Ascl2 Acts as an R-spondin/Wnt-Responsive Switch to Control Stemness in Intestinal Crypts
Files
Publication date
2015-02-05
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
taverne
Abstract
The Wnt signaling pathway controls stem cell identity in the intestinal epithelium and in many other adult organs. The transcription factor Ascl2 (a Wnt target gene) is a master regulator of intestinal stem cell identity. It is unclear how the continuous Wnt gradient along the crypt axis is translated into discrete expression of Ascl2 and discrete specification of stem cells at crypt bottoms. We show that (1) Ascl2 is regulated in a direct autoactivatory loop, leading to a distinct on/off expression pattern, and (2) Wnt/R-spondin can activate this regulatory loop. This mechanism interprets the Wnt levels in the intestinal crypt and translates the continuous Wnt signal into a discrete Ascl2 "on'' or "off'' decision. In turn, Ascl2, together with beta-catenin/Tcf, activates the genes fundamental to the stem cell state. In this manner, Ascl2 forms a transcriptional switch that is both Wnt responsive and Wnt dependent to define stem cell identity.
Keywords
TRANSCRIPTIONAL REGULATORY CIRCUITRY, BETA-CATENIN, WNT/BETA-CATENIN, MOUSE INTESTINE, PANETH CELLS, EXPRESSION PATTERN, GENE-EXPRESSION, WNT RECEPTORS, IN-VITRO, LGR5, Taverne, Journal Article
Citation
Schuijers, J, Junker, J P, Mokry, M, Hatzis, P, Koo, B K, Sasselli, V, Van Der Flier, L G, Cuppen, E, van Oudenaarden, A & Clevers, H 2015, 'Ascl2 Acts as an R-spondin/Wnt-Responsive Switch to Control Stemness in Intestinal Crypts', Cell Stem Cell, vol. 16, no. 2, pp. 158-170. https://doi.org/10.1016/j.stem.2014.12.006