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Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo

BACKGROUND: Pattern formation of the limb skeleton is regulated by a complex interplay of signaling centers located in the ectodermal sheath and mesenchymal core of the limb anlagen, which results, in the forelimb, in the coordinate array of humerus, radius, ulna, carpals, metacarpals and digits. Mu...

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Autores principales: Geetha-Loganathan, Poongodi, Nimmagadda, Suresh, Christ, Bodo, Huang, Ruijin, Scaal, Martin
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2859743/
https://www.ncbi.nlm.nih.gov/pubmed/20334703
http://dx.doi.org/10.1186/1471-213X-10-32
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author Geetha-Loganathan, Poongodi
Nimmagadda, Suresh
Christ, Bodo
Huang, Ruijin
Scaal, Martin
author_facet Geetha-Loganathan, Poongodi
Nimmagadda, Suresh
Christ, Bodo
Huang, Ruijin
Scaal, Martin
author_sort Geetha-Loganathan, Poongodi
collection PubMed
description BACKGROUND: Pattern formation of the limb skeleton is regulated by a complex interplay of signaling centers located in the ectodermal sheath and mesenchymal core of the limb anlagen, which results, in the forelimb, in the coordinate array of humerus, radius, ulna, carpals, metacarpals and digits. Much less understood is why skeletal elements form only in the central mesenchyme of the limb, whereas muscle anlagen develop in the peripheral mesenchyme ensheathing the chondrogenic center. Classical studies have suggested a role of the limb ectoderm as a negative regulator of limb chondrogenesis. RESULTS: In this paper, we investigated the molecular nature of the inhibitory influence of the ectoderm on limb chondrogenesis in the avian embryo in vivo. We show that ectoderm ablation in the early limb bud leads to increased and ectopic expression of early chondrogenic marker genes like Sox9 and Collagen II, indicating that the limb ectoderm inhibits limb chondrogenesis at an early stage of the chondrogenic cascade. To investigate the molecular nature of the inhibitory influence of the ectoderm, we ectopically expressed Wnt6, which is presently the only known Wnt expressed throughout the avian limb ectoderm, and found that Wnt6 overexpression leads to reduced expression of the early chondrogenic marker genes Sox9 and Collagen II. CONCLUSION: Our results suggest that the inhibitory influence of the ectoderm on limb chondrogenesis acts on an early stage of chondrogenesis upsteam of Sox9 and Collagen II. We identify Wnt6 as a candidate mediator of ectodermal chondrogenic inhibition in vivo. We propose a model of Wnt-mediated centripetal patterning of the limb by the surface ectoderm.
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spelling pubmed-28597432010-04-27 Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo Geetha-Loganathan, Poongodi Nimmagadda, Suresh Christ, Bodo Huang, Ruijin Scaal, Martin BMC Dev Biol Research article BACKGROUND: Pattern formation of the limb skeleton is regulated by a complex interplay of signaling centers located in the ectodermal sheath and mesenchymal core of the limb anlagen, which results, in the forelimb, in the coordinate array of humerus, radius, ulna, carpals, metacarpals and digits. Much less understood is why skeletal elements form only in the central mesenchyme of the limb, whereas muscle anlagen develop in the peripheral mesenchyme ensheathing the chondrogenic center. Classical studies have suggested a role of the limb ectoderm as a negative regulator of limb chondrogenesis. RESULTS: In this paper, we investigated the molecular nature of the inhibitory influence of the ectoderm on limb chondrogenesis in the avian embryo in vivo. We show that ectoderm ablation in the early limb bud leads to increased and ectopic expression of early chondrogenic marker genes like Sox9 and Collagen II, indicating that the limb ectoderm inhibits limb chondrogenesis at an early stage of the chondrogenic cascade. To investigate the molecular nature of the inhibitory influence of the ectoderm, we ectopically expressed Wnt6, which is presently the only known Wnt expressed throughout the avian limb ectoderm, and found that Wnt6 overexpression leads to reduced expression of the early chondrogenic marker genes Sox9 and Collagen II. CONCLUSION: Our results suggest that the inhibitory influence of the ectoderm on limb chondrogenesis acts on an early stage of chondrogenesis upsteam of Sox9 and Collagen II. We identify Wnt6 as a candidate mediator of ectodermal chondrogenic inhibition in vivo. We propose a model of Wnt-mediated centripetal patterning of the limb by the surface ectoderm. BioMed Central 2010-03-25 /pmc/articles/PMC2859743/ /pubmed/20334703 http://dx.doi.org/10.1186/1471-213X-10-32 Text en Copyright ©2010 Geetha-Loganathan et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research article
Geetha-Loganathan, Poongodi
Nimmagadda, Suresh
Christ, Bodo
Huang, Ruijin
Scaal, Martin
Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo
title Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo
title_full Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo
title_fullStr Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo
title_full_unstemmed Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo
title_short Ectodermal Wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo
title_sort ectodermal wnt6 is an early negative regulator of limb chondrogenesis in the chicken embryo
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2859743/
https://www.ncbi.nlm.nih.gov/pubmed/20334703
http://dx.doi.org/10.1186/1471-213X-10-32
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