Notch signaling in bulge stem cells is not required for selection of hair follicle fate
Open Access
- 15 March 2009
- journal article
- Published by The Company of Biologists in Development
- Vol. 136 (6) , 891-896
- https://doi.org/10.1242/dev.030700
Abstract
Notch signaling plays an important role in hair follicle maintenance, and it has been suggested that Notch is also required for follicular fate selection by adult hair follicle stem cells in the bulge. Here we demonstrate that, on the contrary, Notch signaling in bi-potential bulge stem cells or their uncommitted descendents acts to suppress the epidermal fate choice, thus ensuring follicular fate selection. To examine the role of Notch signaling in adult hair follicle stem cells, we used a Krt1-15-CrePR1 transgenic mouse line to delete Rbpj or all Notch proteins specifically in the bulge stem cells. We conclusively determined that in the absence of Notch signaling, bulge stem cell descendents retain their capacity to execute the follicular differentiation program but fail to maintain it owing to their genetic deficiency. The defect in terminal differentiation caused the diversion of Notch-deficient hair follicles to epidermal cysts, and the presence of wild-type cells could not prevent this conversion. Importantly, our analysis revealed that a functional Notch signaling pathway was required to block bulge stem cells from migrating into, and assuming the fate of, interfollicular epidermis. Taken together, our findings yield detailed insight into the function of Notch signaling in hair follicle stem cells and reveal the mechanism of the replacement of Notch-deficient adult hair follicles by epidermal cysts.Keywords
This publication has 27 references indexed in Scilit:
- Genetic interplays between Msx2 and Foxn1 are required for Notch1 expression and hair shaft differentiationDevelopmental Biology, 2008
- Notch-Deficient Skin Induces a Lethal Systemic B-Lymphoproliferative Disorder by Secreting TSLP, a Sentinel for Epidermal IntegrityPLoS Biology, 2008
- More than one way to skin . . .Genes & Development, 2008
- Bi-compartmental communication contributes to the opposite proliferative behavior of Notch1-deficient hair follicle and epidermal keratinocytesDevelopment, 2007
- Mapping the consequence of Notch1 proteolysis in vivo with NIP-CREDevelopment, 2007
- Epidermal Stem Cells of the SkinAnnual Review of Cell and Developmental Biology, 2006
- Canonical notch signaling functions as a commitment switch in the epidermal lineageGenes & Development, 2006
- Notch1 is essential for postnatal hair follicle development and homeostasisDevelopmental Biology, 2005
- A Comprehensive Guide for the Accurate Classification of Murine Hair Follicles in Distinct Hair Cycle StagesJournal of Investigative Dermatology, 2001
- The secret life of the hair follicleTrends in Genetics, 1992