ArticleCancer research communications2024
De Novo Purine Metabolism is a Metabolic Vulnerability of Cancers with Low p16 Expression.
Article in Cancer research communications, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 8 citations in OpenAlex.
- Integrative machine learning and multi-omics analysis reveals ATIC as a promoter of hepatocellular carcinoma progression.Scientific reports · 2026Article
- Metabolic vulnerabilities in pleural mesothelioma.Oncogenesis · 2026Review
- MTAP loss in gastrointestinal cancers is associated with CDKN2A deletion, poor prognosis in gastric carcinoma, and potential relevance for PRMT5-targeted therapy.Scientific reports · 2026Article
- Secondary Genetic Events and Their Relationship toCancers · 2025Article
- ATR promotes mTORC1 activity via de novo cholesterol synthesis.EMBO reports · 2025Article
- Senolytic effects of a modified Gingerenone A.npj aging · 2025Article
- Therapeutic targeting de novo purine biosynthesis driven by β-catenin-dependent PPAT upregulation in hepatoblastoma.Cell death & disease · 2025Article
- Microbial metabolites and their influence on the tumor microenvironment.Frontiers in immunology · 2025Review
- Lactylation-driven molecular taxonomy of melanoma: linking epigenetic modifications to immune evasion and clinical outcomes.American journal of cancer research · 2025Article
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Authors and funding
19 authors at 3 institutions in 2 countries.
Funding
Abstract
p16 is a tumor suppressor encoded by the CDKN2A gene whose expression is lost in approximately 50% of all human cancers. In its canonical role, p16 inhibits the G1-S-phase cell cycle progression through suppression of cyclin-dependent kinases. Interestingly, p16 also has roles in metabolic reprogramming, and we previously published that loss of p16 promotes nucleotide synthesis via the pentose phosphate pathway. However, the broader impact of p16/CDKN2A loss on other nucleotide metabolic pathways and potential therapeutic targets remains unexplored. Using CRISPR knockout libraries in isogenic human and mouse melanoma cell lines, we determined several nucleotide metabolism genes essential for the survival of cells with loss of p16/CDKN2A. Consistently, many of these genes are upregulated in melanoma cells with p16 knockdown or endogenously low CDKN2A expression. We determined that cells with low p16/CDKN2A expression are sensitive to multiple inhibitors of de novo purine synthesis, including antifolates. Finally, tumors with p16 knockdown were more sensitive to the antifolate methotrexate in vivo than control tumors. Together, our data provide evidence to reevaluate the utility of these drugs in patients with p16/CDKN2Alow tumors as loss of p16/CDKN2A may provide a therapeutic window for these agents. SIGNIFICANCE: Antimetabolites were the first chemotherapies, yet many have failed in the clinic due to toxicity and poor patient selection. Our data suggest that p16 loss provides a therapeutic window to kill cancer cells with widely-used antifolates with relatively little toxicity.
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