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Clonal hematopoiesis driven by chromosome 1q/MDM4 trisomy defines a canonical route toward leukemia in Fanconi anemia. | LitMetric

Clonal hematopoiesis driven by chromosome 1q/MDM4 trisomy defines a canonical route toward leukemia in Fanconi anemia.

Cell Stem Cell

Institut de Recherche Saint-Louis (IRSL), Université Paris Cité, 75010 Paris, France; INSERM U944/CNRS UMR7212, Paris, France; Saint-Louis Hospital, Hematology Laboratory, APHP, Paris, France; Centre de Référence Maladies Rares "Aplasie Médullaire", Saint-Louis and Robert Debré Hospitals, Paris, France. Electronic address:

Published: February 2023

AI Article Synopsis

  • Patients with Fanconi anemia (FA) show chromosome instability, leading to exhaustion of hematopoietic stem cells and a higher risk of developing poor-prognosis myeloid leukemia.
  • A study involving 62 patients revealed unique mutations and structural variants that resemble BRCA-related cancers, with many patients showing chromosome 1q gain linked to MDM4 trisomy, which downregulates p53 signaling.
  • MDM4 triplication not only enhances the survival of FA stem cells but also promotes leukemia development, suggesting that targeting MDM4 could be a potential therapeutic strategy to disrupt this pathway.

Article Abstract

Fanconi anemia (FA) patients experience chromosome instability, yielding hematopoietic stem/progenitor cell (HSPC) exhaustion and predisposition to poor-prognosis myeloid leukemia. Based on a longitudinal cohort of 335 patients, we performed clinical, genomic, and functional studies in 62 patients with clonal evolution. We found a unique pattern of somatic structural variants and mutations that shares features of BRCA-related cancers, the FA-hallmark being unbalanced, microhomology-mediated translocations driving copy-number alterations. Half the patients developed chromosome 1q gain, driving clonal hematopoiesis through MDM4 trisomy downmodulating p53 signaling later followed by secondary acute myeloid lukemia genomic alterations. Functionally, MDM4 triplication conferred greater fitness to murine and human primary FA HSPCs, rescued inflammation-mediated bone marrow failure, and drove clonal dominance in FA mouse models, while targeting MDM4 impaired leukemia cells in vitro and in vivo. Our results identify a linear route toward secondary leukemogenesis whereby early MDM4-driven downregulation of basal p53 activation plays a pivotal role, opening monitoring and therapeutic prospects.

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Source
http://dx.doi.org/10.1016/j.stem.2023.01.006DOI Listing

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