Down-regulation of the RUNX1-target gene NR4A3 contributes to hematopoiesis deregulation in familial platelet disorder/acute myelogenous leukemia

Author:

Bluteau Dominique123,Gilles Laure123,Hilpert Morgane123,Antony-Debré Iléana123,James Chloe45,Debili Najet123,Camara-Clayette Valerie123,Wagner-Ballon Orianne123,Cordette-Lagarde Veronique123,Robert Thomas23,Ripoche Hugues236,Gonin Patrick37,Swierczek Sabina8,Prchal Josef8,Vainchenker William123,Favier Remi19,Raslova Hana123

Affiliation:

1. Inserm, U1009, Villejuif, France;

2. Université Paris Sud, Villejuif, France;

3. Institut Gustave Roussy, Institut Fédérative de Cancer 54, Villejuif, France;

4. Inserm, U876, Bordeaux, France;

5. Université V. Segalen Bordeaux 2, Bordeaux, France;

6. Centre National de la Recherche Scientifique, Formation de Recherche en Evolution 2939, Villejuif, France;

7. Service Commun d'Expérimentation Animale, Integrated Research Cancer Institut in Villejuif, Institut Gustave Roussy, Villejuif, France;

8. Division of Hematology, University of Utah and Veteran's Administration Hospital, Salt Lake City, UT; and

9. Assistance Publique–Hôpitaux de Paris, Hôpital Trousseau, Service d'Hématologie biologique, Paris, France

Abstract

Abstract RUNX1 encodes a DNA-binding α subunit of the core-binding factor, a heterodimeric transcription factor. RUNX1 is a master regulatory gene in hematopoiesis and its disruption is one of the most common aberrations in acute leukemia. Inactivating or dominant-negative mutations in the RUNX1 gene have been also identified in pedigrees of familial platelet disorders with a variable propensity to develop acute myeloid leukemia (FPD/AML). We performed analysis of hematopoiesis from 2 FPD/AML pedigrees with 2 distinct RUNX1 germline mutations, that is, the R139X in a pedigree without AML and the R174Q mutation in a pedigree with AML. Both mutations induced a marked increase in the clonogenic potential of immature CD34+CD38− progenitors, with some self-renewal capacities observed only for R174Q mutation. This increased proliferation correlated with reduction in the expression of NR4A3, a gene previously implicated in leukemia development. We demonstrated that NR4A3 was a direct target of RUNX1 and that restoration of NR4A3 expression partially reduced the clonogenic potential of patient progenitors. We propose that the down-regulation of NR4A3 in RUNX1-mutated hematopoietic progenitors leads to an increase in the pool of cells susceptible to be hit by secondary leukemic genetic events.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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