beta-catenin signaling is one of the key factors regulating the fate of hair follicles (HFs). To elucidate the regulatory mechanism of embryonic HF fate determination during epidermal development/differentiation, we analyzed conditional mutant mice with keratinocytes expressing constitutively active beta-catenin (K5-Cre Catnb((ex3)fl/+)). The mutant mice developed scaly skin with a thickened epidermis and showed impaired epidermal stratification. The hair shaft keratins were broadly expressed in the epidermis but there was no expression of the terminal differentiation markers K1 and loricrin. Hair placode markers (Bmp2 and Shh) and follicular dermal condensate markers (noggin, patched 1 and Pdgfra) were expressed throughout the epidermis an...
New hair follicles (HFs) do not form in adult mammalian skin unless epidermal Wnt signalling is acti...
Mice that carry a mutation at the hairless (hr) locus develop seemingly normal hair follicles (HF) b...
The epidermis is maintained through self-renewal of stem cells and differentiation of their progeny ...
β-catenin signaling is one of the key factors regulating the fate of hair follicles (HFs). To elucid...
beta-Catenin signaling is required for hair follicle development, but it is unknown whether its acti...
beta-Catenin is an essential molecule in Wnt/wingless signaling, which controls decisive steps in em...
Abstractβ-Catenin is an essential molecule in Wnt/wingless signaling, which controls decisive steps ...
During embryonic and postnatal development, Wnt/beta-catenin signaling is involved in several stages...
SummaryThe activity of keratinocytes in the hair follicle is regulated by signals from a specialized...
In order to investigate the role of β-catenin in cell fate selection in specific regions of adult ep...
SummaryUsing K14ΔNβ-cateninER transgenic mice, we show that short-term, low-level β-catenin activati...
AbstractWnt signalling is required for hair follicle development and for the growth phase (anagen) o...
Wnt signalling is required for hair follicle development and for the growth phase (anagen) of postna...
Hair follicle morphogenesis depends on Wnt, Shh, Notch, BMP and other signaling pathways interplay b...
AbstractBackground: The skin is responsible for forming a variety of epidermal structures that diffe...
New hair follicles (HFs) do not form in adult mammalian skin unless epidermal Wnt signalling is acti...
Mice that carry a mutation at the hairless (hr) locus develop seemingly normal hair follicles (HF) b...
The epidermis is maintained through self-renewal of stem cells and differentiation of their progeny ...
β-catenin signaling is one of the key factors regulating the fate of hair follicles (HFs). To elucid...
beta-Catenin signaling is required for hair follicle development, but it is unknown whether its acti...
beta-Catenin is an essential molecule in Wnt/wingless signaling, which controls decisive steps in em...
Abstractβ-Catenin is an essential molecule in Wnt/wingless signaling, which controls decisive steps ...
During embryonic and postnatal development, Wnt/beta-catenin signaling is involved in several stages...
SummaryThe activity of keratinocytes in the hair follicle is regulated by signals from a specialized...
In order to investigate the role of β-catenin in cell fate selection in specific regions of adult ep...
SummaryUsing K14ΔNβ-cateninER transgenic mice, we show that short-term, low-level β-catenin activati...
AbstractWnt signalling is required for hair follicle development and for the growth phase (anagen) o...
Wnt signalling is required for hair follicle development and for the growth phase (anagen) of postna...
Hair follicle morphogenesis depends on Wnt, Shh, Notch, BMP and other signaling pathways interplay b...
AbstractBackground: The skin is responsible for forming a variety of epidermal structures that diffe...
New hair follicles (HFs) do not form in adult mammalian skin unless epidermal Wnt signalling is acti...
Mice that carry a mutation at the hairless (hr) locus develop seemingly normal hair follicles (HF) b...
The epidermis is maintained through self-renewal of stem cells and differentiation of their progeny ...