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Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves

In palatogenesis, palatal shelves are patterned along the mediolateral axis as well as the anteroposterior axis before the onset of palatal fusion. Fgf10 specifically expressed in lateral mesenchyme of palate maintains Shh transcription in lateral epithelium, while Fgf7 activated in medial mesenchym...

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Autores principales: Wu, Weijie, Gu, Shuping, Sun, Cheng, He, Wei, Xie, Xiaohua, Li, Xihai, Ye, Wenduo, Qin, Chunlin, Chen, Yiping, Xiao, Jing, Liu, Chao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4558018/
https://www.ncbi.nlm.nih.gov/pubmed/26332583
http://dx.doi.org/10.1371/journal.pone.0136951
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author Wu, Weijie
Gu, Shuping
Sun, Cheng
He, Wei
Xie, Xiaohua
Li, Xihai
Ye, Wenduo
Qin, Chunlin
Chen, Yiping
Xiao, Jing
Liu, Chao
author_facet Wu, Weijie
Gu, Shuping
Sun, Cheng
He, Wei
Xie, Xiaohua
Li, Xihai
Ye, Wenduo
Qin, Chunlin
Chen, Yiping
Xiao, Jing
Liu, Chao
author_sort Wu, Weijie
collection PubMed
description In palatogenesis, palatal shelves are patterned along the mediolateral axis as well as the anteroposterior axis before the onset of palatal fusion. Fgf10 specifically expressed in lateral mesenchyme of palate maintains Shh transcription in lateral epithelium, while Fgf7 activated in medial mesenchyme by Dlx5, suppressed the expansion of Shh expression to medial epithelium. How FGF signaling pathways regulate the cell behaviors of developing palate remains elusive. In our study, we found that when Fgf8 is ectopically expressed in the embryonic palatal mesenchyme, the elevation of palatal shelves is impaired and the posterior palatal shelves are enlarged, especially in the medial side. The palatal deformity results from the drastic increase of cell proliferation in posterior mesenchyme and decrease of cell proliferation in epithelium. The expression of mesenchymal Fgf10 and epithelial Shh in the lateral palate, as well as the Dlx5 and Fgf7 transcription in the medial mesenchyme are all interrupted, indicating that the epithelial-mesenchymal interactions during palatogenesis are disrupted by the ectopic activation of mesenchymal Fgf8. Besides the altered Fgf7, Fgf10, Dlx5 and Shh expression pattern, the reduced Osr2 expression domain in the lateral mesenchyme also suggests an impaired mediolateral patterning of posterior palate. Moreover, the ectopic Fgf8 expression up-regulates pJak1 throughout the palatal mesenchyme and pErk in the medial mesenchyme, but down-regulates pJak2 in the epithelium, suggesting that during normal palatogenesis, the medial mesenchymal cell proliferation is stimulated by FGF/Erk pathway, while the epithelial cell proliferation is maintained through FGF/Jak2 pathway.
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spelling pubmed-45580182015-09-10 Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves Wu, Weijie Gu, Shuping Sun, Cheng He, Wei Xie, Xiaohua Li, Xihai Ye, Wenduo Qin, Chunlin Chen, Yiping Xiao, Jing Liu, Chao PLoS One Research Article In palatogenesis, palatal shelves are patterned along the mediolateral axis as well as the anteroposterior axis before the onset of palatal fusion. Fgf10 specifically expressed in lateral mesenchyme of palate maintains Shh transcription in lateral epithelium, while Fgf7 activated in medial mesenchyme by Dlx5, suppressed the expansion of Shh expression to medial epithelium. How FGF signaling pathways regulate the cell behaviors of developing palate remains elusive. In our study, we found that when Fgf8 is ectopically expressed in the embryonic palatal mesenchyme, the elevation of palatal shelves is impaired and the posterior palatal shelves are enlarged, especially in the medial side. The palatal deformity results from the drastic increase of cell proliferation in posterior mesenchyme and decrease of cell proliferation in epithelium. The expression of mesenchymal Fgf10 and epithelial Shh in the lateral palate, as well as the Dlx5 and Fgf7 transcription in the medial mesenchyme are all interrupted, indicating that the epithelial-mesenchymal interactions during palatogenesis are disrupted by the ectopic activation of mesenchymal Fgf8. Besides the altered Fgf7, Fgf10, Dlx5 and Shh expression pattern, the reduced Osr2 expression domain in the lateral mesenchyme also suggests an impaired mediolateral patterning of posterior palate. Moreover, the ectopic Fgf8 expression up-regulates pJak1 throughout the palatal mesenchyme and pErk in the medial mesenchyme, but down-regulates pJak2 in the epithelium, suggesting that during normal palatogenesis, the medial mesenchymal cell proliferation is stimulated by FGF/Erk pathway, while the epithelial cell proliferation is maintained through FGF/Jak2 pathway. Public Library of Science 2015-09-02 /pmc/articles/PMC4558018/ /pubmed/26332583 http://dx.doi.org/10.1371/journal.pone.0136951 Text en © 2015 Wu 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
Wu, Weijie
Gu, Shuping
Sun, Cheng
He, Wei
Xie, Xiaohua
Li, Xihai
Ye, Wenduo
Qin, Chunlin
Chen, Yiping
Xiao, Jing
Liu, Chao
Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves
title Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves
title_full Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves
title_fullStr Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves
title_full_unstemmed Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves
title_short Altered FGF Signaling Pathways Impair Cell Proliferation and Elevation of Palate Shelves
title_sort altered fgf signaling pathways impair cell proliferation and elevation of palate shelves
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4558018/
https://www.ncbi.nlm.nih.gov/pubmed/26332583
http://dx.doi.org/10.1371/journal.pone.0136951
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