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Mutant p63 causes defective expansion of ectodermal progenitor cells and impaired FGF signalling in AEC syndrome

Authors :
Giustina Ferone
Jill Dixon
Bing Hu
Helen A. Thomason
David P. Rice
Bradley Spencer-Dene
Laura De Rosa
Raffaele Ambrosio
Michael J. Dixon
Caterina Missero
Hans van Bokhoven
Maranke I. Koster
Dario Acampora
Huiqing Zhou
Luigi Del Vecchio
Dario Antonini
Marica Gemei
Gianluca Tadini
Giustina, Ferone
Helen A., Thomason
Antonini, Dario
Laura De, Rosa
Bing, Hu
Marica, Gemei
Huiqing, Zhou
Raffaele, Ambrosio
David P., Rice
Dario, Acampora
Hans van, Bokhoven
DEL VECCHIO, Luigi
Maranke I., Koster
Gianluca, Tadini
Bradley Spencer, Dene
Michael, Dixon
Jill, Dixon
Missero, Caterina
Department of Oral and Maxillofacial Diseases
Orthodontics
Suu- ja leukakirurgian yksikkö
Source :
EMBO molecular medicine (Online) (2012)., info:cnr-pdr/source/autori:Ferone G, Thomason HA, Antonini D, De Rosa L, Hu B, Gemei M, Zhou H, Ambrosio R, Rice DP, Acampora D, van Bokhoven H, Del Vecchio L, Koster MI, Tadini G, Spencer-Dene B, Dixon M, Dixon J, Missero C./titolo:Mutant p63 causes defective expansion of ectodermal progenitor cells and impaired FGF signalling in AEC syndrome./doi:/rivista:EMBO molecular medicine (Online)/anno:2012/pagina_da:/pagina_a:/intervallo_pagine:/volume, EMBO Molecular Medicine, 4, 192-205, EMBO Molecular Medicine, 4, 3, pp. 192-205
Publication Year :
2012

Abstract

Ankyloblepharon-ectodermal defects-cleft lip/palate (AEC) syndrome, which is characterized by cleft palate and severe defects of the skin, is an autosomal dominant disorder caused by mutations in the gene encoding transcription factor p63. Here, we report the generation of a knock-in mouse model for AEC syndrome (p63(+/L514F) ) that recapitulates the human disorder. The AEC mutation exerts a selective dominant-negative function on wild-type p63 by affecting progenitor cell expansion during ectodermal development leading to a defective epidermal stem cell compartment. These phenotypes are associated with impairment of fibroblast growth factor (FGF) signalling resulting from reduced expression of Fgfr2 and Fgfr3, direct p63 target genes. In parallel, a defective stem cell compartment is observed in humans affected by AEC syndrome and in Fgfr2b(-/-) mice. Restoring Fgfr2b expression in p63(+/L514F) epithelial cells by treatment with FGF7 reactivates downstream mitogen-activated protein kinase signalling and cell proliferation. These findings establish a functional link between FGF signalling and p63 in the expansion of epithelial progenitor cells and provide mechanistic insights into the pathogenesis of AEC syndrome.

Details

Language :
English
ISSN :
17574676
Database :
OpenAIRE
Journal :
EMBO molecular medicine (Online) (2012)., info:cnr-pdr/source/autori:Ferone G, Thomason HA, Antonini D, De Rosa L, Hu B, Gemei M, Zhou H, Ambrosio R, Rice DP, Acampora D, van Bokhoven H, Del Vecchio L, Koster MI, Tadini G, Spencer-Dene B, Dixon M, Dixon J, Missero C./titolo:Mutant p63 causes defective expansion of ectodermal progenitor cells and impaired FGF signalling in AEC syndrome./doi:/rivista:EMBO molecular medicine (Online)/anno:2012/pagina_da:/pagina_a:/intervallo_pagine:/volume, EMBO Molecular Medicine, 4, 192-205, EMBO Molecular Medicine, 4, 3, pp. 192-205
Accession number :
edsair.doi.dedup.....de6f49670dbc9d4cc3017e28e1d2c53d