Literature DB >> 20618434

Splitting placodes: effects of bone morphogenetic protein and Activin on the patterning and identity of mouse incisors.

Pauliina M Munne1, Szabolcs Felszeghy, Maria Jussila, Marika Suomalainen, Irma Thesleff, Jukka Jernvall.   

Abstract

The single large rodent incisor in each jaw quadrant is evolutionarily derived from a mammalian ancestor with many small incisors. The embryonic placode giving rise to the mouse incisor is considerably larger than the molar placode, and the question remains whether this large incisor placode is a developmental requisite to make a thick incisor. Here we used in vitro culture system to experiment with the molecular mechanism regulating tooth placode development and how mice have thick incisors. We found that large placodes are prone to disintegration and formation of two to three small incisor placodes. The balance between one large or multiple small placodes was altered through the regulation of bone morphogenetic protein (BMP) and Activin signaling. Exogenous Noggin, which inhibits BMP signaling, or exogenous Activin cause the development of two to three incisors. These incisors were more slender than normal incisors. Additionally, two inhibitor molecules, Sostdc1 and Follistatin, which regulate the effects of BMPs and Activin and have opposite expression patterns, are likely to be involved in the incisor placode regulation in vivo. Furthermore, inhibition of BMPs by recombinant Noggin has been previously suggested to cause a change in the tooth identity from the incisor to the molar. This evidence has been used to support a homeobox code in determining tooth identity. Our work provides an alternative interpretation, where the inhibition of BMP signaling can lead to splitting of the large incisor placode and the formation of partly separate incisors, thereby acquiring molar-like morphology without a change in tooth identity.

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Year:  2010        PMID: 20618434     DOI: 10.1111/j.1525-142X.2010.00425.x

Source DB:  PubMed          Journal:  Evol Dev        ISSN: 1520-541X            Impact factor:   1.930


  26 in total

1.  Modularity in the mammalian dentition: mice and monkeys share a common dental genetic architecture.

Authors:  Leslea J Hlusko; Richard D Sage; Michael C Mahaney
Journal:  J Exp Zool B Mol Dev Evol       Date:  2011-01-15       Impact factor: 2.656

Review 2.  Update on Wnt signaling in bone cell biology and bone disease.

Authors:  David G Monroe; Meghan E McGee-Lawrence; Merry Jo Oursler; Jennifer J Westendorf
Journal:  Gene       Date:  2011-11-03       Impact factor: 3.688

3.  Noggin is required for early development of murine upper incisors.

Authors:  X Hu; Y Wang; F He; L Li; Y Zheng; Y Zhang; Y P Chen
Journal:  J Dent Res       Date:  2012-02-02       Impact factor: 6.116

4.  BMP activity is required for tooth development from the lamina to bud stage.

Authors:  Y Wang; L Li; Y Zheng; G Yuan; G Yang; F He; Y Chen
Journal:  J Dent Res       Date:  2012-05-16       Impact factor: 6.116

5.  Spatially restricted dental regeneration drives pufferfish beak development.

Authors:  Alexandre P Thiery; Takanori Shono; Daisuke Kurokawa; Ralf Britz; Zerina Johanson; Gareth J Fraser
Journal:  Proc Natl Acad Sci U S A       Date:  2017-05-15       Impact factor: 11.205

6.  Regulation of tooth number by fine-tuning levels of receptor-tyrosine kinase signaling.

Authors:  Cyril Charles; Maria Hovorakova; Youngwook Ahn; David B Lyons; Pauline Marangoni; Svatava Churava; Brian Biehs; Andrew Jheon; Hervé Lesot; Guive Balooch; Robb Krumlauf; Laurent Viriot; Renata Peterkova; Ophir D Klein
Journal:  Development       Date:  2011-09       Impact factor: 6.868

Review 7.  From molecules to mastication: the development and evolution of teeth.

Authors:  Andrew H Jheon; Kerstin Seidel; Brian Biehs; Ophir D Klein
Journal:  Wiley Interdiscip Rev Dev Biol       Date:  2012-05-03       Impact factor: 5.814

8.  Manipulation of Fgf and Bmp signaling in teleost fishes suggests potential pathways for the evolutionary origin of multicuspid teeth.

Authors:  William R Jackman; Shelby H Davies; David B Lyons; Caitlin K Stauder; Benjamin R Denton-Schneider; Andrea Jowdry; Sharon R Aigler; Scott A Vogel; David W Stock
Journal:  Evol Dev       Date:  2013 Mar-Apr       Impact factor: 1.930

9.  Wnt/β-catenin signaling in the dental mesenchyme regulates incisor development by regulating Bmp4.

Authors:  Sayumi Fujimori; Hermann Novak; Martina Weissenböck; Maria Jussila; Alexandre Gonçalves; Rolf Zeller; Jenna Galloway; Irma Thesleff; Christine Hartmann
Journal:  Dev Biol       Date:  2010-09-27       Impact factor: 3.582

Review 10.  Common mechanisms in development and disease: BMP signaling in craniofacial development.

Authors:  Daniel Graf; Zeba Malik; Satoru Hayano; Yuji Mishina
Journal:  Cytokine Growth Factor Rev       Date:  2015-11-24       Impact factor: 7.638

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