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ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm

The secreted glycoprotein sonic hedgehog (Shh) is expressed in the prechordal mesoderm, where it plays a crucial role in induction and patterning of the ventral forebrain. Currently little is known about how Shh is regulated in prechordal tissue. Here we show that in the embryonic chick, Shh is expr...

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Autores principales: Ellis, Pamela S., Burbridge, Sarah, Soubes, Sandrine, Ohyama, Kyoji, Ben-Haim, Nadav, Chen, Canhe, Dale, Kim, Shen, Michael M., Constam, Daniel, Placzek, Marysia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4712875/
https://www.ncbi.nlm.nih.gov/pubmed/26417042
http://dx.doi.org/10.1242/dev.119628
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author Ellis, Pamela S.
Burbridge, Sarah
Soubes, Sandrine
Ohyama, Kyoji
Ben-Haim, Nadav
Chen, Canhe
Dale, Kim
Shen, Michael M.
Constam, Daniel
Placzek, Marysia
author_facet Ellis, Pamela S.
Burbridge, Sarah
Soubes, Sandrine
Ohyama, Kyoji
Ben-Haim, Nadav
Chen, Canhe
Dale, Kim
Shen, Michael M.
Constam, Daniel
Placzek, Marysia
author_sort Ellis, Pamela S.
collection PubMed
description The secreted glycoprotein sonic hedgehog (Shh) is expressed in the prechordal mesoderm, where it plays a crucial role in induction and patterning of the ventral forebrain. Currently little is known about how Shh is regulated in prechordal tissue. Here we show that in the embryonic chick, Shh is expressed transiently in prechordal mesoderm, and is governed by unprocessed Nodal. Exposure of prechordal mesoderm microcultures to Nodal-conditioned medium, the Nodal inhibitor CerS, or to an ALK4/5/7 inhibitor reveals that Nodal is required to maintain both Shh and Gsc expression, but whereas Gsc is largely maintained through canonical signalling, Nodal signals through a non-canonical route to maintain Shh. Further, Shh expression can be maintained by a recombinant Nodal cleavage mutant, proNodal, but not by purified mature Nodal. A number of lines of evidence suggest that proNodal acts via FGFR3. ProNodal and FGFR3 co-immunoprecipitate and proNodal increases FGFR3 tyrosine phosphorylation. In microcultures, soluble FGFR3 abolishes Shh without affecting Gsc expression. Further, prechordal mesoderm cells in which Fgfr3 expression is reduced by Fgfr3 siRNA fail to bind to proNodal. Finally, targeted electroporation of Fgfr3 siRNA to prechordal mesoderm in vivo results in premature Shh downregulation without affecting Gsc. We report an inverse correlation between proNodal-FGFR3 signalling and pSmad1/5/8, and show that proNodal-FGFR3 signalling antagonises BMP-mediated pSmad1/5/8 signalling, which is poised to downregulate Shh. Our studies suggest that proNodal/FGFR3 signalling governs Shh duration by repressing canonical BMP signalling, and that local BMPs rapidly silence Shh once endogenous Nodal-FGFR3 signalling is downregulated.
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spelling pubmed-47128752016-02-05 ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm Ellis, Pamela S. Burbridge, Sarah Soubes, Sandrine Ohyama, Kyoji Ben-Haim, Nadav Chen, Canhe Dale, Kim Shen, Michael M. Constam, Daniel Placzek, Marysia Development Research Articles The secreted glycoprotein sonic hedgehog (Shh) is expressed in the prechordal mesoderm, where it plays a crucial role in induction and patterning of the ventral forebrain. Currently little is known about how Shh is regulated in prechordal tissue. Here we show that in the embryonic chick, Shh is expressed transiently in prechordal mesoderm, and is governed by unprocessed Nodal. Exposure of prechordal mesoderm microcultures to Nodal-conditioned medium, the Nodal inhibitor CerS, or to an ALK4/5/7 inhibitor reveals that Nodal is required to maintain both Shh and Gsc expression, but whereas Gsc is largely maintained through canonical signalling, Nodal signals through a non-canonical route to maintain Shh. Further, Shh expression can be maintained by a recombinant Nodal cleavage mutant, proNodal, but not by purified mature Nodal. A number of lines of evidence suggest that proNodal acts via FGFR3. ProNodal and FGFR3 co-immunoprecipitate and proNodal increases FGFR3 tyrosine phosphorylation. In microcultures, soluble FGFR3 abolishes Shh without affecting Gsc expression. Further, prechordal mesoderm cells in which Fgfr3 expression is reduced by Fgfr3 siRNA fail to bind to proNodal. Finally, targeted electroporation of Fgfr3 siRNA to prechordal mesoderm in vivo results in premature Shh downregulation without affecting Gsc. We report an inverse correlation between proNodal-FGFR3 signalling and pSmad1/5/8, and show that proNodal-FGFR3 signalling antagonises BMP-mediated pSmad1/5/8 signalling, which is poised to downregulate Shh. Our studies suggest that proNodal/FGFR3 signalling governs Shh duration by repressing canonical BMP signalling, and that local BMPs rapidly silence Shh once endogenous Nodal-FGFR3 signalling is downregulated. The Company of Biologists 2015-11-15 /pmc/articles/PMC4712875/ /pubmed/26417042 http://dx.doi.org/10.1242/dev.119628 Text en © 2015. Published by The Company of Biologists Ltd 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 use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Articles
Ellis, Pamela S.
Burbridge, Sarah
Soubes, Sandrine
Ohyama, Kyoji
Ben-Haim, Nadav
Chen, Canhe
Dale, Kim
Shen, Michael M.
Constam, Daniel
Placzek, Marysia
ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
title ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
title_full ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
title_fullStr ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
title_full_unstemmed ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
title_short ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
title_sort pronodal acts via fgfr3 to govern duration of shh expression in the prechordal mesoderm
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4712875/
https://www.ncbi.nlm.nih.gov/pubmed/26417042
http://dx.doi.org/10.1242/dev.119628
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