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Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion

The developmentally important hedgehog (Hh) pathway is activated by binding of Hh to patched (Ptch1), releasing smoothened (Smo) and the downstream transcription factor glioma associated (Gli) from inhibition. The mechanism behind Ptch1-dependent Smo inhibition remains unresolved. We now show that b...

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Autores principales: Bijlsma, Maarten F, Spek, C. Arnold, Zivkovic, Danica, van de Water, Sandra, Rezaee, Farhad, Peppelenbosch, Maikel P
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1502141/
https://www.ncbi.nlm.nih.gov/pubmed/16895439
http://dx.doi.org/10.1371/journal.pbio.0040232
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author Bijlsma, Maarten F
Spek, C. Arnold
Zivkovic, Danica
van de Water, Sandra
Rezaee, Farhad
Peppelenbosch, Maikel P
author_facet Bijlsma, Maarten F
Spek, C. Arnold
Zivkovic, Danica
van de Water, Sandra
Rezaee, Farhad
Peppelenbosch, Maikel P
author_sort Bijlsma, Maarten F
collection PubMed
description The developmentally important hedgehog (Hh) pathway is activated by binding of Hh to patched (Ptch1), releasing smoothened (Smo) and the downstream transcription factor glioma associated (Gli) from inhibition. The mechanism behind Ptch1-dependent Smo inhibition remains unresolved. We now show that by mixing Ptch1-transfected and Ptch1 small interfering RNA–transfected cells with Gli reporter cells, Ptch1 is capable of non–cell autonomous repression of Smo. The magnitude of this non–cell autonomous repression of Smo activity was comparable to the fusion of Ptch1-transfected cell lines and Gli reporter cell lines, suggesting that it is the predominant mode of action. CHOD-PAP analysis of medium conditioned by Ptch1-transfected cells showed an elevated 3β-hydroxysteroid content, which we hypothesized to mediate the Smo inhibition. Indeed, the inhibition of 3β-hydroxysteroid synthesis impaired Ptch1 action on Smo, whereas adding the 3β-hydroxysteroid (pro-)vitamin D3 to the medium effectively inhibited Gli activity. Vitamin D3 bound to Smo with high affinity in a cyclopamine-sensitive manner. Treating zebrafish embryos with vitamin D3 mimicked the smo (–/–) phenotype, confirming the inhibitory action in vivo. Hh activates its signalling cascade by inhibiting Ptch1-dependent secretion of the 3β-hydroxysteroid (pro-)vitamin D3. This action not only explains the seemingly contradictory cause of Smith-Lemli-Opitz syndrome (SLOS), but also establishes Hh as a unique morphogen, because binding of Hh on one cell is capable of activating Hh-dependent signalling cascades on other cells.
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spelling pubmed-15021412006-08-16 Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion Bijlsma, Maarten F Spek, C. Arnold Zivkovic, Danica van de Water, Sandra Rezaee, Farhad Peppelenbosch, Maikel P PLoS Biol Research Article The developmentally important hedgehog (Hh) pathway is activated by binding of Hh to patched (Ptch1), releasing smoothened (Smo) and the downstream transcription factor glioma associated (Gli) from inhibition. The mechanism behind Ptch1-dependent Smo inhibition remains unresolved. We now show that by mixing Ptch1-transfected and Ptch1 small interfering RNA–transfected cells with Gli reporter cells, Ptch1 is capable of non–cell autonomous repression of Smo. The magnitude of this non–cell autonomous repression of Smo activity was comparable to the fusion of Ptch1-transfected cell lines and Gli reporter cell lines, suggesting that it is the predominant mode of action. CHOD-PAP analysis of medium conditioned by Ptch1-transfected cells showed an elevated 3β-hydroxysteroid content, which we hypothesized to mediate the Smo inhibition. Indeed, the inhibition of 3β-hydroxysteroid synthesis impaired Ptch1 action on Smo, whereas adding the 3β-hydroxysteroid (pro-)vitamin D3 to the medium effectively inhibited Gli activity. Vitamin D3 bound to Smo with high affinity in a cyclopamine-sensitive manner. Treating zebrafish embryos with vitamin D3 mimicked the smo (–/–) phenotype, confirming the inhibitory action in vivo. Hh activates its signalling cascade by inhibiting Ptch1-dependent secretion of the 3β-hydroxysteroid (pro-)vitamin D3. This action not only explains the seemingly contradictory cause of Smith-Lemli-Opitz syndrome (SLOS), but also establishes Hh as a unique morphogen, because binding of Hh on one cell is capable of activating Hh-dependent signalling cascades on other cells. Public Library of Science 2006-08 2006-07-18 /pmc/articles/PMC1502141/ /pubmed/16895439 http://dx.doi.org/10.1371/journal.pbio.0040232 Text en Copyright: © 2006 Bijlsma et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bijlsma, Maarten F
Spek, C. Arnold
Zivkovic, Danica
van de Water, Sandra
Rezaee, Farhad
Peppelenbosch, Maikel P
Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion
title Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion
title_full Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion
title_fullStr Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion
title_full_unstemmed Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion
title_short Repression of Smoothened by Patched-Dependent (Pro-)Vitamin D3 Secretion
title_sort repression of smoothened by patched-dependent (pro-)vitamin d3 secretion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1502141/
https://www.ncbi.nlm.nih.gov/pubmed/16895439
http://dx.doi.org/10.1371/journal.pbio.0040232
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