Literature DB >> 19219933

Genetic basis of tooth agenesis.

Pekka Nieminen1.   

Abstract

Tooth agenesis or hypodontia, failure to develop all normally developing teeth, is one of the most common developmental anomalies in man. Common forms, including third molar agenesis and hypodontia of one or more of the incisors and premolars, constitute the great majority of cases. They typically affect those teeth that develop latest in each tooth class and these teeth are also most commonly affected in more severe and rare types of tooth agenesis. Specific vulnerability of the last developing teeth suggests that agenesis reflects quantitative defects during dental development. So far molecular genetics has revealed the genetic background of only rare forms of tooth agenesis. Mutations in MSX1, PAX9, AXIN2 and EDA have been identified in familial severe agenesis (oligodontia) and mutations in many other genes have been identified in syndromes in which tooth agenesis is a regular feature. Heterozygous loss of function mutations in many genes reduce the gene dose, whereas e.g. in hypohidrotic ectodermal dysplasia (EDA) the complete inactivation of the partially redundant signaling pathway reduces the signaling centers. Although these mechanisms involve quantitative disturbances, the phenotypes associated with mutations in different genes indicate that in addition to an overall reduction of odontogenic potential, tooth class-specific and more complex mechanisms are also involved. Although several of the genes so far identified in rare forms of tooth agenesis are being studied as candidate genes of common third molar agenesis and incisor and premolar hypodontia, it is plausible that novel genes that contribute to these phenotypes will also become identified. (c) 2009 Wiley-Liss, Inc.

Entities:  

Mesh:

Year:  2009        PMID: 19219933     DOI: 10.1002/jez.b.21277

Source DB:  PubMed          Journal:  J Exp Zool B Mol Dev Evol        ISSN: 1552-5007            Impact factor:   2.656


  62 in total

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3.  Nine Novel PAX9 Mutations and a Distinct Tooth Agenesis Genotype-Phenotype.

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Journal:  J Dent Res       Date:  2017-09-14       Impact factor: 6.116

Review 4.  Genetic Basis of Nonsyndromic and Syndromic Tooth Agenesis.

Authors:  Xiaoqian Ye; Ali B Attaie
Journal:  J Pediatr Genet       Date:  2016-09-26

Review 5.  The multidisciplinary management of hypodontia: a team approach.

Authors:  D S Gill; C S Barker
Journal:  Br Dent J       Date:  2015-02-16       Impact factor: 1.626

6.  A biallelic ANTXR1 variant expands the anthrax toxin receptor associated phenotype to tooth agenesis.

Authors:  Nuriye Dinckan; Renqian Du; Zeynep C Akdemir; Yavuz Bayram; Shalini N Jhangiani; Harsha Doddapaneni; Jianhong Hu; Donna M Muzny; Yeliz Guven; Oya Aktoren; Hulya Kayserili; Eric Boerwinkle; Richard A Gibbs; Jennifer E Posey; James R Lupski; Zehra O Uyguner; Ariadne Letra
Journal:  Am J Med Genet A       Date:  2018-02-13       Impact factor: 2.802

7.  On the difficulty of increasing dental complexity.

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8.  Inactivation of IL11 signaling causes craniosynostosis, delayed tooth eruption, and supernumerary teeth.

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Journal:  Am J Hum Genet       Date:  2011-07-15       Impact factor: 11.025

9.  Loss-of-Function Mutations in the WNT Co-receptor LRP6 Cause Autosomal-Dominant Oligodontia.

Authors:  Maarten P G Massink; Marijn A Créton; Francesca Spanevello; Willem M M Fennis; Marco S Cune; Sanne M C Savelberg; Isaäc J Nijman; Madelon M Maurice; Marie-José H van den Boogaard; Gijs van Haaften
Journal:  Am J Hum Genet       Date:  2015-09-17       Impact factor: 11.025

10.  Phenotype characterization and sequence analysis of BMP2 and BMP4 variants in two Mexican families with oligodontia.

Authors:  Y Mu; Z Xu; C I Contreras; J S McDaniel; K J Donly; S Chen
Journal:  Genet Mol Res       Date:  2012-11-28
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