4.8 Article

Antitumor immunity augments the therapeutic effects of p53 activation on acute myeloid leukemia

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-12555-1

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资金

  1. Daiichi Sankyo
  2. SENSHIN Medical Research Foundation
  3. SGH Cancer Research
  4. Leukemia Research Fund
  5. St. Baldrick's Foundation Scholar Award
  6. NIH/NCI [R50CA211404]
  7. [16K15499]

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The negative regulator of p53, MDM2, is frequently overexpressed in acute myeloid leukemia (AML) that retains wild-type TP53 alleles. Targeting of p53-MDM2 interaction to reactivate p53 function is therefore an attractive therapeutic approach for AML. Here we show that an orally active inhibitor of p53-MDM2 interaction, DS-5272, causes dramatic tumor regressions of MLL-AF9-driven AML in vivo with a tolerable toxicity. However, the antileukemia effect of DS-5272 is markedly attenuated in immunodeficient mice, indicating the critical impact of systemic immune responses that drive p53-mediated leukemia suppression. In relation to this, DS-5272 triggers immune-inflammatory responses in MLL-AF9 cells including upregulation of Hif1 alpha and PD-L1, and inhibition of the Hif1 alpha-PD-L1 axis sensitizes AML cells to p53 activation. We also found that NK cells are important mediators of antileukemia immunity. Our study showed the potent activity of a p53-activating drug against AML, which is further augmented by antitumor immunity.

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