4.8 Article

MUC1 mucin stabilizes and activates hypoxia-inducible factor 1 alpha to regulate metabolism in pancreatic cancer

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1203339109

关键词

cancer metabolism; glutamine accumulation; pentose phosphate pathway; 2-ketoglutarate

资金

  1. Specialized Programs for Research Excellence [SPORE
  2. National Cancer Institute (NCI)] in Gastrointestinal/Pancreatic Cancer Grant [P50 CA127297]
  3. NCI SPORE Career Development Award [P50 CA127297]
  4. NCI SPORE Developmental Research Project Award [P50 CA127297]
  5. NCI [R01 CA163649, R01 CA057362, R21 CA137401]
  6. National Institute of General Medical Sciences (NIGMS) Centers of Biomedical Research Excellence (CoBRE) [P20 GM103489]
  7. NCI Early Diagnosis of Pancreatic Cancer Grant [U01 CA111294]
  8. National Institutes of Health National Center for Research Resources [P20 RR-17675]
  9. NCI Pancreatic Tumor Microenvironment Research Network [U54 CA163120]
  10. Gretchen Swanson Center for Nutrition (GSCN) Cancer Prevention and Control nutrition Seed Grant [15618]

向作者/读者索取更多资源

Aberrant glucose metabolism is one of the hallmarks of cancer that facilitates cancer cell survival and proliferation. Here, we demonstrate that MUC1, a large, type I transmembrane protein that is overexpressed in several carcinomas including pancreatic adenocarcinoma, modulates cancer cell metabolism to facilitate growth properties of cancer cells. MUC1 occupies the promoter elements of multiple genes directly involved in glucose metabolism and regulates their expression. Furthermore, MUC1 expression enhances glycolytic activity in pancreatic cancer cells. We also demonstrate that MUC1 expression enhances in vivo glucose uptake and expression of genes involved in glucose uptake and metabolism in orthotopic implantation models of pancreatic cancer. The MUC1 cytoplasmic tail is known to activate multiple signaling pathways through its interactions with several transcription factors/coregulators at the promoter elements of various genes. Our results indicate that MUC1 acts as a modulator of the hypoxic response in pancreatic cancer cells by regulating the expression/stability and activity of hypoxia-inducible factor-1 alpha (HIF-1 alpha). MUC1 physically interacts with HIF-1 alpha and p300 and stabilizes the former at the protein level. By using a ChIP assay, we demonstrate that MUC1 facilitates recruitment of HIF-1 alpha and p300 on glycolytic gene promoters in a hypoxia-dependent manner. Also, by metabolomic studies, we demonstrate that MUC1 regulates multiple metabolite intermediates in the glucose and amino acid metabolic pathways. Thus, our studies indicate that MUC1 acts as a master regulator of the metabolic program and facilitates metabolic alterations in the hypoxic environments that help tumor cells survive and proliferate under such conditions.

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