ArticleThe Journal of clinical investigation2025
Targeting MTAP increases PARP inhibitor susceptibility in triple-negative breast cancer through a feed-forward loop.
Article in The Journal of clinical investigation, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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Who cites it
5 citing papers in PubMed.
- Inactivation of PRMT5 by PARP Inhibitors Confers High Susceptibility in MTAP-Deficient Cancers.Cancers · 2026Article
- PARP inhibitors and breast cancer: from therapeutic breakthrough to resistance challenge.Experimental & molecular medicine · 2026Review
- Mutational Landscape Analysis of BRCA1/2 and Identification of Extracellular-Vesicle-Related Biomarkers in Triple-Negative Breast Cancer.Biomedicines · 2026Article
- Glioblastoma zebrafish Avatars guide therapeutic decisions in a patient with gliosarcoma: a case report.Communications medicine · 2025Article
- A triple-punch approach: methionine restriction enhances combination inhibitors in brain metastatic triple-negative breast cancer.The Journal of clinical investigation · 2025Article
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Authors and funding
15 authors.
Funding
Abstract
Triple-negative breast cancer (TNBC) represents the most malignant subtype of breast cancer. The clinical application of PARP inhibitors (PARPi) is limited by the low frequency of BRCA1/2 mutations in TNBC. Here, we identified that MTAP deletion sensitized genotoxic agents in our clinical cohort of metastatic TNBC. Further study demonstrated that MTAP deficiency or inhibition rendered TNBC susceptibility to chemotherapeutic agents, particularly PARPi. Mechanistically, targeting MTAP that synergized with PARPi by disrupting the METTL16-MAT2A axis involved in methionine metabolism and depleting in vivo s-adenosylmethionine (SAM) levels. Exhausted SAM in turn impaired PARPi-induced DNA damage repair through attenuation of MRE11 recruitment and end resection by diminishing MRE11 methylation. Notably, brain metastatic TNBC markedly benefited from a lower dose of PARPi and MTAP deficiency/inhibition synergy due to the inherently limited methionine environment in the brain. Collectively, our findings revealed a feed-forward loop between methionine metabolism and DNA repair through SAM, highlighting a therapeutic strategy of PARPi combined with MTAP deficiency/inhibition for TNBC.
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Registered trials
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