Therapy induced senescence promotes immunogenicity in acute myeloid Leukemia through reduced EZH2 activity

Autor/innen

  • Diego Gilioli
  • Simona Fusco
  • Teresa Tavella
  • Tatiana Volpari
  • Antonella Santoro
  • Martin Schönlein
  • Kety Giannetti
  • Edoardo Carsana
  • Nicolò Gualandi
  • Roberta Noberini
  • Chiara Brombin
  • Salvatore Russo
  • Sara Feola
  • Yvonne Giannoula
  • Rui M M Branca
  • Janne Lehtiö
  • Tiina M Sikanen
  • Markus Haapala
  • Laura Passerini
  • Angela Andrisani
  • Giacomo Farina
  • Alessia Zangari
  • Anastasia Conti
  • Lucrezia Della Volpe
  • Matteo Barcella
  • Stefano Beretta
  • Federico Mario Aletti
  • Matteo Giovanni Carrabba
  • Silvia Gregori
  • Chiara Bonini
  • Ivan Merelli
  • Fabio Ciceri
  • Vincenzo Cerullo
  • Tiziana Bonaldi
  • Luca Vago
  • Clemens A. Schmitt
  • Raffaella Di Micco

Journal

  • Nature Communications

Quellenangabe

  • Nat Commun 17 (1): 9151

Zusammenfassung

  • Chemotherapy resistance and disease relapse are major determinants of treatment failure in acute myeloid leukemia (AML). Therapy-induced senescence (TIS) is one outcome of chemotherapy, but its immunological consequences in AML remain unclear. Here we show that ex vivo chemotherapy induces senescence in a subset of therapy-naïve AML samples. TIS is marked by elevated interferon signaling, upregulation of human leukocyte antigen (HLA) class I and II molecules, and increased presentation of leukemia- and senescence-associated peptides, conferring AML cells antigen-presenting cell-like features. These changes enhance autologous CD4(+) and CD8(+) T cell responses against AML, both ex vivo and in patient-derived xenograft models. TIS also restores AML sensitivity to immune checkpoint blockade therapy. Mechanistically, we identify reduced Polycomb Repressive Complex 2 (PRC2) activity as central to TIS induction and its immunogenicity. PRC2 inhibition reactivates senescence-related genes and HLA expression in non-senescent AML cells, enabling T cell activation. These findings uncover a senescence-driven immune mechanism with potential to improve therapy outcomes in AML.


DOI

doi:10.1038/s41467-026-76853-1