The glycan CA19-9 promotes pancreatitis and pancreatic cancer in mice Journal Article


Authors: Engle, D. D.; Tiriac, H.; Rivera, K. D.; Pommier, A.; Whalen, S.; Oni, T. E.; Alagesan, B.; Lee, E. J.; Yao, M. A.; Lucito, M. S.; Spielman, B.; Da Silva, B.; Schoepfer, C.; Wright, K.; Creighton, B.; Afinowicz, L.; Yu, K. H.; Grützmann, R.; Aust, D.; Gimotty, P. A.; Pollard, K. S.; Hruban, R. H.; Goggins, M. G.; Pilarsky, C.; Park, Y.; Pappin, D. J.; Hollingsworth, M. A.; Tuveson, D. A.
Article Title: The glycan CA19-9 promotes pancreatitis and pancreatic cancer in mice
Abstract: Glycosylation alterations are indicative of tissue inflammation and neoplasia, but whether these alterations contribute to disease pathogenesis is largely unknown. To study the role of glycan changes in pancreatic disease, we inducibly expressed human fucosyltransferase 3 and b1,3-galactosyltransferase 5 in mice, reconstituting the glycan sialyl-Lewisa, also known as carbohydrate antigen 19-9 (CA19-9). Notably, CA19-9 expression in mice resulted in rapid and severe pancreatitis with hyperactivation of epidermal growth factor receptor (EGFR) signaling. Mechanistically, CA19-9 modification of the matricellular protein fibulin-3 increased its interaction with EGFR, and blockade of fibulin-3, EGFR ligands, or CA19-9 prevented EGFR hyperactivation in organoids. CA19-9–mediated pancreatitis was reversible and could be suppressed with CA19-9 antibodies. CA19-9 also cooperated with the KrasG12D oncogene to produce aggressive pancreatic cancer. These findings implicate CA19-9 in the etiology of pancreatitis and pancreatic cancer and nominate CA19-9 as a therapeutic target. © 2019 American Association for the Advancement of Science. All rights reserved.
Keywords: mus
Journal Title: Science
Volume: 364
Issue: 6446
ISSN: 0036-8075
Publisher: American Association for the Advancement of Science  
Date Published: 2019-06-21
Start Page: 1156
End Page: 1162
Language: English
DOI: 10.1126/science.aaw3145
PUBMED: 31221853
PROVIDER: scopus
PMCID: PMC6705393
DOI/URL:
Notes: Article -- Source: Scopus
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  1. Kenneth Ho-Ming Yu
    163 Yu