HDAC1 and PRC2 mediate combinatorial control in SPI1/PU.1-dependent gene repression in murine erythroleukaemia

Author:

Gregoricchio Sebastian123ORCID,Polit Lélia4,Esposito Michela12,Berthelet Jérémy5,Delestré Laure12,Evanno Emilie6,Diop M’Boyba12,Gallais Isabelle6,Aleth Hanna7,Poplineau Mathilde82,Zwart Wilbert3,Rosenbauer Frank7,Rodrigues-Lima Fernando5ORCID,Duprez Estelle82ORCID,Boeva Valentina49,Guillouf Christel12ORCID

Affiliation:

1. Inserm U1170, Université Paris-Saclay, Gustave Roussy Cancer Campus , F- 94800  Villejuif, France

2. Equipe Labellisée Ligue Nationale Contre le Cancer , France

3. Division of Oncogenomics, Oncode Institute, The Netherlands Cancer Institute , Amsterdam , The Netherlands

4. CNRS UMR8104, Inserm U1016, Université Paris Cité, Cochin Institute , F-75014 Paris , France

5. Université Paris Cité , CNRS UMR8251, F-75013  Paris , France

6. Curie Institute , Inserm U830, F- 75005 Paris, France

7. Institute of Molecular Tumor Biology, University of Münster , Münster, Germany

8. CNRS UMR7258, Inserm U1068, Université Aix Marseille, Paoli-Calmettes Institute , CRCM, F-13009  Marseille , France

9. Department of Computer Science and Department of Biology , ETH Zurich, 8092 Zurich , Switzerland

Abstract

Abstract Although originally described as transcriptional activator, SPI1/PU.1, a major player in haematopoiesis whose alterations are associated with haematological malignancies, has the ability to repress transcription. Here, we investigated the mechanisms underlying gene repression in the erythroid lineage, in which SPI1 exerts an oncogenic function by blocking differentiation. We show that SPI1 represses genes by binding active enhancers that are located in intergenic or gene body regions. HDAC1 acts as a cooperative mediator of SPI1-induced transcriptional repression by deacetylating SPI1-bound enhancers in a subset of genes, including those involved in erythroid differentiation. Enhancer deacetylation impacts on promoter acetylation, chromatin accessibility and RNA pol II occupancy. In addition to the activities of HDAC1, polycomb repressive complex 2 (PRC2) reinforces gene repression by depositing H3K27me3 at promoter sequences when SPI1 is located at enhancer sequences. Moreover, our study identified a synergistic relationship between PRC2 and HDAC1 complexes in mediating the transcriptional repression activity of SPI1, ultimately inducing synergistic adverse effects on leukaemic cell survival. Our results highlight the importance of the mechanism underlying transcriptional repression in leukemic cells, involving complex functional connections between SPI1 and the epigenetic regulators PRC2 and HDAC1.

Funder

Inserm

CNRS

Ligue Nationale contre le Cancer

Institut National Du Cancer

Société Française d’Hématologie

Gustave Roussy Genomic Core Facilities

Institut Thématique Multi-Organisme-Cancer de l’Alliance Nationale pour les Sciences de la Vie et de la Santé

ATIP-Avenir

ARC Foundation

‘Who Am I?’ Laboratory of Excellence

French Government

French National Research Agency

Ministère de l’Enseignement Supérieur

Région Ile-de-France

Université Paris Cité

Excellence Initiative of Aix-Marseille University

Fondation de France

Publisher

Oxford University Press (OUP)

Subject

Genetics

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