|  Help  |  About  |  Contact Us

Publication : Wnt and BMP signals control intestinal adenoma cell fates.

First Author  Farrall AL Year  2012
Journal  Int J Cancer Volume  131
Issue  10 Pages  2242-52
PubMed ID  22344573 Mgi Jnum  J:187862
Mgi Id  MGI:5438463 Doi  10.1002/ijc.27500
Citation  Farrall AL, et al. (2012) Wnt and BMP signals control intestinal adenoma cell fates. Int J Cancer 131(10):2242-52
abstractText  Cellular hierarchies and signals that govern stemness and differentiation of intestinal adenoma cells are not well defined. In this study, we used organotypic culture to investigate the impact of beta-catenin and BMP signals in cells that form intestinal adenoma in the mouse. We found that activation of beta-catenin signaling by loss of APC or transgenic induction of oncogenic mutant beta-catenin (Ctnnb1(mut) ) initiates the conversion of untransformed intestinal cells to tumor cells. These tumor cells display cancer stem cell (CSC) traits such as increased expression of the CSC markers Cd133 and Cd44, a high capacity for self-renewal and unlimited proliferative potential. Subsequent inactivation of transgenic Ctnnb1(mut) results in the reversion of tumor cells to normal intestinal stem cells, which immediately reinstall the cellular hierarchy of the normal intestinal epithelium. Our data demonstrate that oncogenic activation of beta-catenin signaling initiates the early steps of intestinal cellular transformation in the absence of irreversible genetic or epigenetic changes. Interestingly, we found that tumor cells in culture and in adenoma produce BMP4, which counteracts CSC-like traits by initiating irreversible cellular differentiation and loss of self-renewal capacity. We conclude that the opposition of stemness-maintaining oncogenic beta-catenin signals and autocrine differentiating BMP signals within the adenoma cell provides a rationale for the formation of cellular hierarchies in intestinal adenoma and may serve to limit adenoma growth.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

9 Bio Entities

Trail: Publication

0 Expression