SummaryWnt signaling is a crucial aspect of the intestinal stem cell niche required for crypt cell proliferation and differentiation. Paneth cells or subepithelial myofibroblasts are leading candidate sources of the required Wnt ligands, but this has not been tested in vivo. To abolish Wnt-ligand secretion, we used Porcupine (Porcn) conditional-null mice crossed to strains expressing inducible Cre recombinase in the epithelium, including Paneth cells (Villin-CreERT2); in smooth muscle, including subepithelial myofibroblasts (Myh11-CreERT2); and simultaneously in both compartments. Elimination of Wnt secretion from any of these compartments did not disrupt tissue morphology, cell proliferation, differentiation, or Wnt pathway activity. Thus,...
Targeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequences of ...
SummaryMuch of our understanding about how intestinal stem and progenitor cells are regulated comes ...
SummaryProper organ homeostasis requires tight control of adult stem cells and differentiation throu...
Wnt signaling is a crucial aspect of the intestinal stem cell niche required for crypt cell prolifer...
BACKGROUND & AIMS: Wnt signaling regulates multiple aspects of intestinal physiology, including stem...
SummaryTargeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequen...
Targeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequences of ...
Targeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequences of ...
Background & Aims: Intestinal crypts constitute a niche in which epithelial progenitors respond to W...
Wnt-β-catenin signalling plays a pivotal role in the homeostasis of the intestinal epithelium by pro...
Communication between stem cells and its niche-supporting cells maintains the homeostasis of adult t...
Mammalian Wnt proteins are believed to act as short-range signals(1-4), yet have not been previously...
Constant regeneration of the intestinal epithelium, a dynamic tissue with vital digestive and barrie...
The intestinal epithelium represents a very attractive experimental model for the study of integrate...
Communication between the intestinal epithelium and the underlying mesenchyme is essential in contro...
Targeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequences of ...
SummaryMuch of our understanding about how intestinal stem and progenitor cells are regulated comes ...
SummaryProper organ homeostasis requires tight control of adult stem cells and differentiation throu...
Wnt signaling is a crucial aspect of the intestinal stem cell niche required for crypt cell prolifer...
BACKGROUND & AIMS: Wnt signaling regulates multiple aspects of intestinal physiology, including stem...
SummaryTargeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequen...
Targeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequences of ...
Targeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequences of ...
Background & Aims: Intestinal crypts constitute a niche in which epithelial progenitors respond to W...
Wnt-β-catenin signalling plays a pivotal role in the homeostasis of the intestinal epithelium by pro...
Communication between stem cells and its niche-supporting cells maintains the homeostasis of adult t...
Mammalian Wnt proteins are believed to act as short-range signals(1-4), yet have not been previously...
Constant regeneration of the intestinal epithelium, a dynamic tissue with vital digestive and barrie...
The intestinal epithelium represents a very attractive experimental model for the study of integrate...
Communication between the intestinal epithelium and the underlying mesenchyme is essential in contro...
Targeting of Wnt signaling represents a promising anti-cancer therapy. However, the consequences of ...
SummaryMuch of our understanding about how intestinal stem and progenitor cells are regulated comes ...
SummaryProper organ homeostasis requires tight control of adult stem cells and differentiation throu...