Literature DB >> 20724449

Inhibition of Wnt signaling by Wise (Sostdc1) and negative feedback from Shh controls tooth number and patterning.

Youngwook Ahn1, Brian W Sanderson, Ophir D Klein, Robb Krumlauf.   

Abstract

Mice carrying mutations in Wise (Sostdc1) display defects in many aspects of tooth development, including tooth number, size and cusp pattern. To understand the basis of these defects, we have investigated the pathways modulated by Wise in tooth development. We present evidence that, in tooth development, Wise suppresses survival of the diastema or incisor vestigial buds by serving as an inhibitor of Lrp5- and Lrp6-dependent Wnt signaling. Reducing the dosage of the Wnt co-receptor genes Lrp5 and Lrp6 rescues the Wise-null tooth phenotypes. Inactivation of Wise leads to elevated Wnt signaling and, as a consequence, vestigial tooth buds in the normally toothless diastema region display increased proliferation and continuous development to form supernumerary teeth. Conversely, gain-of-function studies show that ectopic Wise reduces Wnt signaling and tooth number. Our analyses demonstrate that the Fgf and Shh pathways are major downstream targets of Wise-regulated Wnt signaling. Furthermore, our experiments revealed that Shh acts as a negative-feedback regulator of Wnt signaling and thus determines the fate of the vestigial buds and later tooth patterning. These data provide insight into the mechanisms that control Wnt signaling in tooth development and into how crosstalk among signaling pathways controls tooth number and morphogenesis.

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Year:  2010        PMID: 20724449      PMCID: PMC6512258          DOI: 10.1242/dev.054668

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  54 in total

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Journal:  Int J Dev Biol       Date:  2000-02       Impact factor: 2.203

2.  An LDL-receptor-related protein mediates Wnt signalling in mice.

Authors:  K I Pinson; J Brennan; S Monkley; B J Avery; W C Skarnes
Journal:  Nature       Date:  2000-09-28       Impact factor: 49.962

3.  Localization of activated caspase-3-positive and apoptotic cells in the developing tooth germ of the mouse lower first molar.

Authors:  N Shigemura; T Kiyoshima; T Sakai; K Matsuo; T Momoi; H Yamaza; I Kobayashi; H Wada; A Akamine; H Sakai
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4.  Intestinal polyposis in mice with a dominant stable mutation of the beta-catenin gene.

Authors:  N Harada; Y Tamai; T Ishikawa; B Sauer; K Takaku; M Oshima; M M Taketo
Journal:  EMBO J       Date:  1999-11-01       Impact factor: 11.598

5.  Expression of Wnt signalling pathway genes during tooth development.

Authors:  L Sarkar; P T Sharpe
Journal:  Mech Dev       Date:  1999-07       Impact factor: 1.882

6.  Generation of Bmpr/Alk3 conditional knockout mice.

Authors:  Yuji Mishina; Mark C Hanks; Shigeto Miura; Michelle D Tallquist; Richard R Behringer
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7.  Efficient recombination in diverse tissues by a tamoxifen-inducible form of Cre: a tool for temporally regulated gene activation/inactivation in the mouse.

Authors:  Shigemi Hayashi; Andrew P McMahon
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8.  Mouse patched1 controls body size determination and limb patterning.

Authors:  L Milenkovic; L V Goodrich; K M Higgins; M P Scott
Journal:  Development       Date:  1999-10       Impact factor: 6.868

9.  Multiple roles for activated LEF/TCF transcription complexes during hair follicle development and differentiation.

Authors:  R DasGupta; E Fuchs
Journal:  Development       Date:  1999-10       Impact factor: 6.868

10.  Sonic hedgehog regulates growth and morphogenesis of the tooth.

Authors:  H R Dassule; P Lewis; M Bei; R Maas; A P McMahon
Journal:  Development       Date:  2000-11       Impact factor: 6.868

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  89 in total

Review 1.  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

Review 2.  Apoptotic signaling in mouse odontogenesis.

Authors:  Eva Matalova; Eva Svandova; Abigail S Tucker
Journal:  OMICS       Date:  2011-12-28

3.  Regional Control of Hairless versus Hair-Bearing Skin by Dkk2.

Authors:  Yaolin Song; Ana C Boncompagni; Sang-Seok Kim; Heather R Gochnauer; Yuhang Zhang; Gabriela G Loots; Dianqing Wu; Yulin Li; Mingang Xu; Sarah E Millar
Journal:  Cell Rep       Date:  2018-11-30       Impact factor: 9.423

4.  Beta-catenin signaling regulates barrier-specific gene expression in circumventricular organ and ocular vasculatures.

Authors:  Yanshu Wang; Mark F Sabbagh; Xiaowu Gu; Amir Rattner; John Williams; Jeremy Nathans
Journal:  Elife       Date:  2019-04-01       Impact factor: 8.140

5.  SMAD4-mediated WNT signaling controls the fate of cranial neural crest cells during tooth morphogenesis.

Authors:  Jingyuan Li; Xiaofeng Huang; Xun Xu; Julie Mayo; Pablo Bringas; Rulang Jiang; Songling Wang; Yang Chai
Journal:  Development       Date:  2011-04-13       Impact factor: 6.868

Review 6.  An inductive signalling network regulates mammalian tooth morphogenesis with implications for tooth regeneration.

Authors:  Z Li; M Yu; W Tian
Journal:  Cell Prolif       Date:  2013-08-17       Impact factor: 6.831

7.  Molecular and engineering approaches to regenerate and repair teeth in mammals.

Authors:  Wing-Fu Lai; Jong-Min Lee; Han-Sung Jung
Journal:  Cell Mol Life Sci       Date:  2013-11-24       Impact factor: 9.261

Review 8.  Aetiology of supernumerary teeth: a literature review.

Authors:  R P Anthonappa; N M King; A B M Rabie
Journal:  Eur Arch Paediatr Dent       Date:  2013-09-26

Review 9.  WNT signaling in bone homeostasis and disease: from human mutations to treatments.

Authors:  Roland Baron; Michaela Kneissel
Journal:  Nat Med       Date:  2013-02-06       Impact factor: 53.440

10.  Common developmental pathways link tooth shape to regeneration.

Authors:  Gareth J Fraser; Ryan F Bloomquist; J Todd Streelman
Journal:  Dev Biol       Date:  2013-02-17       Impact factor: 3.582

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