Cellular decisions of self-renewal or differentiation arise from integration and reciprocal titration of numerous regulatory networks. Notch and Wnt/β-catenin signalling often intersect in stem and progenitor cells and regulate each other transcriptionally. The biological outcome of signalling through each pathway often depends on the context and timing as cells progress through stages of differentiation. Here, we show that membrane-bound Notch physically associates with unphosphorylated (active) β-catenin in stem and colon cancer cells and negatively regulates post-translational accumulation of active β-catenin protein. Notch-dependent regulation of β-catenin protein did not require ligand-dependent membrane cleavage of Notch or the glycog...
The evolutionarily conserved developmental pathway driven by Notch receptors and ligands has acquire...
Notch and Wnt/b-catenin signaling both play essential roles and interact closely in cardiomyocyte di...
Proper organ homeostasis requires tight control of adult stem cells and differentiation through the ...
Cellular decisions of self-renewal or differentiation arise from integration and reciprocal titratio...
From PubMed via Jisc Publications RouterHistory: received 2020-04-30, accepted 2021-03-03Publication...
Colorectal tumors with mutations on Wnt family members show an overexpression of several Notch targe...
International audienceAims The activation of β-catenin signalling is a key step in intestinal tumori...
AbstractWnt and Notch1 signaling pathways play an important role in a variety of biological processe...
Notch signaling is a highly conserved signal transduction pathway that regulates stem cell maintenan...
AbstractNotch signaling is a highly conserved signal transduction pathway that regulates stem cell m...
Aims The activation of b-catenin signalling is a key step in intestinal tumorigenesis. Interplay bet...
BACKGROUND: Notch and Wnt pathways are key regulators of intestinal homeostasis and alterations in t...
Wnt/β-catenin and Notch signalling cooperate in regulating the transcription of various genes specif...
Notch has been linked to beta-catenin-dependent tumorigenesis; however, the mechanisms leading to No...
AbstractThe Notch signaling pathway regulates intestinal epithelial cell homeostasis, including stem...
The evolutionarily conserved developmental pathway driven by Notch receptors and ligands has acquire...
Notch and Wnt/b-catenin signaling both play essential roles and interact closely in cardiomyocyte di...
Proper organ homeostasis requires tight control of adult stem cells and differentiation through the ...
Cellular decisions of self-renewal or differentiation arise from integration and reciprocal titratio...
From PubMed via Jisc Publications RouterHistory: received 2020-04-30, accepted 2021-03-03Publication...
Colorectal tumors with mutations on Wnt family members show an overexpression of several Notch targe...
International audienceAims The activation of β-catenin signalling is a key step in intestinal tumori...
AbstractWnt and Notch1 signaling pathways play an important role in a variety of biological processe...
Notch signaling is a highly conserved signal transduction pathway that regulates stem cell maintenan...
AbstractNotch signaling is a highly conserved signal transduction pathway that regulates stem cell m...
Aims The activation of b-catenin signalling is a key step in intestinal tumorigenesis. Interplay bet...
BACKGROUND: Notch and Wnt pathways are key regulators of intestinal homeostasis and alterations in t...
Wnt/β-catenin and Notch signalling cooperate in regulating the transcription of various genes specif...
Notch has been linked to beta-catenin-dependent tumorigenesis; however, the mechanisms leading to No...
AbstractThe Notch signaling pathway regulates intestinal epithelial cell homeostasis, including stem...
The evolutionarily conserved developmental pathway driven by Notch receptors and ligands has acquire...
Notch and Wnt/b-catenin signaling both play essential roles and interact closely in cardiomyocyte di...
Proper organ homeostasis requires tight control of adult stem cells and differentiation through the ...