HOXA9 forms a repressive complex with nuclear matrix–associated protein SAFB to maintain acute myeloid leukemia

Author:

Agrawal-Singh Shuchi12ORCID,Bagri Jaana12ORCID,Giotopoulos George12ORCID,Azazi Dhoyazan M. A.12ORCID,Horton Sarah J.12ORCID,Lopez Cecile K.12,Anand Shubha3,Bach Anne-Sophie12,Stedham Frances12,Antrobus Robin4,Houghton Jack W.4,Vassiliou George S.125ORCID,Sasca Daniel6ORCID,Yun Haiyang7ORCID,Whetton Anthony D.8ORCID,Huntly Brian J. P.124ORCID

Affiliation:

1. 1Wellcome Trust–MRC Cambridge Stem Cell Institute, Cambridge, United Kingdom

2. 2Department of Haematology, University of Cambridge, Cambridge, United Kingdom

3. 3Cancer Molecular Diagnostics Laboratory, Cancer Research UK Cambridge Centre, Cambridge, United Kingdom

4. 4Cambridge Institute for Medical Research, University of Cambridge, Cambridge, United Kingdom

5. 5Cambridge University Hospitals NHS Foundation Trust, Cambridge, United Kingdom

6. 6Department of Hematology, Oncology and Pneumology, University Medical Center Mainz, Mainz, Germany

7. 7Department of Medicine V, Hematology, Oncology and Rheumatology, University of Heidelberg, Heidelberg, Germany

8. 8School of Veterinary Medicine, School of Biosciences and Medicine, University of Surrey, Guildford, Surrey, United Kingdom

Abstract

Abstract HOXA9 is commonly upregulated in acute myeloid leukemia (AML), in which it confers a poor prognosis. Characterizing the protein interactome of endogenous HOXA9 in human AML, we identified a chromatin complex of HOXA9 with the nuclear matrix attachment protein SAFB. SAFB perturbation phenocopied HOXA9 knockout to decrease AML proliferation, increase differentiation and apoptosis in vitro, and prolong survival in vivo. Integrated genomic, transcriptomic, and proteomic analyses further demonstrated that the HOXA9-SAFB (H9SB)–chromatin complex associates with nucleosome remodeling and histone deacetylase (NuRD) and HP1γ to repress the expression of factors associated with differentiation and apoptosis, including NOTCH1, CEBPδ, S100A8, and CDKN1A. Chemical or genetic perturbation of NuRD and HP1γ–associated catalytic activity also triggered differentiation, apoptosis, and the induction of these tumor-suppressive genes. Importantly, this mechanism is operative in other HOXA9-dependent AML genotypes. This mechanistic insight demonstrates the active HOXA9-dependent differentiation block as a potent mechanism of disease maintenance in AML that may be amenable to therapeutic intervention by targeting the H9SB interface and/or NuRD and HP1γ activity.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference53 articles.

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