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The Eμ-Ret mouse is a novel model of hyperdiploid B-cell acute lymphoblastic leukemia

  • Ali Farrokhi,
  • Tanmaya Atre,
  • Jenna Rever,
  • Mario Fidanza,
  • Wendy Duey,
  • Samuel Salitra,
  • Junia Myung,
  • Meiyun Guo,
  • Sumin Jo,
  • Anuli Uzozie,
  • Fatemeh Baharvand,
  • Nina Rolf,
  • Franziska Auer,
  • Julia Hauer,
  • Stephan A. Grupp,
  • Patrice Eydoux,
  • Philipp F. Lange,
  • Alix E. Seif,
  • Christopher A. Maxwell,
  • Gregor S. D. Reid

摘要

The presence of supernumerary chromosomes is the only abnormality shared by all patients diagnosed with high-hyperdiploid B cell acute lymphoblastic leukemia (HD-ALL). Despite being the most frequently diagnosed pediatric leukemia, the lack of clonal molecular lesions and complete absence of appropriate experimental models have impeded the elucidation of HD-ALL leukemogenesis. Here, we report that for 23 leukemia samples isolated from moribund Eμ-Ret mice, all were characterized by non-random chromosomal gains, involving combinations of trisomy 9, 12, 14, 15, and 17. With a median gain of three chromosomes, leukemia emerged after a prolonged latency from a preleukemic B cell precursor cell population displaying more diverse aneuploidy. Transition from preleukemia to overt disease in Eμ-Ret mice is associated with acquisition of heterogeneous genomic abnormalities affecting the expression of genes implicated in pediatric B-ALL. The development of abnormal centrosomes in parallel with aneuploidy renders both preleukemic and leukemic cells sensitive to inhibitors of centrosome clustering, enabling targeted in vivo depletion of leukemia-propagating cells. This study reveals the Eμ-Ret mouse to be a novel tool for investigating HD-ALL leukemogenesis, including supervision and selection of preleukemic aneuploid clones by the immune system and identification of vulnerabilities that could be targeted to prevent relapse.