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UMP functions as an endogenous regulator of NR4A1 to control gastric cancer progression [ChIP-Seq]

GSE276305 Homo sapiens Genome binding/occupancy profiling by high throughput sequencing 6 samples Submitted 2025/11/07 Platform GPL30209
Summary
Nucleotide metabolism reprogramming drives tumor progression, yet how tumor cells sense nucleotide levels remain unclear. Here we identified UMP as an endogenous regulator of the orphan nuclear receptor NR4A1 in gastric cancer (GCa). Under UMP-sufficiency, UMP directly binds to NR4A1, inhibiting its tumor-suppressive function and promoting GCa progression. Conversely, UMP deficiency resulting from disrupted pyrimidine biosynthesis derepresses NR4A1, which suppresses GCa cell survival and progression by both increasing NR4A1 occupancy at super‑enhancers to reprogram survival‑gene expression and enhancing NR4A1’s pro‑apoptotic activity at the mitochondria. NR4A1 loss was sufficient to rescue the effects of pyrimidine nucleotide stress on GCa cells in vitro and in vivo. NR4A1 agonists suppressed the pyrimidine salvage pathway triggered by de novo pyrimidine biosynthesis (DNPB) inhibition. Co-targeting DNPB and NR4A1 induced synergistic tumor lethality in GCa xenograft models. Together, our results establish UMP as an endogenous regulator of NR4A1 and provide an effective therapeutic strategy for GCa.
Published in
UMP functions as an endogenous regulator of NR4A1 to control gastric cancer progression
Cai G, Zhang Z, Zhong L et al. · Molecular cell 2025 · PMID 41270758 · doi:10.1016/j.molcel.2025.10.030
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Also filed as BioProject PRJNA1156601 and SRA study SRP530432. Searching any of these in the dataset finder brings you back here.

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