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Nutrient scavenging-fueled growth in pancreatic cancer depends on caveolae-mediated endocytosis under nutrient-deprived conditions.

Adam R WolfeTiantian CuiSooin BaieSergio Corrales-GuerreroAmy WebbVerónica Castro-AceitunoDuan-Liang ShyuJoanna M KarasinskaJames T TophamDaniel J RenoufDavid F SchaefferMegan HalloranRebecca PackardRyan RobbHui-Zi ChenNicholas DenkoMichael LisantiTimothy C ThompsonPhilippe G FrankTerence M Williams
Published in: Science advances (2024)
Pancreatic ductal adenocarcinoma (PDAC) is characterized by its nutrient-scavenging ability, crucial for tumor progression. Here, we investigated the roles of caveolae-mediated endocytosis (CME) in PDAC progression. Analysis of patient data across diverse datasets revealed a strong association of high caveolin-1 (Cav-1) expression with higher histologic grade, the most aggressive PDAC molecular subtypes, and worse clinical outcomes. Cav-1 loss markedly promoted longer overall and tumor-free survival in a genetically engineered mouse model. Cav-1-deficient tumor cell lines exhibited significantly reduced proliferation, particularly under low nutrient conditions. Supplementing cells with albumin rescued the growth of Cav-1-proficient PDAC cells, but not in Cav-1-deficient PDAC cells under low glutamine conditions. In addition, Cav-1 depletion led to significant metabolic defects, including decreased glycolytic and mitochondrial metabolism, and downstream protein translation signaling pathways. These findings highlight the crucial role of Cav-1 and CME in fueling pancreatic tumorigenesis, sustaining tumor growth, and promoting survival through nutrient scavenging.
Keyphrases
  • induced apoptosis
  • signaling pathway
  • free survival
  • cell cycle arrest
  • poor prognosis
  • mouse model
  • oxidative stress
  • epithelial mesenchymal transition
  • deep learning
  • single cell
  • small molecule