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Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis

Cleft palate is a common craniofacial disorder involving multiple genetic and environmental predisposing factors. Currently, limited insight exists into the molecular mechanisms regulating osteogenic differentiation and patterning in the palate during embryogenesis. This study utilized the Pax9-defi...

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Autores principales: Piña, Jeremie Oliver, Roth, Daniela M., Raju, Resmi, Winchester, Emma Wentworth, Chattaraj, Parna, Kidwai, Fahad, Faucz, Fabio R., Iben, James, Padilla, Cameron, Cotney, Justin L., D’Souza, Rena N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245699/
https://www.ncbi.nlm.nih.gov/pubmed/37292772
http://dx.doi.org/10.1101/2023.05.16.541037
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author Piña, Jeremie Oliver
Roth, Daniela M.
Raju, Resmi
Winchester, Emma Wentworth
Chattaraj, Parna
Kidwai, Fahad
Faucz, Fabio R.
Iben, James
Padilla, Cameron
Cotney, Justin L.
D’Souza, Rena N.
author_facet Piña, Jeremie Oliver
Roth, Daniela M.
Raju, Resmi
Winchester, Emma Wentworth
Chattaraj, Parna
Kidwai, Fahad
Faucz, Fabio R.
Iben, James
Padilla, Cameron
Cotney, Justin L.
D’Souza, Rena N.
author_sort Piña, Jeremie Oliver
collection PubMed
description Cleft palate is a common craniofacial disorder involving multiple genetic and environmental predisposing factors. Currently, limited insight exists into the molecular mechanisms regulating osteogenic differentiation and patterning in the palate during embryogenesis. This study utilized the Pax9-deficient mouse genetic model of cleft palate to investigate the role of Pax9 in osteogenic differentiation. Single-nucleus transcriptomics and chromatin accessibility assays validated by whole-transcriptome and single-molecule spatial transcriptomics suggest a relationship between separate Pax9+ and osteogenic populations. Loss of Pax9 resulted in premature osteogenic differentiation and bone maturation. The spatially restricted osteogenic domains in Pax9(−/−) mice are bounded by Dkk2, which normally interfaces with Pax9 in the mesenchyme. Together, these results confirm a regulatory role for the Wnt pathway in patterning of palatal bone, offering novel insights into the complex nature of developmental signaling and osteodifferentiation in the palate.
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spelling pubmed-102456992023-06-08 Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis Piña, Jeremie Oliver Roth, Daniela M. Raju, Resmi Winchester, Emma Wentworth Chattaraj, Parna Kidwai, Fahad Faucz, Fabio R. Iben, James Padilla, Cameron Cotney, Justin L. D’Souza, Rena N. bioRxiv Article Cleft palate is a common craniofacial disorder involving multiple genetic and environmental predisposing factors. Currently, limited insight exists into the molecular mechanisms regulating osteogenic differentiation and patterning in the palate during embryogenesis. This study utilized the Pax9-deficient mouse genetic model of cleft palate to investigate the role of Pax9 in osteogenic differentiation. Single-nucleus transcriptomics and chromatin accessibility assays validated by whole-transcriptome and single-molecule spatial transcriptomics suggest a relationship between separate Pax9+ and osteogenic populations. Loss of Pax9 resulted in premature osteogenic differentiation and bone maturation. The spatially restricted osteogenic domains in Pax9(−/−) mice are bounded by Dkk2, which normally interfaces with Pax9 in the mesenchyme. Together, these results confirm a regulatory role for the Wnt pathway in patterning of palatal bone, offering novel insights into the complex nature of developmental signaling and osteodifferentiation in the palate. Cold Spring Harbor Laboratory 2023-05-17 /pmc/articles/PMC10245699/ /pubmed/37292772 http://dx.doi.org/10.1101/2023.05.16.541037 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Piña, Jeremie Oliver
Roth, Daniela M.
Raju, Resmi
Winchester, Emma Wentworth
Chattaraj, Parna
Kidwai, Fahad
Faucz, Fabio R.
Iben, James
Padilla, Cameron
Cotney, Justin L.
D’Souza, Rena N.
Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis
title Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis
title_full Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis
title_fullStr Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis
title_full_unstemmed Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis
title_short Dkk2 interacts with Pax9 in palate mesenchyme to pattern and tune osteogenesis
title_sort dkk2 interacts with pax9 in palate mesenchyme to pattern and tune osteogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245699/
https://www.ncbi.nlm.nih.gov/pubmed/37292772
http://dx.doi.org/10.1101/2023.05.16.541037
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