Evidence for direct involvement of epirubicin in the formation of chromosomal translocations in t(15;17) therapy-related acute promyelocytic leukemia

Author:

Mays Ashley N.1,Osheroff Neil2,Xiao Yuanyuan3,Wiemels Joseph L.3,Felix Carolyn A.4,Byl Jo Ann W.2,Saravanamuttu Kandeepan5,Peniket Andrew6,Corser Robert7,Chang Cherry8,Hoyle Christine9,Parker Anne N.10,Hasan Syed K.1112,Lo-Coco Francesco1112,Solomon Ellen1,Grimwade David1

Affiliation:

1. Department of Medical & Molecular Genetics, King's College London School of Medicine, London, United Kingdom;

2. Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, TN;

3. Department of Epidemiology and Biostatistics, University of California San Francisco;

4. Department of Pediatrics, University of Pennsylvania, Division of Oncology, The Children's Hospital of Philadelphia, PA;

5. Department of Haematology, Lincoln County Hospital, Lincoln, United Kingdom;

6. Department of Haematology, John Radcliffe Hospital, Oxford, United Kingdom;

7. Department of Haematology, Queen Alexandra Hospital, Portsmouth, United Kingdom;

8. Department of Haematology, Royal Derby Hospital, Derby, United Kingdom;

9. Department of Haematology, Glan Clwyd Hospital, Rhyl, United Kingdom;

10. The Beatson Institute, West of Scotland Cancer Centre, Glasgow, United Kingdom;

11. Department of Biopathology, University of Tor Vergata, Rome, Italy; and

12. Laboratorio di Neuro-Oncoematologia, Fondazione Santa Lucia, Rome, Italy

Abstract

Abstract Therapy-related acute promyelocytic leukemia (t-APL) with t(15;17)(q22;q21) involving the PML and RARA genes is associated with exposure to agents targeting topoisomerase II (topoII), particularly mitoxantrone and epirubicin. We previously have shown that mitoxantrone preferentially induces topoII-mediated DNA damage in a “hotspot region” within PML intron 6. To investigate mechanisms underlying epirubicin-associated t-APL, t(15;17) genomic breakpoints were characterized in 6 cases with prior breast cancer. Significant breakpoint clustering was observed in PML and RARA loci (P = .009 and P = .017, respectively), with PML breakpoints lying outside the mitoxantrone-associated hotspot region. Recurrent breakpoints identified in the PML and RARA loci in epirubicin-related t-APL were shown to be preferential sites of topoII-induced DNA damage, enhanced by epirubicin. Although site preferences for DNA damage differed between mitoxantrone and epirubicin, the observation that particular regions of the PML and RARA loci are susceptible to these agents may underlie their respective propensities to induce t-APL.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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