Bcor deficiency perturbs erythro-megakaryopoiesis and cooperates with Dnmt3a loss in acute erythroid leukemia onset in mice.
Paolo SportolettiDaniele SorciniAnna G GuzmanJaime M ReyesArianna StellaAndrea MarraSara SartoriLorenzo BrunettiRoberta RossiBeatrice Del PapaFrancesco Maria AdamoGiulia PianigianiCamilla BettiAnnarita ScialdoneValerio GuarenteGiulio SpinozziValentina TiniMaria Paola MartelliMargaret A GoodellBrunangelo FaliniPublished in: Leukemia (2020)
Recurrent loss-of-function mutations of BCL6 co-repressor (BCOR) gene are found in about 4% of AML patients with normal karyotype and are associated with DNMT3a mutations and poor prognosis. Therefore, new anti-leukemia treatments and mouse models are needed for this combinatorial AML genotype. For this purpose, we first generated a Bcor-/- knockout mouse model characterized by impaired erythroid development (macrocytosis and anemia) and enhanced thrombopoiesis, which are both features of myelodysplasia/myeloproliferative neoplasms. We then created and characterized double Bcor-/-/Dnmt3a-/- knockout mice. Interestingly, these animals developed a fully penetrant acute erythroid leukemia (AEL) characterized by leukocytosis secondary to the expansion of blasts expressing c-Kit+ and the erythroid marker Ter119, macrocytic anemia and progressive reduction of the thrombocytosis associated with loss of Bcor alone. Transcriptomic analysis of double knockout bone marrow progenitors revealed that aberrant erythroid skewing was induced by epigenetic changes affecting specific transcriptional factors (GATA1-2) and cell-cycle regulators (Mdm2, Tp53). These findings prompted us to investigate the efficacy of demethylating agents in AEL, with significant impact on progressive leukemic burden and mice overall survival. Information gained from our model expands the knowledge on the biology of AEL and may help designing new rational treatments for patients suffering from this high-risk leukemia.
Keyphrases
- acute myeloid leukemia
- bone marrow
- poor prognosis
- dna methylation
- cell cycle
- mouse model
- clear cell
- end stage renal disease
- chronic kidney disease
- liver failure
- transcription factor
- long non coding rna
- multiple sclerosis
- allogeneic hematopoietic stem cell transplantation
- gene expression
- genome wide
- wild type
- respiratory failure
- newly diagnosed
- ejection fraction
- mesenchymal stem cells
- cell proliferation
- single cell
- aortic dissection
- drug induced
- prognostic factors
- peritoneal dialysis
- iron deficiency
- copy number
- rna seq
- oxidative stress
- type diabetes
- risk factors
- social media
- hepatitis b virus