Stem cell-like reprogramming is required for leukemia-initiating activity in B-ALL.
Vincent FregonaManon BayetMathieu BouttierLaëtitia LargeaudCamille HamelleLaura Audrey JamrogNaïs PradeStéphanie LagardeSylvie HebrardIsabelle LuquetVéronique De MasMarie NollaMarlène PasquetChristine DidierAhmed Amine KhamlichiCyril BroccardoEric DelabesseStéphane J C ManciniBastien GerbyPublished in: The Journal of experimental medicine (2023)
B cell acute lymphoblastic leukemia (B-ALL) is a multistep disease characterized by the hierarchical acquisition of genetic alterations. However, the question of how a primary oncogene reprograms stem cell-like properties in committed B cells and leads to a preneoplastic population remains unclear. Here, we used the PAX5::ELN oncogenic model to demonstrate a causal link between the differentiation blockade, the self-renewal, and the emergence of preleukemic stem cells (pre-LSCs). We show that PAX5::ELN disrupts the differentiation of preleukemic cells by enforcing the IL7r/JAK-STAT pathway. This disruption is associated with the induction of rare and quiescent pre-LSCs that sustain the leukemia-initiating activity, as assessed using the H2B-GFP model. Integration of transcriptomic and chromatin accessibility data reveals that those quiescent pre-LSCs lose B cell identity and reactivate an immature molecular program, reminiscent of human B-ALL chemo-resistant cells. Finally, our transcriptional regulatory network reveals the transcription factor EGR1 as a strong candidate to control quiescence/resistance of PAX5::ELN pre-LSCs as well as of blasts from human B-ALL.
Keyphrases
- stem cells
- transcription factor
- induced apoptosis
- acute lymphoblastic leukemia
- endothelial cells
- cell cycle arrest
- gene expression
- acute myeloid leukemia
- bone marrow
- genome wide
- dna binding
- signaling pathway
- photodynamic therapy
- pluripotent stem cells
- radiation therapy
- oxidative stress
- cell death
- single cell
- rna seq
- dna methylation
- squamous cell carcinoma
- allogeneic hematopoietic stem cell transplantation
- copy number
- artificial intelligence
- genome wide identification
- pi k akt
- data analysis