A novel murine model of myeloproliferative disorders generated by overexpression of the transcription factor NF-E2

Author:

Kaufmann Kai B.1,Gründer Albert1,Hadlich Tobias1,Wehrle Julius1,Gothwal Monika11,Bogeska Ruzhica111,Seeger Thalia S.1,Kayser Sarah1,Pham Kien-Binh1,Jutzi Jonas S.1,Ganzenmüller Lucas1,Steinemann Doris2,Schlegelberger Brigitte2,Wagner Julia M.1,Jung Manfred11,Will Britta33,Steidl Ulrich33,Aumann Konrad1,Werner Martin1,Günther Thomas1,Schüle Roland1,Rambaldi Alessandro4,Pahl Heike L.11

Affiliation:

1. Department of Experimental Anaesthesiology, Center for Clinical Research; Institute of Pathology; and Department of Urology; University Hospital Freiburg; and Spemann Graduate School of Biology and Medicine, Faculty of Biology, Institute of Pharmaceutical Sciences, and Freiburg Institute for Advanced Studies; Albert Ludwigs University Freiburg, 79085 Freiburg, Germany

2. Institute of Cell and Molecular Pathology, Hannover Medical School, 30625 Hannover, Germany

3. Department of Cell Biology and Albert Einstein Cancer Center, Albert Einstein College of Medicine, Bronx, NY 10461

4. Unità di Ematologia, Ospedali Riuniti Di Bergamo, 24128 Bergamo, Italy

Abstract

The molecular pathophysiology of myeloproliferative neoplasms (MPNs) remains poorly understood. Based on the observation that the transcription factor NF-E2 is often overexpressed in MPN patients, independent of the presence of other molecular aberrations, we generated mice expressing an NF-E2 transgene in hematopoietic cells. These mice exhibit many features of MPNs, including thrombocytosis, leukocytosis, Epo-independent colony formation, characteristic bone marrow histology, expansion of stem and progenitor compartments, and spontaneous transformation to acute myeloid leukemia. The MPN phenotype is transplantable to secondary recipient mice. NF-E2 can alter histone modifications, and NF-E2 transgenic mice show hypoacetylation of histone H3. Treatment of mice with the histone deacetylase inhibitor (HDAC-I) vorinostat restored physiological levels of histone H3 acetylation, decreased NF-E2 expression, and normalized platelet numbers. Similarly, MPN patients treated with an HDAC-I exhibited a decrease in NF-E2 expression. These data establish a role for NF-E2 in the pathophysiology of MPNs and provide a molecular rationale for investigating epigenetic alterations as novel targets for rationally designed MPN therapies.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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