Disruption of EGF feedback by intestinal tumors and neighboring cells in Drosophila
Ngo, S.; Liang, J.; Su, Y.-H.; O'Brien, L. E.
Show abstract
SummaryIn healthy adult organs, robust feedback mechanisms control cell turnover to enforce homeostatic equilibrium between cell division and death [1, 2]. Nascent tumors must subvert these mechanisms to achieve cancerous overgrowth [3-7]. Elucidating the nature of this subversion can reveal how cancers become established and may suggest strategies to prevent tumor progression. In adult Drosophila intestine, a well-studied model of homeostatic cell turnover, the linchpin of cell equilibrium is feedback control of the EGF protease Rhomboid (Rho). Expression of Rho in apoptotic cells enables them to secrete EGFs, which stimulate nearby stem cells to undergo replacement divisions [8]. As in mammals, loss of adenomatous polyposis coli (APC) causes Drosophila intestinal stem cells to form adenomas [9]. Here we demonstrate that Drosophila APC-/- tumors trigger widespread Rho expression in non-apoptotic cells, resulting in chronic EGF signaling. Initially, nascent APC-/- tumors induce rho in neighbor wild-type cells via acute, non-autonomous activation of JNK. During later growth and multilayering, APC-/- tumors induce rho in tumor cells by autonomous downregulation of E-cadherin (E-cad) and consequent activity of p120-catenin. This sequential dysregulation of tumor non-autonomous and -autonomous EGF signaling converts tissue-level feedback into feed-forward activation that drives cancerous overgrowth. Since Rho, EGFR, and E-cad are associated with colorectal cancer in humans [10-17], our findings may shed light on how human colorectal tumors progress.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Independent regulation of mtDNA quantity and quality resets the mitochondrial genome in C. elegans primordial germ cells 96%
- Mother cells control daughter cell proliferation in intestinal organoids to minimize proliferation fluctuations 95%
- Live-Cell Imaging in Human Colonic Monolayers Reveals Erk Waves Limit the Stem Cell Compartment to Maintain Epithelial Homeostasis 94%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Disruptions in cell fate decisions and transformed enteroendocrine cells drive intestinal tumorigenesis in Drosophila. 95%
- Active elimination of intestinal cells drives oncogenic growth in organoids 94%
- The asymmetric Pitx2 regulates intestinal muscular-lacteal development and protects against fatty liver disease 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.