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Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts

OBJECTIVE: Clinical and in vitro studies suggest that subchondral bone sclerosis due to abnormal osteoblasts (Ob) is involved in the progression and/or onset of osteoarthritis (OA). Human Ob isolated from sclerotic subchondral OA bone tissue show an altered phenotype, a decreased canonical Wnt/β-cat...

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Autores principales: Martineau, Xavier, Abed, Élie, Martel-Pelletier, Johanne, Pelletier, Jean-Pierre, Lajeunesse, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5544184/
https://www.ncbi.nlm.nih.gov/pubmed/28777797
http://dx.doi.org/10.1371/journal.pone.0180711
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author Martineau, Xavier
Abed, Élie
Martel-Pelletier, Johanne
Pelletier, Jean-Pierre
Lajeunesse, Daniel
author_facet Martineau, Xavier
Abed, Élie
Martel-Pelletier, Johanne
Pelletier, Jean-Pierre
Lajeunesse, Daniel
author_sort Martineau, Xavier
collection PubMed
description OBJECTIVE: Clinical and in vitro studies suggest that subchondral bone sclerosis due to abnormal osteoblasts (Ob) is involved in the progression and/or onset of osteoarthritis (OA). Human Ob isolated from sclerotic subchondral OA bone tissue show an altered phenotype, a decreased canonical Wnt/β-catenin signaling pathway (cWnt), and a reduced mineralization in vitro. In addition to the cWnt pathway, at least two non-canonical signaling pathways, the Wnt/PKC and Wnt/PCP pathway have been described. However, there are no reports of either pathway in OA Ob. Here, we studied the two non-canonical pathways in OA Ob and if they influence their phenotype. METHODS: Human primary subchondral Ob were isolated from the subchondral bone plate of tibial plateaus of OA patients undergoing total knee arthroplasty, or of normal individuals at autopsy. The expression of genes involved in non-canonical Wnt signaling was evaluated by qRT-PCR and their protein production by Western blot analysis. Alkaline phosphatase activity and osteocalcin secretion (OC) were determined with substrate hydrolysis and EIA, respectively. Mineralization levels were evaluated with Alizarin Red Staining, Wnt/PKC and Wnt/PCP pathways by target gene expression and their respective activity using the NFAT and AP-1 luciferase reporter assays. RESULTS: OA Ob showed an altered phenotype as illustrated by an increased alkaline phosphatase activity and osteocalcin release compared to normal Ob. The expression of the non-canonical Wnt5a ligand was increased in OA Ob compared to normal. Whereas, the expression of LGR5 was significantly increased in OA Ob compared to normal Ob, the expression of LGR4 was similar. Wnt5a directly stimulated the expression and production of LGR5, contrasting, Wnt5a did not stimulate the expression of LGR4. Wnt5a also stimulated the phosphorylation of both JNK and PKC, as well as the activity of both NFAT and AP-1 transcription factors. The inhibition of Wnt5a expression partially corrects the abnormal mineralization, OC secretion and ALPase activity of OA Ob. CONCLUSION: These data indicate that the alteration of Wnt5a, a non-canonical Wnt signaling activator, is implicated in the modified signalisation and phenotype observed in OA Ob.
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spelling pubmed-55441842017-08-12 Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts Martineau, Xavier Abed, Élie Martel-Pelletier, Johanne Pelletier, Jean-Pierre Lajeunesse, Daniel PLoS One Research Article OBJECTIVE: Clinical and in vitro studies suggest that subchondral bone sclerosis due to abnormal osteoblasts (Ob) is involved in the progression and/or onset of osteoarthritis (OA). Human Ob isolated from sclerotic subchondral OA bone tissue show an altered phenotype, a decreased canonical Wnt/β-catenin signaling pathway (cWnt), and a reduced mineralization in vitro. In addition to the cWnt pathway, at least two non-canonical signaling pathways, the Wnt/PKC and Wnt/PCP pathway have been described. However, there are no reports of either pathway in OA Ob. Here, we studied the two non-canonical pathways in OA Ob and if they influence their phenotype. METHODS: Human primary subchondral Ob were isolated from the subchondral bone plate of tibial plateaus of OA patients undergoing total knee arthroplasty, or of normal individuals at autopsy. The expression of genes involved in non-canonical Wnt signaling was evaluated by qRT-PCR and their protein production by Western blot analysis. Alkaline phosphatase activity and osteocalcin secretion (OC) were determined with substrate hydrolysis and EIA, respectively. Mineralization levels were evaluated with Alizarin Red Staining, Wnt/PKC and Wnt/PCP pathways by target gene expression and their respective activity using the NFAT and AP-1 luciferase reporter assays. RESULTS: OA Ob showed an altered phenotype as illustrated by an increased alkaline phosphatase activity and osteocalcin release compared to normal Ob. The expression of the non-canonical Wnt5a ligand was increased in OA Ob compared to normal. Whereas, the expression of LGR5 was significantly increased in OA Ob compared to normal Ob, the expression of LGR4 was similar. Wnt5a directly stimulated the expression and production of LGR5, contrasting, Wnt5a did not stimulate the expression of LGR4. Wnt5a also stimulated the phosphorylation of both JNK and PKC, as well as the activity of both NFAT and AP-1 transcription factors. The inhibition of Wnt5a expression partially corrects the abnormal mineralization, OC secretion and ALPase activity of OA Ob. CONCLUSION: These data indicate that the alteration of Wnt5a, a non-canonical Wnt signaling activator, is implicated in the modified signalisation and phenotype observed in OA Ob. Public Library of Science 2017-08-04 /pmc/articles/PMC5544184/ /pubmed/28777797 http://dx.doi.org/10.1371/journal.pone.0180711 Text en © 2017 Martineau 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Martineau, Xavier
Abed, Élie
Martel-Pelletier, Johanne
Pelletier, Jean-Pierre
Lajeunesse, Daniel
Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts
title Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts
title_full Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts
title_fullStr Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts
title_full_unstemmed Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts
title_short Alteration of Wnt5a expression and of the non-canonical Wnt/PCP and Wnt/PKC-Ca(2+) pathways in human osteoarthritis osteoblasts
title_sort alteration of wnt5a expression and of the non-canonical wnt/pcp and wnt/pkc-ca(2+) pathways in human osteoarthritis osteoblasts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5544184/
https://www.ncbi.nlm.nih.gov/pubmed/28777797
http://dx.doi.org/10.1371/journal.pone.0180711
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