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EBF1 and Pax5 safeguard leukemic transformation by limiting IL-7 signaling, Myc expression, and folate metabolism

  • Senthilkumar Ramamoorthy
  • , Kohei Kometani
  • , Josip S. Herman
  • , Marc Bayer
  • , Sören Boller
  • , Joy Edwards-Hicks
  • , Haribaskar Ramachandran
  • , Rui Li
  • , Ramon Klein-Geltink
  • , Erika L. Pearce
  • , Dominic Grön
  • , Rudolf Grosschedl

Research output: Contribution to journalArticlepeer-review

Abstract

EBF1 and PAX5 mutations are associated with the development of B progenitor acute lymphoblastic leukemia (B-ALL) in humans. To understand the molecular networks driving leukemia in the Ebf1+/-Pax5+/- (dHet) mouse model for B-ALL, we interrogated the transcriptional profiles and chromatin status of leukemic cells, preleukemic dHet pro-B, and wild-Type pro-B cells with the corresponding EBF1 and Pax5 cistromes. In dHet B-ALL cells, many EBF1 and Pax5 target genes encoding pre-BCR signaling components and transcription factors were down-regulated, whereas Myc and genes downstream from IL-7 signaling or associated with the folate pathway were up-regulated.We show that blockade of IL-7 signaling in vivo and methotrexate treatment of leukemic cells in vitro attenuate the expansion of leukemic cells. Single-cell RNA-sequencing revealed heterogeneity of leukemic cells and identified a subset of wild-Type pro-B cells with reduced Ebf1 and enhanced Myc expression that show hallmarks of dHet B-ALL cells. Thus, EBF1 and Pax5 may safeguard early stage B cells from transformation to B-ALL by limiting IL-7 signaling, folate metabolism and Myc expression.

Original languageEnglish (US)
Pages (from-to)1503-1519
Number of pages17
JournalGenes and Development
Volume34
Issue number21-22
DOIs
StatePublished - Nov 1 2020
Externally publishedYes

Keywords

  • B-ALL
  • CMyc
  • EBF1
  • Folate pathway
  • IL-7 signaling
  • Pax5

ASJC Scopus subject areas

  • Genetics
  • Developmental Biology

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