Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.

The importance of BMP receptor Ia (BMPRIa) mediated signaling in the development of craniofacial organs, including the tooth and palate, has been well illuminated in several mouse models of loss of function, and by its mutations associated with juvenile polyposis syndrome and facial defects in human...

Full description

Bibliographic Details
Main Authors: Lu Li, Ying Wang, Minkui Lin, Guohua Yuan, Guobin Yang, Yuqian Zheng, Yiping Chen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3680418?pdf=render
id doaj-110767c695a940959b24260cafb837f9
record_format Article
spelling doaj-110767c695a940959b24260cafb837f92020-11-25T01:55:11ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0186e6610710.1371/journal.pone.0066107Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.Lu LiYing WangMinkui LinGuohua YuanGuobin YangYuqian ZhengYiping ChenThe importance of BMP receptor Ia (BMPRIa) mediated signaling in the development of craniofacial organs, including the tooth and palate, has been well illuminated in several mouse models of loss of function, and by its mutations associated with juvenile polyposis syndrome and facial defects in humans. In this study, we took a gain-of-function approach to further address the role of BMPR-IA-mediated signaling in the mesenchymal compartment during tooth and palate development. We generated transgenic mice expressing a constitutively active form of BmprIa (caBmprIa) in cranial neural crest (CNC) cells that contributes to the dental and palatal mesenchyme. Mice bearing enhanced BMPRIa-mediated signaling in CNC cells exhibit complete cleft palate and delayed odontogenic differentiation. We showed that the cleft palate defect in the transgenic animals is attributed to an altered cell proliferation rate in the anterior palatal mesenchyme and to the delayed palatal elevation in the posterior portion associated with ectopic cartilage formation. Despite enhanced activity of BMP signaling in the dental mesenchyme, tooth development and patterning in transgenic mice appeared normal except delayed odontogenic differentiation. These data support the hypothesis that a finely tuned level of BMPRIa-mediated signaling is essential for normal palate and tooth development.http://europepmc.org/articles/PMC3680418?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lu Li
Ying Wang
Minkui Lin
Guohua Yuan
Guobin Yang
Yuqian Zheng
Yiping Chen
spellingShingle Lu Li
Ying Wang
Minkui Lin
Guohua Yuan
Guobin Yang
Yuqian Zheng
Yiping Chen
Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.
PLoS ONE
author_facet Lu Li
Ying Wang
Minkui Lin
Guohua Yuan
Guobin Yang
Yuqian Zheng
Yiping Chen
author_sort Lu Li
title Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.
title_short Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.
title_full Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.
title_fullStr Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.
title_full_unstemmed Augmented BMPRIA-mediated BMP signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.
title_sort augmented bmpria-mediated bmp signaling in cranial neural crest lineage leads to cleft palate formation and delayed tooth differentiation.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The importance of BMP receptor Ia (BMPRIa) mediated signaling in the development of craniofacial organs, including the tooth and palate, has been well illuminated in several mouse models of loss of function, and by its mutations associated with juvenile polyposis syndrome and facial defects in humans. In this study, we took a gain-of-function approach to further address the role of BMPR-IA-mediated signaling in the mesenchymal compartment during tooth and palate development. We generated transgenic mice expressing a constitutively active form of BmprIa (caBmprIa) in cranial neural crest (CNC) cells that contributes to the dental and palatal mesenchyme. Mice bearing enhanced BMPRIa-mediated signaling in CNC cells exhibit complete cleft palate and delayed odontogenic differentiation. We showed that the cleft palate defect in the transgenic animals is attributed to an altered cell proliferation rate in the anterior palatal mesenchyme and to the delayed palatal elevation in the posterior portion associated with ectopic cartilage formation. Despite enhanced activity of BMP signaling in the dental mesenchyme, tooth development and patterning in transgenic mice appeared normal except delayed odontogenic differentiation. These data support the hypothesis that a finely tuned level of BMPRIa-mediated signaling is essential for normal palate and tooth development.
url http://europepmc.org/articles/PMC3680418?pdf=render
work_keys_str_mv AT luli augmentedbmpriamediatedbmpsignalingincranialneuralcrestlineageleadstocleftpalateformationanddelayedtoothdifferentiation
AT yingwang augmentedbmpriamediatedbmpsignalingincranialneuralcrestlineageleadstocleftpalateformationanddelayedtoothdifferentiation
AT minkuilin augmentedbmpriamediatedbmpsignalingincranialneuralcrestlineageleadstocleftpalateformationanddelayedtoothdifferentiation
AT guohuayuan augmentedbmpriamediatedbmpsignalingincranialneuralcrestlineageleadstocleftpalateformationanddelayedtoothdifferentiation
AT guobinyang augmentedbmpriamediatedbmpsignalingincranialneuralcrestlineageleadstocleftpalateformationanddelayedtoothdifferentiation
AT yuqianzheng augmentedbmpriamediatedbmpsignalingincranialneuralcrestlineageleadstocleftpalateformationanddelayedtoothdifferentiation
AT yipingchen augmentedbmpriamediatedbmpsignalingincranialneuralcrestlineageleadstocleftpalateformationanddelayedtoothdifferentiation
_version_ 1724984585498918912