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February 2, 2026Blood Advances0 citationsOpen Access

Synthetic lethality of decitabine plus ATR inhibition for TP53-mutated AML

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JBJeremy T. BaetenSASumedha AgasheITImène Tabet

Key Points

  • To investigate the effects of decitabine and ATR inhibition on TP53-mutated acute myeloid leukemia (AML).
  • Evaluated the impact of decitabine on replication fork progression and ATR pathway activation.
  • Assessed the effect of combining decitabine with ATR inhibitors in TP53-mutated AML cell lines.
  • Conducted in vivo experiments in mouse models of TP53-mutated AML.
  • Decitabine impairs replication fork progression and induces ATR pathway activation.
  • The combination of decitabine and ATR inhibition induces synthetic lethality specifically in TP53-mutated AML cells.
  • In vivo treatment reduces leukemia burden and prolongs survival in mouse models.

Abstract

TP53 mutations are found in 10-15% of myeloid neoplasms and are associated with a dismal prognosis. Although hypomethylating agents, such as decitabine, are active in TP53-mutated myeloid neoplasms (TP53-MN), mutation clearance is rarely complete and nearly all patients relapse. Molecular determinants of response to hypomethylating agents in TP53-MN are poorly understood. Here, we show that decitabine induces replicative stress with decreased replication fork progression, induction of single-strand DNA breaks, and activation of the ATR pathway. Resolution of decitabine-induced replication stress is impaired in TP53-mutated acute myeloid leukemia (AML) cells, representing a potential therapeutic vulnerability. Indeed, the combination of decitabine and ATR inhibition (ATRi) induces synthetic lethality that is selective for TP53-AML and due, in part, to induction of mitotic catastrophe. Interestingly, this synergistic lethality was not observed with azacitidine or treatment with GSK3685032, a potent DNMT1 inhibitor, both of which produce a comparable level of global hypomethylation to decitabine. Treatment with decitabine and ATR inhibitor reduces leukemia burden and prolongs survival in in vivo mouse models of TP53-mutated AML. Collectively, these show that TP53 loss generates a selective vulnerability to decitabine-induced replication stress, with the combination of ATR inhibition and decitabine showing promise as a new therapeutic approach for TP53-MN.

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Cite This Study

Baeten et al. (2026) studied this question.

synapsesocial.com/papers/6980fd3cc1c9540dea80f050https://doi.org/10.1182/bloodadvances.2025018369
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