; Bénédicte Deau; Hana Forejtníková; Dominique Duménil; Florence Margottin-Goguet; Catherine Lacombe; Patrick Mayeux; Frédérique Verdier
Blood | 2005
Loı̈c Garçon; Catherine Lacout; Fédor Svinartchouk; Jean-Pierre Le Couedic; Jean-Luc Villeval; William Vainchenker; Dominique Duménil
Blood | 2003
Zeineb Gadhoum; Marie-Pierre Leibovitch; Junyuan Qi; Dominique Duménil; Laetitia Durand; Serge A. Leibovitch; Florence Smadja-Joffe
Blood | 1997
Frédérique Goncalves; Catherine Lacout; Jean-Luc Villeval; Françoise Wendling; William Vainchenker; Dominique Duménil
Gene Expression Patterns | 2007
Sébastien Giroux; Anna-Lila Kaushik; Claude Capron; Ali Jalil; Charikleia Kelaidi; Fred Sablitzky; Dominique Duménil; Olivier Albagli; Isabelle Godin
Journal of Cell Science | 2002
Gaël A. Millot; William Vainchenker; Dominique Duménil; Fedor Svinarchuk
Blood | 1996
O Hermine; Anne Dubart; Porteux F; Patrick Mayeux; Titeux M; Dominique Duménil; William Vainchenker