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DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations

Ectrodactyly, or Split-Hand/Foot Malformation (SHFM), is a congenital condition characterized by the loss of central rays of hands and feet. The p63 and the DLX5;DLX6 transcription factors, expressed in the embryonic limb buds and ectoderm, are disease genes for these conditions. Mutations of p63 al...

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Autores principales: Restelli, Michela, Lopardo, Teresa, Lo Iacono, Nadia, Garaffo, Giulia, Conte, Daniele, Rustighi, Alessandra, Napoli, Marco, Del Sal, Giannino, Perez-Morga, David, Costanzo, Antonio, Merlo, Giorgio Roberto, Guerrini, Luisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4065156/
https://www.ncbi.nlm.nih.gov/pubmed/24569166
http://dx.doi.org/10.1093/hmg/ddu096
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author Restelli, Michela
Lopardo, Teresa
Lo Iacono, Nadia
Garaffo, Giulia
Conte, Daniele
Rustighi, Alessandra
Napoli, Marco
Del Sal, Giannino
Perez-Morga, David
Costanzo, Antonio
Merlo, Giorgio Roberto
Guerrini, Luisa
author_facet Restelli, Michela
Lopardo, Teresa
Lo Iacono, Nadia
Garaffo, Giulia
Conte, Daniele
Rustighi, Alessandra
Napoli, Marco
Del Sal, Giannino
Perez-Morga, David
Costanzo, Antonio
Merlo, Giorgio Roberto
Guerrini, Luisa
author_sort Restelli, Michela
collection PubMed
description Ectrodactyly, or Split-Hand/Foot Malformation (SHFM), is a congenital condition characterized by the loss of central rays of hands and feet. The p63 and the DLX5;DLX6 transcription factors, expressed in the embryonic limb buds and ectoderm, are disease genes for these conditions. Mutations of p63 also cause the ectodermal dysplasia–ectrodactyly–cleft lip/palate (EEC) syndrome, comprising SHFM. Ectrodactyly is linked to defects of the apical ectodermal ridge (AER) of the developing limb buds. FGF8 is the key signaling molecule in this process, able to direct proximo-distal growth and patterning of the skeletal primordial of the limbs. In the limb buds of both p63 and Dlx5;Dlx6 murine models of SHFM, the AER is poorly stratified and FGF8 expression is severely reduced. We show here that the FGF8 locus is a downstream target of DLX5 and that FGF8 counteracts Pin1–ΔNp63α interaction. In vivo, lack of Pin1 leads to accumulation of the p63 protein in the embryonic limbs and ectoderm. We show also that ΔNp63α protein stability is negatively regulated by the interaction with the prolyl-isomerase Pin1, via proteasome-mediated degradation; p63 mutant proteins associated with SHFM or EEC syndromes are resistant to Pin1 action. Thus, DLX5, p63, Pin1 and FGF8 participate to the same time- and location-restricted regulatory loop essential for AER stratification, hence for normal patterning and skeletal morphogenesis of the limb buds. These results shed new light on the molecular mechanisms at the basis of the SHFM and EEC limb malformations.
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spelling pubmed-40651562014-06-23 DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations Restelli, Michela Lopardo, Teresa Lo Iacono, Nadia Garaffo, Giulia Conte, Daniele Rustighi, Alessandra Napoli, Marco Del Sal, Giannino Perez-Morga, David Costanzo, Antonio Merlo, Giorgio Roberto Guerrini, Luisa Hum Mol Genet Articles Ectrodactyly, or Split-Hand/Foot Malformation (SHFM), is a congenital condition characterized by the loss of central rays of hands and feet. The p63 and the DLX5;DLX6 transcription factors, expressed in the embryonic limb buds and ectoderm, are disease genes for these conditions. Mutations of p63 also cause the ectodermal dysplasia–ectrodactyly–cleft lip/palate (EEC) syndrome, comprising SHFM. Ectrodactyly is linked to defects of the apical ectodermal ridge (AER) of the developing limb buds. FGF8 is the key signaling molecule in this process, able to direct proximo-distal growth and patterning of the skeletal primordial of the limbs. In the limb buds of both p63 and Dlx5;Dlx6 murine models of SHFM, the AER is poorly stratified and FGF8 expression is severely reduced. We show here that the FGF8 locus is a downstream target of DLX5 and that FGF8 counteracts Pin1–ΔNp63α interaction. In vivo, lack of Pin1 leads to accumulation of the p63 protein in the embryonic limbs and ectoderm. We show also that ΔNp63α protein stability is negatively regulated by the interaction with the prolyl-isomerase Pin1, via proteasome-mediated degradation; p63 mutant proteins associated with SHFM or EEC syndromes are resistant to Pin1 action. Thus, DLX5, p63, Pin1 and FGF8 participate to the same time- and location-restricted regulatory loop essential for AER stratification, hence for normal patterning and skeletal morphogenesis of the limb buds. These results shed new light on the molecular mechanisms at the basis of the SHFM and EEC limb malformations. Oxford University Press 2014-07-15 2014-02-25 /pmc/articles/PMC4065156/ /pubmed/24569166 http://dx.doi.org/10.1093/hmg/ddu096 Text en © The Author 2014. Published by Oxford University Press. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Restelli, Michela
Lopardo, Teresa
Lo Iacono, Nadia
Garaffo, Giulia
Conte, Daniele
Rustighi, Alessandra
Napoli, Marco
Del Sal, Giannino
Perez-Morga, David
Costanzo, Antonio
Merlo, Giorgio Roberto
Guerrini, Luisa
DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations
title DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations
title_full DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations
title_fullStr DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations
title_full_unstemmed DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations
title_short DLX5, FGF8 and the Pin1 isomerase control ΔNp63α protein stability during limb development: a regulatory loop at the basis of the SHFM and EEC congenital malformations
title_sort dlx5, fgf8 and the pin1 isomerase control δnp63α protein stability during limb development: a regulatory loop at the basis of the shfm and eec congenital malformations
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4065156/
https://www.ncbi.nlm.nih.gov/pubmed/24569166
http://dx.doi.org/10.1093/hmg/ddu096
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