Selective Requirement of MYB for Oncogenic Hyperactivation of a Translocated Enhancer in Leukemia.
Leonie SmeenkSophie OttemaRoger Mulet-LazaroAnja EbertMarije HavermansAndrea Arricibita VareaMichaela FellnerDorien PastoorsStanley van HerkClaudia Erpelinck-VerschuerenTim GrobRemco M HoogenboezemFrançois G KavelaarsDaniel R MatsonEric M J BindelsAlex KentsisJohannes ZuberRuud DelwelPublished in: Cancer discovery (2021)
In acute myeloid leukemia (AML) with inv(3)(q21;q26) or t(3;3)(q21;q26), a translocated GATA2 enhancer drives oncogenic expression of EVI1. We generated an EVI1-GFP AML model and applied an unbiased CRISPR/Cas9 enhancer scan to uncover sequence motifs essential for EVI1 transcription. Using this approach, we pinpointed a single regulatory element in the translocated GATA2 enhancer that is critically required for aberrant EVI1 expression. This element contained a DNA-binding motif for the transcription factor MYB, which specifically occupied this site at the translocated allele and was dispensable for GATA2 expression. MYB knockout as well as peptidomimetic blockade of CBP/p300-dependent MYB functions resulted in downregulation of EVI1 but not of GATA2. Targeting MYB or mutating its DNA-binding motif within the GATA2 enhancer resulted in myeloid differentiation and cell death, suggesting that interference with MYB-driven EVI1 transcription provides a potential entry point for therapy of inv(3)/t(3;3) AMLs. SIGNIFICANCE: We show a novel paradigm in which chromosomal aberrations reveal critical regulatory elements that are nonfunctional at their endogenous locus. This knowledge provides a rationale to develop new compounds to selectively interfere with oncogenic enhancer activity.This article is highlighted in the In This Issue feature, p. 2659.
Keyphrases
- transcription factor
- dna binding
- acute myeloid leukemia
- poor prognosis
- binding protein
- cell death
- crispr cas
- genome wide identification
- bone marrow
- computed tomography
- healthcare
- copy number
- gene expression
- signaling pathway
- risk assessment
- immune response
- genome editing
- genome wide
- dna methylation
- magnetic resonance
- deep learning
- cell cycle arrest
- drug delivery
- human health
- replacement therapy
- contrast enhanced