Decitabine- and 5-azacytidine resistance emerges from adaptive responses of the pyrimidine metabolism network.
Xiaorong GuRita TohmeBenjamin TomlinsonNneha SakreMetis HasipekLisa DurkinCaroline SchuergerDale GrabowskiAsmaa M ZidanTomas RadivoyevitchChangjin HongHetty CarrawayBetty HamiltonRonald SobecksBhumika PatelBabal Kant JhaEric D HsiJaroslaw MaciejewskiYogen SaunthararajahPublished in: Leukemia (2020)
Mechanisms-of-resistance to decitabine and 5-azacytidine, mainstay treatments for myeloid malignancies, require investigation and countermeasures. Both are nucleoside analog pro-drugs processed by pyrimidine metabolism into a deoxynucleotide analog that depletes the key epigenetic regulator DNA methyltranseferase 1 (DNMT1). Here, upon serial analyses of DNMT1 levels in patients' bone marrows on-therapy, we found DNMT1 was not depleted at relapse. Showing why, bone marrows at relapse exhibited shifts in expression of key pyrimidine metabolism enzymes in directions adverse to pro-drug activation. Further investigation revealed the origin of these shifts. Pyrimidine metabolism is a network that senses and regulates deoxynucleotide amounts. Deoxynucleotide amounts were disturbed by single exposures to decitabine or 5-azacytidine, via off-target depletion of thymidylate synthase and ribonucleotide reductase respectively. Compensating pyrimidine metabolism shifts peaked 72-96 h later. Continuous pro-drug exposures stabilized these adaptive metabolic responses to thereby prevent DNMT1-depletion and permit exponential leukemia out-growth as soon as day 40. The consistency of the acute metabolic responses enabled exploitation: simple treatment modifications in xenotransplant models of chemorefractory leukemia extended noncytotoxic DNMT1-depletion and leukemia control by several months. In sum, resistance to decitabine and 5-azacytidine originates from adaptive responses of the pyrimidine metabolism network; these responses can be anticipated and thus exploited.
Keyphrases
- acute myeloid leukemia
- dna methylation
- bone marrow
- gene expression
- anti inflammatory
- drug induced
- stem cells
- bone mineral density
- poor prognosis
- emergency department
- liver failure
- dendritic cells
- air pollution
- immune response
- single cell
- cell therapy
- long non coding rna
- single molecule
- network analysis
- circulating tumor
- circulating tumor cells
- electronic health record