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Actionable perturbations of damage responses by TCL1/ATM and epigenetic lesions form the basis of T-PLL

Author

Listed:
  • A. Schrader

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • G. Crispatzu

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • S. Oberbeck

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • P. Mayer

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • S. Pützer

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • J. Jan

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • E. Vasyutina

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • K. Warner

    (University of Cologne (UoC)
    UoC
    Goethe-University)

  • N. Weit

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • N. Pflug

    (University of Cologne (UoC))

  • T. Braun

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

  • E. I. Andersson

    (University of Helsinki and Helsinki University Central Hospital (HUCH))

  • B. Yadav

    (University of Helsinki and Helsinki University Central Hospital (HUCH))

  • A. Riabinska

    (University of Cologne (UoC)
    UoC)

  • B. Maurer

    (Medical University of Vienna)

  • M. S. Ventura Ferreira

    (RWTH Aachen University Medical School)

  • F. Beier

    (RWTH Aachen University Medical School)

  • J. Altmüller

    (University of Cologne (UoC))

  • M. Lanasa

    (Duke University Medical Center)

  • C. D. Herling

    (University of Cologne (UoC)
    UoC)

  • T. Haferlach

    (MLL Munich Leukemia Laboratory)

  • S. Stilgenbauer

    (University Hospital Ulm)

  • G. Hopfinger

    (Medical University of Vienna)

  • M. Peifer

    (UoC)

  • T. H. Brümmendorf

    (RWTH Aachen University Medical School)

  • P. Nürnberg

    (University of Cologne (UoC))

  • K. S. J. Elenitoba-Johnson

    (University of Pennsylvania, Perelman School of Medicine)

  • S. Zha

    (Columbia University Medical Center, Columbia University)

  • M. Hallek

    (University of Cologne (UoC)
    UoC)

  • R. Moriggl

    (Medical University of Vienna)

  • H. C. Reinhardt

    (University of Cologne (UoC)
    UoC)

  • M.-H. Stern

    (PSL Research University)

  • S. Mustjoki

    (University of Helsinki and Helsinki University Central Hospital (HUCH))

  • S. Newrzela

    (Goethe-University)

  • P. Frommolt

    (UoC)

  • M. Herling

    (University of Cologne (UoC)
    UoC
    Center for Molecular Medicine University of Cologne (UoC))

Abstract

T-cell prolymphocytic leukemia (T-PLL) is a rare and poor-prognostic mature T-cell malignancy. Here we integrated large-scale profiling data of alterations in gene expression, allelic copy number (CN), and nucleotide sequences in 111 well-characterized patients. Besides prominent signatures of T-cell activation and prevalent clonal variants, we also identify novel hot-spots for CN variability, fusion molecules, alternative transcripts, and progression-associated dynamics. The overall lesional spectrum of T-PLL is mainly annotated to axes of DNA damage responses, T-cell receptor/cytokine signaling, and histone modulation. We formulate a multi-dimensional model of T-PLL pathogenesis centered around a unique combination of TCL1 overexpression with damaging ATM aberrations as initiating core lesions. The effects imposed by TCL1 cooperate with compromised ATM toward a leukemogenic phenotype of impaired DNA damage processing. Dysfunctional ATM appears inefficient in alleviating elevated redox burdens and telomere attrition and in evoking a p53-dependent apoptotic response to genotoxic insults. As non-genotoxic strategies, synergistic combinations of p53 reactivators and deacetylase inhibitors reinstate such cell death execution.

Suggested Citation

  • A. Schrader & G. Crispatzu & S. Oberbeck & P. Mayer & S. Pützer & J. Jan & E. Vasyutina & K. Warner & N. Weit & N. Pflug & T. Braun & E. I. Andersson & B. Yadav & A. Riabinska & B. Maurer & M. S. Vent, 2018. "Actionable perturbations of damage responses by TCL1/ATM and epigenetic lesions form the basis of T-PLL," Nature Communications, Nature, vol. 9(1), pages 1-22, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-017-02688-6
    DOI: 10.1038/s41467-017-02688-6
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