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Publication : Oncogenic β-catenin and PIK3CA instruct network states and cancer phenotypes in intestinal organoids.

First Author  Riemer P Year  2017
Journal  J Cell Biol Volume  216
Issue  6 Pages  1567-1577
PubMed ID  28442534 Mgi Jnum  J:246966
Mgi Id  MGI:5925182 Doi  10.1083/jcb.201610058
Citation  Riemer P, et al. (2017) Oncogenic beta-catenin and PIK3CA instruct network states and cancer phenotypes in intestinal organoids. J Cell Biol 216(6):1567-1577
abstractText  Colorectal cancer is driven by cooperating oncogenic mutations. In this study, we use organotypic cultures derived from transgenic mice inducibly expressing oncogenic beta-catenin and/or PIK3CAH1047R to follow sequential changes in cancer-related signaling networks, intestinal cell metabolism, and physiology in a three-dimensional environment mimicking tissue architecture. Activation of beta-catenin alone results in the formation of highly clonogenic cells that are nonmotile and prone to undergo apoptosis. In contrast, coexpression of stabilized beta-catenin and PIK3CAH1047R gives rise to intestinal cells that are apoptosis-resistant, proliferative, stem cell-like, and motile. Systematic inhibitor treatments of organoids followed by quantitative phenotyping and phosphoprotein analyses uncover key changes in the signaling network topology of intestinal cells after induction of stabilized beta-catenin and PIK3CAH1047R We find that survival and motility of organoid cells are associated with 4EBP1 and AKT phosphorylation, respectively. Our work defines phenotypes, signaling network states, and vulnerabilities of transgenic intestinal organoids as a novel approach to understanding oncogene activities and guiding the development of targeted therapies.
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