Mbd3/NuRD controls lymphoid cell fate and inhibits tumorigenesis by repressing a B cell transcriptional program

Author:

Loughran Stephen J.12ORCID,Comoglio Federico12ORCID,Hamey Fiona K.12,Giustacchini Alice3ORCID,Errami Youssef12,Earp Eleanor12ORCID,Göttgens Berthold12ORCID,Jacobsen Sten Eirik W.34ORCID,Mead Adam J.3ORCID,Hendrich Brian25ORCID,Green Anthony R.12ORCID

Affiliation:

1. Department of Haematology, Cambridge Institute for Medical Research, University of Cambridge, Cambridge, England, UK

2. Wellcome Trust/MRC Stem Cell Institute, University of Cambridge, Cambridge, England, UK

3. MRC Weatherall Institute of Molecular Medicine, University of Oxford, Oxford, England, UK

4. Wallenberg Institute for Regenerative Medicine, Department of Cell and Molecular Biology and Department of Medicine Huddinge, Karolinska Institutet and Center for Hematology and Regenerative Medicine, Karolinska University Hospital Huddinge, Stockholm, Sweden

5. Department of Biochemistry, University of Cambridge, Cambridge, England, UK

Abstract

Differentiation of lineage-committed cells from multipotent progenitors requires the establishment of accessible chromatin at lineage-specific transcriptional enhancers and promoters, which is mediated by pioneer transcription factors that recruit activating chromatin remodeling complexes. Here we show that the Mbd3/nucleosome remodeling and deacetylation (NuRD) chromatin remodeling complex opposes this transcriptional pioneering during B cell programming of multipotent lymphoid progenitors by restricting chromatin accessibility at B cell enhancers and promoters. Mbd3/NuRD-deficient lymphoid progenitors therefore prematurely activate a B cell transcriptional program and are biased toward overproduction of pro–B cells at the expense of T cell progenitors. The striking reduction in early thymic T cell progenitors results in compensatory hyperproliferation of immature thymocytes and development of T cell lymphoma. Our results reveal that Mbd3/NuRD can regulate multilineage differentiation by constraining the activation of dormant lineage-specific enhancers and promoters. In this way, Mbd3/NuRD protects the multipotency of lymphoid progenitors, preventing B cell–programming transcription factors from prematurely enacting lineage commitment. Mbd3/NuRD therefore controls the fate of lymphoid progenitors, ensuring appropriate production of lineage-committed progeny and suppressing tumor formation.

Funder

European Molecular Biology Organization

Cancer Research UK

Bloodwise

Wellcome Trust

MRC Cambridge Stem Cell Institute

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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