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DHODH as a Targetable Metabolic Achilles' Heel for chemo-resistant B-ALL

GSE286115 Homo sapiens Expression profiling by high throughput sequencing 6 samples Submitted 2026/01/12 Platform GPL20301
Summary
Relapse continues to limit survival for patients with B-cell acute lymphoblastic leukemia (B-ALL). Previous studies have independently implicated activation of B-cell developmental signaling pathways and increased glucose consumption with chemo-resistance and relapse risk. Here, we connect these observations, demonstrating that B-ALL cells with active signaling, defined by high expression of phosphorylated ribosomal protein S6 (“pS6+ cells”), are metabolically unique and glucose dependent. Metabolic flux and carbon tracing confirms pS6+ cells to be highly glycolytic and notably sensitive to glucose deprivation, relying on glucose for de novo nucleotide synthesis. Uridine, but not purines or pyrimidines, rescues pS6+ cells from glucose deprivation, demonstrating uridine to be essential for their survival. Active signaling in pS6+ cells drives uridine production through activating phosphorylation of carbamoyl phosphate synthetase (CAD), the enzyme catalyzing the initial steps of uridine synthesis. Inhibition of signaling abolishes glucose dependency and CAD phosphorylation in pS6+ cells. Primary pS6+ cells demonstrate high expression of uridine synthesis proteins, including dihydroorotate dehydrogenase (DHODH), the rate-limiting catalyst of de novo uridine synthesis. Gene expression demonstrates that increased expression of DHODH is associated with relapse and inferior event-free survival after chemotherapy. Further, the majority of B-ALL genomic subtypes demonstrate activity of DHODH. Inhibiting DHODH using BAY2402232 effectively kills pS6+ cells in vitro with its IC50 correlated with the strength of pS6 signaling across 14 B-ALL cell lines and patient-derived xenografts (PDX). In vivo DHODH inhibition prolongs survival and decreases leukemia burden in pS6+ B-ALL cell line and PDX models. These findings link active signaling to uridine dependency in B-ALL cells and associate this with risk of relapse. Targeting uridine synthesis through DHODH inhibition offers a promising therapeutic strategy for chemo-resistant B-ALL as a novel therapeutic approach for relapsed disease.
Published in
DHODH as a targetable metabolic Achilles' heel for chemotherapy-resistant B-ALL
Liu Y, Jiang H, Liu J et al. · Blood 2026 · PMID 41576347 · doi:10.1182/blood.2025029264
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Also filed as BioProject PRJNA1207954 and SRA study SRP556028. Searching any of these in the dataset finder brings you back here.

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