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Updated: Feb 4, 2026

Assessment of de novo Protein Synthesis Rates in Caenorhabditis elegans
Published on: September 12, 2020
Pyrimethamine overcomes resistance to hypomethylating agents by reducing de novo pyrimidine synthesis
Bianca Rivera-Peña1, Samarpana Chakraborty1, Yang Shi2
1Department of Oncology, Montefiore Einstein Comprehensive Cancer Center, Bronx, NY.
Abstract:
The DNA hypomethylating agents (HMAs) 5-azacitidine and decitabine are the backbone of disease modifying therapy in myelodysplastic syndromes (MDS). Resistance to therapy often develops by upregulation of de novo pyrimidine synthesis, which competes directly with the DNMT1-depleting nucleotide Aza-dCTP by building natural cytidines and deoxycytidines from amino acid building blocks. Inhibition of de novo pyrimidine synthesis can restore sensitivity of leukemic stem cells to therapy. Here we demonstrate that pyrimethamine (PYR), a Food and Drug Administration-approved antiparasitic, antifolate agent causes apoptosis in multiple leukemic cell lines, has synergy with venetoclax (Ven) and additive effect with HMA's in HMA and Ven-resistant leukemic cell lines as well as murine models. It increases differentiation of stem and progenitor populations in primary samples of patients with MDS and is able to directly inhibit de novo pyrimidine synthesis thereby overcoming one of the primary mechanisms of HMA resistance. In combination with Ven, it also downregulates multiple enzymes implicated in pyrimidine synthesis.
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