Nutrient profiling reveals extracellular uridine as a fuel for pancreatic cancer through uridine phosphorylase 1

التفاصيل البيبلوغرافية
العنوان: Nutrient profiling reveals extracellular uridine as a fuel for pancreatic cancer through uridine phosphorylase 1
المؤلفون: Marina Pasca di Magliano, Christopher J. Halbrook, Chanthirika Ragulan, Anguraj Sadanandam, Gift Nyamundanda, Li Zhang, Eileen S. Carpenter, Anthony Andren, Costas A. Lyssiotis, Matthew H. Ward, Steven Kasperek, Zeribe C. Nwosu, Rosa E. Menjivar, Zach Tolstyka, Pawan Poudel
بيانات النشر: Cold Spring Harbor Laboratory, 2021.
سنة النشر: 2021
مصطلحات موضوعية: Chemistry, Metabolite, education, Metabolism, medicine.disease, Uridine, chemistry.chemical_compound, Biochemistry, Cell culture, Pancreatic cancer, medicine, Extracellular, Glycolysis, Uridine phosphorylase 1
الوصف: Pancreatic ductal adenocarcinoma (PDA) is a lethal disease characterized by high invasiveness, therapeutic resistance, and metabolic aberrations. Although altered metabolism drives PDA growth and survival, the complete spectrum of metabolites used as nutrients by PDA remains largely unknown. Here, we aimed to determine novel nutrients utilized by PDA. We assessed how >175 metabolites impacted metabolic activity in 19 PDA cell lines under nutrient-restricted conditions. This analysis identified uridine as a novel metabolite driver of PDA survival in glucose-deprived conditions. Uridine utilization strongly correlated with expression of the enzyme uridine phosphorylase 1 (UPP1). Metabolomics profiling, notably13C-stable isotope tracing, revealed that uridine-derived ribose is the relevant component supporting redox balance, survival, and proliferation in glucose-deprived PDA cells. We demonstrate that UPP1 catabolizes uridine, shunting its ribose component into central carbon metabolism to support glycolysis, the tricarboxylic acid (TCA) cycle and nucleotide biosynthesis. Compared to non-tumoral tissues, we show that PDA tumors express highUPP1, which correlated with poor overall survival in multiple patient cohorts. Further, uridine is enriched in the pancreatic tumor microenvironment, and we demonstrate that this may be provided in part by tumor associated macrophages. Finally, we found that inhibition ofUPP1restricted the ability of PDA cells to use uridine, and thatUPP1knockout impairs tumor growthin vivo. Our data identifies uridine catabolism as a critical aspect of compensatory metabolism in nutrient-deprived PDA cells, suggesting a novel metabolic axis for PDA therapy.
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::c0b4ce56bccda25f9c66aa5cbb6c4ff9
https://doi.org/10.1101/2021.06.07.447448
حقوق: OPEN
رقم الأكسشن: edsair.doi...........c0b4ce56bccda25f9c66aa5cbb6c4ff9
قاعدة البيانات: OpenAIRE