Dual role of EZH2 in megakaryocyte differentiation

Author:

Mazzi Stefania1234,Dessen Philippe5ORCID,Vieira Mathieu123,Dufour Virginie6,Cambot Marie6,El Khoury Mira123,Antony-Debré Iléana123,Arkoun Brahim123,Basso-Valentina Francesca1234,BenAbdoulahab Salwa1237,Edmond Valerie123,Rameau Philippe3,Petermann Rachel6ORCID,Wittner Monika123,Cassinat Bruno8,Plo Isabelle123ORCID,Debili Najet123,Raslova Hana123ORCID,Vainchenker William1236ORCID

Affiliation:

1. INSERM, Unité Mixte de Recherche (UMR) 1287, Gustave Roussy, Equipe labellisée Ligue Nationale Contre le Cancer, Villejuif, France;

2. Université Paris-Saclay, UMR 1287, Gustave Roussy, Villejuif, France;

3. Gustave Roussy, UMR 1287, Villejuif, France;

4. Université Paris-Diderot, Paris, France;

5. INSERM, Centre National de la Recherche Scientifique (CNRS), Genomic Core Facility UMS AMMICA, Gustave Roussy, Villejuif, France;

6. Institut National de la Transfusion sanguine, Paris, France;

7. Université Paris XIII, Villetaneuse, France; and

8. Assistance Publique–Hôpitaux de Paris, Hopital Saint-Louis, Service de Biologie Cellulaire, Paris, France

Abstract

Abstract EZH2, the enzymatic component of PRC2, has been identified as a key factor in hematopoiesis. EZH2 loss-of-function mutations have been found in myeloproliferative neoplasms, particularly in myelofibrosis, but the precise function of EZH2 in megakaryopoiesis is not fully delineated. Here, we show that EZH2 inhibition by small molecules and short hairpin RNA induces megakaryocyte (MK) commitment by accelerating lineage marker acquisition without change in proliferation. Later in differentiation, EZH2 inhibition blocks proliferation and polyploidization and decreases proplatelet formation. EZH2 inhibitors similarly reduce MK polyploidization and proplatelet formation in vitro and platelet levels in vivo in a JAK2V617F background. In transcriptome profiling, the defect in proplatelet formation was associated with an aberrant actin cytoskeleton regulation pathway, whereas polyploidization was associated with an inhibition of expression of genes involved in DNA replication and repair and an upregulation of cyclin-dependent kinase inhibitors, particularly CDKN1A and CDKN2D. The knockdown of CDKN1A and to a lesser extent CDKN2D could partially rescue the percentage of polyploid MKs. Moreover, H3K27me3 and EZH2 chromatin immunoprecipitation assays revealed that CDKN1A is a direct EZH2 target and CDKN2D expression is not directly regulated by EZH2, suggesting that EZH2 controls MK polyploidization directly through CDKN1A and indirectly through CDKN2D.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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