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The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand

The congenital malformation split hand/foot (SHFM) is characterized by missing central fingers and dysmorphology or fusion of the remaining ones. Type-1 SHFM is linked to deletions/rearrangements of the DLX5–DLX6 locus and point mutations in the DLX5 gene. The ectrodactyly phenotype is reproduced in...

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Autores principales: Conte, Daniele, Garaffo, Giulia, Lo Iacono, Nadia, Mantero, Stefano, Piccolo, Stefano, Cordenonsi, Michelangelo, Perez-Morga, David, Orecchia, Valeria, Poli, Valeria, Merlo, Giorgio R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4743692/
https://www.ncbi.nlm.nih.gov/pubmed/26685160
http://dx.doi.org/10.1093/hmg/ddv514
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author Conte, Daniele
Garaffo, Giulia
Lo Iacono, Nadia
Mantero, Stefano
Piccolo, Stefano
Cordenonsi, Michelangelo
Perez-Morga, David
Orecchia, Valeria
Poli, Valeria
Merlo, Giorgio R.
author_facet Conte, Daniele
Garaffo, Giulia
Lo Iacono, Nadia
Mantero, Stefano
Piccolo, Stefano
Cordenonsi, Michelangelo
Perez-Morga, David
Orecchia, Valeria
Poli, Valeria
Merlo, Giorgio R.
author_sort Conte, Daniele
collection PubMed
description The congenital malformation split hand/foot (SHFM) is characterized by missing central fingers and dysmorphology or fusion of the remaining ones. Type-1 SHFM is linked to deletions/rearrangements of the DLX5–DLX6 locus and point mutations in the DLX5 gene. The ectrodactyly phenotype is reproduced in mice by the double knockout (DKO) of Dlx5 and Dlx6. During limb development, the apical ectodermal ridge (AER) is a key-signaling center responsible for early proximal–distal growth and patterning. In Dlx5;6 DKO hindlimbs, the central wedge of the AER loses multilayered organization and shows down-regulation of FGF8 and Dlx2. In search for the mechanism, we examined the non-canonical Wnt signaling, considering that Dwnt-5 is a target of distalless in Drosophila and the knockout of Wnt5, Ryk, Ror2 and Vangl2 in the mouse causes severe limb malformations. We found that in Dlx5;6 DKO limbs, the AER expresses lower levels of Wnt5a, shows scattered β-catenin responsive cells and altered basolateral and planar cell polarity (PCP). The addition of Wnt5a to cultured embryonic limbs restored the expression of AER markers and its stratification. Conversely, the inhibition of the PCP molecule c-jun N-terminal kinase caused a loss of AER marker expression. In vitro, the addition of Wnt5a on mixed primary cultures of embryonic ectoderm and mesenchyme was able to confer re-polarization. We conclude that the Dlx-related ectrodactyly defect is associated with the loss of basoapical and PCP, due to reduced Wnt5a expression and that the restoration of the Wnt5a level is sufficient to partially reverts AER misorganization and dysmorphology.
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spelling pubmed-47436922016-02-08 The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand Conte, Daniele Garaffo, Giulia Lo Iacono, Nadia Mantero, Stefano Piccolo, Stefano Cordenonsi, Michelangelo Perez-Morga, David Orecchia, Valeria Poli, Valeria Merlo, Giorgio R. Hum Mol Genet Articles The congenital malformation split hand/foot (SHFM) is characterized by missing central fingers and dysmorphology or fusion of the remaining ones. Type-1 SHFM is linked to deletions/rearrangements of the DLX5–DLX6 locus and point mutations in the DLX5 gene. The ectrodactyly phenotype is reproduced in mice by the double knockout (DKO) of Dlx5 and Dlx6. During limb development, the apical ectodermal ridge (AER) is a key-signaling center responsible for early proximal–distal growth and patterning. In Dlx5;6 DKO hindlimbs, the central wedge of the AER loses multilayered organization and shows down-regulation of FGF8 and Dlx2. In search for the mechanism, we examined the non-canonical Wnt signaling, considering that Dwnt-5 is a target of distalless in Drosophila and the knockout of Wnt5, Ryk, Ror2 and Vangl2 in the mouse causes severe limb malformations. We found that in Dlx5;6 DKO limbs, the AER expresses lower levels of Wnt5a, shows scattered β-catenin responsive cells and altered basolateral and planar cell polarity (PCP). The addition of Wnt5a to cultured embryonic limbs restored the expression of AER markers and its stratification. Conversely, the inhibition of the PCP molecule c-jun N-terminal kinase caused a loss of AER marker expression. In vitro, the addition of Wnt5a on mixed primary cultures of embryonic ectoderm and mesenchyme was able to confer re-polarization. We conclude that the Dlx-related ectrodactyly defect is associated with the loss of basoapical and PCP, due to reduced Wnt5a expression and that the restoration of the Wnt5a level is sufficient to partially reverts AER misorganization and dysmorphology. Oxford University Press 2016-02-15 2015-12-18 /pmc/articles/PMC4743692/ /pubmed/26685160 http://dx.doi.org/10.1093/hmg/ddv514 Text en © The Author 2015. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Articles
Conte, Daniele
Garaffo, Giulia
Lo Iacono, Nadia
Mantero, Stefano
Piccolo, Stefano
Cordenonsi, Michelangelo
Perez-Morga, David
Orecchia, Valeria
Poli, Valeria
Merlo, Giorgio R.
The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand
title The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand
title_full The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand
title_fullStr The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand
title_full_unstemmed The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand
title_short The apical ectodermal ridge of the mouse model of ectrodactyly Dlx5;Dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous Wnt5a ligand
title_sort apical ectodermal ridge of the mouse model of ectrodactyly dlx5;dlx6(−/−) shows altered stratification and cell polarity, which are restored by exogenous wnt5a ligand
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4743692/
https://www.ncbi.nlm.nih.gov/pubmed/26685160
http://dx.doi.org/10.1093/hmg/ddv514
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