PU.1-Dependent Enhancer Inhibition Separates Tet2-Deficient Hematopoiesis from Malignant Transformation

Author:

Aivalioti Maria M.12ORCID,Bartholdy Boris A.1ORCID,Pradhan Kith3ORCID,Bhagat Tushar D.3ORCID,Zintiridou Aliona1ORCID,Jeong Jong Jin4ORCID,Thiruthuvanathan Victor J.1ORCID,Pujato Mario5ORCID,Paranjpe Aditi5ORCID,Zhang Chi1ORCID,Levine Ross L.6ORCID,Viny Aaron D.7ORCID,Wickrema Amittha4ORCID,Verma Amit38ORCID,Will Britta13ORCID

Affiliation:

1. 1Department of Cell Biology, Albert Einstein College of Medicine/Montefiore Medical Center, Bronx, New York.

2. 2Graduate Programs in the Biomedical Sciences, Albert Einstein College of Medicine, Bronx, New York.

3. 3Department of Medicine (Oncology), Albert Einstein College of Medicine/Montefiore Medical Center, Bronx, New York.

4. 4Section of Hematology/Oncology, Department of Medicine, The University of Chicago, Chicago, Illinois.

5. 5Division of Biomedical Informatics, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.

6. 6Center for Hematologic Malignancies, Memorial Sloan Kettering Cancer Center, New York, New York.

7. 7Department of Genetics and Development, Columbia University, New York, New York.

8. 8Department of Developmental and Molecular Biology, Albert Einstein College of Medicine/Montefiore Medical Center, Bronx, New York.

Abstract

Abstract Cytosine hypermethylation in and around DNA-binding sites of master transcription factors, including PU.1, occurs in aging hematopoietic stem cells following acquired loss-of-function mutations of DNA methyl-cytosine dioxygenase ten–eleven translocation-2 (TET2), albeit functional relevance has been unclear. We show that Tet2-deficient mouse hematopoietic stem and progenitor cells undergo malignant transformation upon compromised gene regulation through heterozygous deletion of an upstream regulatory region (UREΔ/WT) of the PU.1 gene. Although compatible with multilineage blood formation at young age, Tet2-deficient PU.1 UREΔ/WT mice develop highly penetrant, transplantable acute myeloid leukemia (AML) during aging. Leukemic stem and progenitor cells show hypermethylation at putative PU.1-binding sites, fail to activate myeloid enhancers, and are hallmarked by a signature of genes with impaired expression shared with human AML. Our study demonstrates that Tet2 and PU.1 jointly suppress leukemogenesis and uncovers a methylation-sensitive PU.1-dependent gene network as a unifying molecular vulnerability associated with AML. Significance: We identify moderately impaired PU.1 mRNA expression as a biological modality predisposing Tet2-deficient hematopoietic stem and progenitor cells to malignant transformation. Our study furthermore uncovers a methylation-sensitive PU.1 gene network as a common feature of myeloid leukemia potentially allowing for the identification of patients at risk for malignant transformation. See related commentary by Schleicher and Pietras, p. 378. This article is highlighted in the In This Issue feature, p. 369

Funder

National Institutes of Health

Feldstein Medical Foundation

New York State Stem Cell Science

Leukemia Research Foundation

Publisher

American Association for Cancer Research (AACR)

Subject

General Medicine

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