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Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss

Secreted extracellular matrix components which regulate craniofacial development could be reactivated and play roles in adult wound healing. We report a patient with a loss-of-function of the secreted matricellular protein SMOC2 (SPARC related modular calcium binding 2) presenting severe oligodontia...

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Autores principales: Morkmued, Supawich, Clauss, François, Schuhbaur, Brigitte, Fraulob, Valérie, Mathieu, Eric, Hemmerlé, Joseph, Clevers, Hans, Koo, Bon-Kyoung, Dollé, Pascal, Bloch-Zupan, Agnès, Niederreither, Karen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7481257/
https://www.ncbi.nlm.nih.gov/pubmed/32908163
http://dx.doi.org/10.1038/s41598-020-71749-6
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author Morkmued, Supawich
Clauss, François
Schuhbaur, Brigitte
Fraulob, Valérie
Mathieu, Eric
Hemmerlé, Joseph
Clevers, Hans
Koo, Bon-Kyoung
Dollé, Pascal
Bloch-Zupan, Agnès
Niederreither, Karen
author_facet Morkmued, Supawich
Clauss, François
Schuhbaur, Brigitte
Fraulob, Valérie
Mathieu, Eric
Hemmerlé, Joseph
Clevers, Hans
Koo, Bon-Kyoung
Dollé, Pascal
Bloch-Zupan, Agnès
Niederreither, Karen
author_sort Morkmued, Supawich
collection PubMed
description Secreted extracellular matrix components which regulate craniofacial development could be reactivated and play roles in adult wound healing. We report a patient with a loss-of-function of the secreted matricellular protein SMOC2 (SPARC related modular calcium binding 2) presenting severe oligodontia, microdontia, tooth root deficiencies, alveolar bone hypoplasia, and a range of skeletal malformations. Turning to a mouse model, Smoc2-GFP reporter expression indicates SMOC2 dynamically marks a range of dental and bone progenitors. While germline Smoc2 homozygous mutants are viable, tooth number anomalies, reduced tooth size, altered enamel prism patterning, and spontaneous age-induced periodontal bone and root loss are observed in this mouse model. Whole-genome RNA-sequencing analysis of embryonic day (E) 14.5 cap stage molars revealed reductions in early expressed enamel matrix components (Odontogenic ameloblast-associated protein) and dentin dysplasia targets (Dentin matrix acidic phosphoprotein 1). We tested if like other matricellular proteins SMOC2 was required for regenerative repair. We found that the Smoc2-GFP reporter was reactivated in adjacent periodontal tissues 4 days after tooth avulsion injury. Following maxillary tooth injury, Smoc2(−/−) mutants had increased osteoclast activity and bone resorption surrounding the extracted molar. Interestingly, a 10-day treatment with the cyclooxygenase 2 (COX2) inhibitor ibuprofen (30 mg/kg body weight) blocked tooth injury-induced bone loss in Smoc2(−/−) mutants, reducing matrix metalloprotease (Mmp)9. Collectively, our results indicate that endogenous SMOC2 blocks injury-induced jaw bone osteonecrosis and offsets age-induced periodontal decay.
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spelling pubmed-74812572020-09-11 Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss Morkmued, Supawich Clauss, François Schuhbaur, Brigitte Fraulob, Valérie Mathieu, Eric Hemmerlé, Joseph Clevers, Hans Koo, Bon-Kyoung Dollé, Pascal Bloch-Zupan, Agnès Niederreither, Karen Sci Rep Article Secreted extracellular matrix components which regulate craniofacial development could be reactivated and play roles in adult wound healing. We report a patient with a loss-of-function of the secreted matricellular protein SMOC2 (SPARC related modular calcium binding 2) presenting severe oligodontia, microdontia, tooth root deficiencies, alveolar bone hypoplasia, and a range of skeletal malformations. Turning to a mouse model, Smoc2-GFP reporter expression indicates SMOC2 dynamically marks a range of dental and bone progenitors. While germline Smoc2 homozygous mutants are viable, tooth number anomalies, reduced tooth size, altered enamel prism patterning, and spontaneous age-induced periodontal bone and root loss are observed in this mouse model. Whole-genome RNA-sequencing analysis of embryonic day (E) 14.5 cap stage molars revealed reductions in early expressed enamel matrix components (Odontogenic ameloblast-associated protein) and dentin dysplasia targets (Dentin matrix acidic phosphoprotein 1). We tested if like other matricellular proteins SMOC2 was required for regenerative repair. We found that the Smoc2-GFP reporter was reactivated in adjacent periodontal tissues 4 days after tooth avulsion injury. Following maxillary tooth injury, Smoc2(−/−) mutants had increased osteoclast activity and bone resorption surrounding the extracted molar. Interestingly, a 10-day treatment with the cyclooxygenase 2 (COX2) inhibitor ibuprofen (30 mg/kg body weight) blocked tooth injury-induced bone loss in Smoc2(−/−) mutants, reducing matrix metalloprotease (Mmp)9. Collectively, our results indicate that endogenous SMOC2 blocks injury-induced jaw bone osteonecrosis and offsets age-induced periodontal decay. Nature Publishing Group UK 2020-09-09 /pmc/articles/PMC7481257/ /pubmed/32908163 http://dx.doi.org/10.1038/s41598-020-71749-6 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Morkmued, Supawich
Clauss, François
Schuhbaur, Brigitte
Fraulob, Valérie
Mathieu, Eric
Hemmerlé, Joseph
Clevers, Hans
Koo, Bon-Kyoung
Dollé, Pascal
Bloch-Zupan, Agnès
Niederreither, Karen
Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss
title Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss
title_full Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss
title_fullStr Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss
title_full_unstemmed Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss
title_short Deficiency of the SMOC2 matricellular protein impairs bone healing and produces age-dependent bone loss
title_sort deficiency of the smoc2 matricellular protein impairs bone healing and produces age-dependent bone loss
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7481257/
https://www.ncbi.nlm.nih.gov/pubmed/32908163
http://dx.doi.org/10.1038/s41598-020-71749-6
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