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Epigenetic heterogeneity affects the risk of relapse in children with t(8;21)RUNX1-RUNX1T1-rearranged AML

  • Matteo Zampini
  • , Claudia Tregnago
  • , Valeria Bisio
  • , Luca Simula
  • , Giulia Borella
  • , Elena Manara
  • , Carlo Zanon
  • , Francesca Zonta
  • , Valentina Serafin
  • , Benedetta Accordi
  • , Silvia Campello
  • , Barbara Buldini
  • , Andrea Pession
  • , Franco Locatelli
  • , Giuseppe Basso
  • , Martina Pigazzi
  • Fondazione Istituto di Ricerca Pediatrica Cittàa della Speranza
  • University of Padua
  • University of Rome Tor Vergata
  • Alma Mater Studiorum University of Bologna

Risultato della ricerca: Contributo in rivistaArticolo

Abstract

The somatic translocation t(8;21)(q22;q22)/RUNX1-RUNX1T1 is one of the most frequent rearrangements found in children with standard-risk acute myeloid leukemia (AML). Despite the favorable prognostic role of this aberration, we recently observed a higher than expected frequency of relapse. Here, we employed an integrated high-throughput approach aimed at identifying new biological features predicting relapse among 34 t(8;21)-rearranged patients. We found that the DNA methylation status of patients who suffered from relapse was peculiarly different from that of children maintaining complete remission. The epigenetic signature, made up of 337 differentially methylated regions, was then integrated with gene and protein expression profiles, leading to a network, where cell-to-cell adhesion and cell-motility pathways were found to be aberrantly activated in relapsed patients. We identified most of these factors as RUNX1-RUNX1T1 targets, with Ras Homolog Family Member (RHOB) overexpression being the core of this network. We documented how RHOB re-organized the actin cytoskeleton through its downstream ROCK-LIMK-COFILIN axis: this increases blast adhesion by stress fiber formation, and reduces mitochondrial apoptotic cell death after chemotherapy treatment. Altogether, our data show an epigenetic heterogeneity within t(8;21)-rearranged AML patients at diagnosis able to influence the program of the chimeric transcript, promoting blast re-emergence and progression to relapse.
Lingua originaleInglese
pagine (da-a)1124-1134
Numero di pagine11
RivistaLeukemia
Volume32
DOI
Stato di pubblicazionePubblicato - 2018

Keywords

  • AML

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