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UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch

Multipotent stem cells with neural crest-like properties have been identified in the dermis of human skin. These neural crest stem cell (NCSC)-like cells display self-renewal capacity and differentiate into neural crest derivatives, including epidermal pigment-producing melanocytes. NCSC-like cells...

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Autores principales: Fukunaga-Kalabis, Mizuho, Hristova, Denitsa M., Wang, Joshua X., Li, Ling, Heppt, Markus V., Wei, Zhi, Gyurdieva, Alexandra, Webster, Marie R., Oka, Masahiro, Weeraratna, Ashani T., Herlyn, Meenhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4430391/
https://www.ncbi.nlm.nih.gov/pubmed/25705850
http://dx.doi.org/10.1038/jid.2015.59
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author Fukunaga-Kalabis, Mizuho
Hristova, Denitsa M.
Wang, Joshua X.
Li, Ling
Heppt, Markus V.
Wei, Zhi
Gyurdieva, Alexandra
Webster, Marie R.
Oka, Masahiro
Weeraratna, Ashani T.
Herlyn, Meenhard
author_facet Fukunaga-Kalabis, Mizuho
Hristova, Denitsa M.
Wang, Joshua X.
Li, Ling
Heppt, Markus V.
Wei, Zhi
Gyurdieva, Alexandra
Webster, Marie R.
Oka, Masahiro
Weeraratna, Ashani T.
Herlyn, Meenhard
author_sort Fukunaga-Kalabis, Mizuho
collection PubMed
description Multipotent stem cells with neural crest-like properties have been identified in the dermis of human skin. These neural crest stem cell (NCSC)-like cells display self-renewal capacity and differentiate into neural crest derivatives, including epidermal pigment-producing melanocytes. NCSC-like cells share many properties with aggressive melanoma cells, such as high migratory capabilities and expression of the neural crest markers. However, little is known about which intrinsic or extrinsic signals determine the proliferation or differentiation of these neural crest-like stem cells. Here, we show that in NCSC-like cells, Notch signaling is highly activated, similar to melanoma cells. Inhibition of Notch signaling reduced proliferation of NCSC-like cells, induced cell death, and down-regulated non-canonical Wnt5a, suggesting that the Notch pathway contributes to the maintenance and motility of these stem cells. In three-dimensional skin reconstructs, canonical Wnt signaling promoted the differentiation of NCSC-like cells into melanocytes. This differentiation was triggered by the endogenous Notch inhibitor Numb, which is up-regulated in the stem cells by Wnt7a derived from UV-irradiated keratinocytes. Together, these data reveal a crosstalk between the two conserved developmental pathways in postnatal human skin, and highlight the role of the skin microenvironment in specifying the fate of stem cells.
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spelling pubmed-44303912015-12-01 UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch Fukunaga-Kalabis, Mizuho Hristova, Denitsa M. Wang, Joshua X. Li, Ling Heppt, Markus V. Wei, Zhi Gyurdieva, Alexandra Webster, Marie R. Oka, Masahiro Weeraratna, Ashani T. Herlyn, Meenhard J Invest Dermatol Article Multipotent stem cells with neural crest-like properties have been identified in the dermis of human skin. These neural crest stem cell (NCSC)-like cells display self-renewal capacity and differentiate into neural crest derivatives, including epidermal pigment-producing melanocytes. NCSC-like cells share many properties with aggressive melanoma cells, such as high migratory capabilities and expression of the neural crest markers. However, little is known about which intrinsic or extrinsic signals determine the proliferation or differentiation of these neural crest-like stem cells. Here, we show that in NCSC-like cells, Notch signaling is highly activated, similar to melanoma cells. Inhibition of Notch signaling reduced proliferation of NCSC-like cells, induced cell death, and down-regulated non-canonical Wnt5a, suggesting that the Notch pathway contributes to the maintenance and motility of these stem cells. In three-dimensional skin reconstructs, canonical Wnt signaling promoted the differentiation of NCSC-like cells into melanocytes. This differentiation was triggered by the endogenous Notch inhibitor Numb, which is up-regulated in the stem cells by Wnt7a derived from UV-irradiated keratinocytes. Together, these data reveal a crosstalk between the two conserved developmental pathways in postnatal human skin, and highlight the role of the skin microenvironment in specifying the fate of stem cells. 2015-02-23 2015-06 /pmc/articles/PMC4430391/ /pubmed/25705850 http://dx.doi.org/10.1038/jid.2015.59 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Fukunaga-Kalabis, Mizuho
Hristova, Denitsa M.
Wang, Joshua X.
Li, Ling
Heppt, Markus V.
Wei, Zhi
Gyurdieva, Alexandra
Webster, Marie R.
Oka, Masahiro
Weeraratna, Ashani T.
Herlyn, Meenhard
UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch
title UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch
title_full UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch
title_fullStr UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch
title_full_unstemmed UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch
title_short UV-induced Wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of Notch
title_sort uv-induced wnt7a in the human skin microenvironment specifies the fate of neural crest -like cells via suppression of notch
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4430391/
https://www.ncbi.nlm.nih.gov/pubmed/25705850
http://dx.doi.org/10.1038/jid.2015.59
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