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Dual origin of relapses in retinoic-acid resistant acute promyelocytic leukemia

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  • Jacqueline Lehmann-Che

    (Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Hôpital St Louis)

  • Cécile Bally

    (Institut Universitaire d’Hématologie (IUH)
    Service d’Hématologie Senior Hôpital St. Louis)

  • Eric Letouzé

    (Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Faculté de Médecine
    UFR Santé, Médecine, Biologie Humaine)

  • Caroline Berthier

    (Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    PSL Research University)

  • Hao Yuan

    (Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH))

  • Florence Jollivet

    (Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH))

  • Lionel Ades

    (Institut Universitaire d’Hématologie (IUH)
    Service d’Hématologie Senior Hôpital St. Louis)

  • Bruno Cassinat

    (Institut Universitaire d’Hématologie (IUH) and APHP, Laboratoire de Biologie Cellulaire, Hopital Saint-Louis)

  • Pierre Hirsch

    (Inserm Centre de Recherche Saint-Antoine CRSA, APHP, Hôpital Saint Antoine
    Service d’Hématologie biologique, Hôpital Saint Antoine)

  • Arnaud Pigneux

    (Service d’Hématologie Clinique)

  • Marie-Joelle Mozziconacci

    (Service d’Hématologie biologique)

  • Scott Kogan

    (University of California, San Francisco (UCSF))

  • Pierre Fenaux

    (Institut Universitaire d’Hématologie (IUH)
    Service d’Hématologie Senior Hôpital St. Louis)

  • Hugues Thé

    (Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Institut Universitaire d’Hématologie (IUH)
    Hôpital St Louis)

Abstract

Retinoic acid (RA) and arsenic target the t(15;17)(q24;q21) PML/RARA driver of acute promyelocytic leukemia (APL), their combination now curing over 95% patients. We report exome sequencing of 64 matched samples collected from patients at initial diagnosis, during remission, and following relapse after historical combined RA-chemotherapy treatments. A first subgroup presents a high incidence of additional oncogenic mutations disrupting key epigenetic or transcriptional regulators (primarily WT1) or activating MAPK signaling at diagnosis. Relapses retain these cooperating oncogenes and exhibit additional oncogenic alterations and/or mutations impeding therapy response (RARA, NT5C2). The second group primarily exhibits FLT3 activation at diagnosis, which is lost upon relapse together with most other passenger mutations, implying that these relapses derive from ancestral pre-leukemic PML/RARA-expressing cells that survived RA/chemotherapy. Accordingly, clonogenic activity of PML/RARA-immortalized progenitors ex vivo is only transiently affected by RA, but selectively abrogated by arsenic. Our studies stress the role of cooperating oncogenes in direct relapses and suggest that targeting pre-leukemic cells by arsenic contributes to its clinical efficacy.

Suggested Citation

  • Jacqueline Lehmann-Che & Cécile Bally & Eric Letouzé & Caroline Berthier & Hao Yuan & Florence Jollivet & Lionel Ades & Bruno Cassinat & Pierre Hirsch & Arnaud Pigneux & Marie-Joelle Mozziconacci & Sc, 2018. "Dual origin of relapses in retinoic-acid resistant acute promyelocytic leukemia," Nature Communications, Nature, vol. 9(1), pages 1-8, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-04384-5
    DOI: 10.1038/s41467-018-04384-5
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