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Updated: May 7, 2026

De Novo Generation of Somatic Stem Cells by YAP/TAZ
Published on: May 7, 2018
Restriction of intestinal stem cell expansion and the regenerative response by YAP
Evan R Barry1, Teppei Morikawa, Brian L Butler
1Stem Cell Program and Department of Hematology/Oncology, Children's Hospital, Boston, Massachusetts 02115, USA.
Abstract:
A remarkable feature of regenerative processes is their ability to halt proliferation once an organ's structure has been restored. The Wnt signalling pathway is the major driving force for homeostatic self-renewal and regeneration in the mammalian intestine. However, the mechanisms that counterbalance Wnt-driven proliferation are poorly understood. Here we demonstrate in mice and humans that yes-associated protein 1 (YAP; also known as YAP1)--a protein known for its powerful growth-inducing and oncogenic properties--has an unexpected growth-suppressive function, restricting Wnt signals during intestinal regeneration. Transgenic expression of YAP reduces Wnt target gene expression and results in the rapid loss of intestinal crypts. In addition, loss of YAP results in Wnt hypersensitivity during regeneration, leading to hyperplasia, expansion of intestinal stem cells and niche cells, and formation of ectopic crypts and microadenomas. We find that cytoplasmic YAP restricts elevated Wnt signalling independently of the AXIN-APC-GSK-3β complex partly by limiting the activity of dishevelled (DVL). DVL signals in the nucleus of intestinal stem cells, and its forced expression leads to enhanced Wnt signalling in crypts. YAP dampens Wnt signals by restricting DVL nuclear translocation during regenerative growth. Finally, we provide evidence that YAP is silenced in a subset of highly aggressive and undifferentiated human colorectal carcinomas, and that its expression can restrict the growth of colorectal carcinoma xenografts. Collectively, our work describes a novel mechanistic paradigm for how proliferative signals are counterbalanced in regenerating tissues. Additionally, our findings have important implications for the targeting of YAP in human malignancies.
Insights
Yes-associated protein 1 (YAP) unexpectedly suppresses growth during intestinal regeneration by limiting Wnt signals. Loss of YAP causes hypersensitivity, leading to hyperplasia and microadenomas, with implications for colorectal cancer treatment.
Area of Science:
- Cell Biology
- Developmental Biology
- Oncology
Background:
- The Wnt signaling pathway drives intestinal self-renewal and regeneration.
- Mechanisms controlling Wnt-driven proliferation during regeneration are not fully understood.
Purpose of the Study:
- To investigate the role of yes-associated protein 1 (YAP) in regulating Wnt signaling during intestinal regeneration.
- To elucidate the mechanisms by which YAP controls proliferation and its implications in colorectal cancer.
Main Methods:
- Utilized mouse and human models for studying intestinal regeneration.
- Employed transgenic expression and gene loss models for YAP.
- Investigated YAP's interaction with the Wnt pathway components, including dishevelled (DVL).
- Analyzed YAP expression in human colorectal carcinomas and tested YAP's effect on tumor xenografts.
Main Results:
- YAP exhibits a growth-suppressive function, restricting Wnt target gene expression and intestinal crypts.
- Loss of YAP leads to Wnt hypersensitivity, hyperplasia, stem cell expansion, and microadenoma formation.
- Cytoplasmic YAP limits Wnt signaling by restricting DVL nuclear translocation.
- YAP silencing correlates with aggressive human colorectal carcinomas, and YAP expression inhibits tumor xenograft growth.
Conclusions:
- YAP acts as a novel counterbalance to Wnt-driven proliferation in regenerating tissues.
- YAP's growth-suppressive role offers a potential therapeutic target for colorectal malignancies.
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