EVI1 drives leukemogenesis through aberrant ERG activation

Author:

Schmoellerl Johannes12ORCID,Barbosa Inês A.M.13ORCID,Minnich Martina1ORCID,Andersch Florian1,Smeenk Leonie45ORCID,Havermans Marije45,Eder Thomas2,Neumann Tobias1ORCID,Jude Julian1ORCID,Fellner Michaela1,Ebert Anja1ORCID,Steininger Monika13,Delwel Ruud45,Grebien Florian2ORCID,Zuber Johannes16ORCID

Affiliation:

1. 1Research Institute of Molecular Pathology, Vienna BioCenter, Vienna, Austria

2. 2Institute for Medical Biochemistry, University of Veterinary Medicine Vienna, Vienna, Austria

3. 3Vienna BioCenter PhD Program, Doctoral School of the University of Vienna and Medical University of Vienna, Vienna, Austria

4. 4Department of Hematology, Erasmus Medical Center Cancer Institute, Rotterdam, The Netherlands

5. 5Oncode Institute, Utrecht, The Netherlands

6. 6Medical University of Vienna, Vienna, Austria

Abstract

Abstract Chromosomal rearrangements involving the MDS1 and EVI1 complex locus (MECOM) on chromosome 3q26 define an aggressive subtype of acute myeloid leukemia (AML) that is associated with chemotherapy resistance and dismal prognosis. Established treatment regimens commonly fail in these patients, therefore, there is an urgent need for new therapeutic concepts that will require a better understanding of the molecular and cellular functions of the ecotropic viral integration site 1 (EVI1) oncogene. To characterize gene regulatory functions of EVI1 and associated dependencies in AML, we developed experimentally tractable human and murine disease models, investigated the transcriptional consequences of EVI1 withdrawal in vitro and in vivo, and performed the first genome-wide CRISPR screens in EVI1-dependent AML. By integrating conserved transcriptional targets with genetic dependency data, we identified and characterized the ETS transcription factor ERG as a direct transcriptional target of EVI1 that is aberrantly expressed and selectively required in both human and murine EVI1–driven AML. EVI1 controls the expression of ERG and occupies a conserved intragenic enhancer region in AML cell lines and samples from patients with primary AML. Suppression of ERG induces terminal differentiation of EVI1-driven AML cells, whereas ectopic expression of ERG abrogates their dependence on EVI1, indicating that the major oncogenic functions of EVI1 are mediated through aberrant transcriptional activation of ERG. Interfering with this regulatory axis may provide entry points for the development of rational targeted therapies.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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