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Rare Genetic Variants in Human APC Are Implicated in Mesiodens and Isolated Supernumerary Teeth
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Metadata
Document Title
Rare Genetic Variants in Human APC Are Implicated in Mesiodens and Isolated Supernumerary Teeth
Author
Panyarat C. Nakornchai S. Chintakanon K. Leelaadisorn N. Intachai W. Olsen B. Tongsima S. Adisornkanj P. Ngamphiw C. Cox T.C. Kantaputra P.
Affiliations
Center of Excellence in Medical Genetics Research Faculty of Dentistry Chiang Mai University Chiang Mai 50200 Thailand; Division of Pediatric Dentistry Department of Orthodontics and Pediatric Dentistry Faculty of Dentistry Chiang Mai University Chiang Mai 50200 Thailand; Department of Pediatric Dentistry Faculty of Dentistry Mahidol University Bangkok 10400 Thailand; Division of Orthodontics Department of Orthodontics and Pediatric Dentistry Faculty of Dentistry Chiang Mai University Chiang Mai 50200 Thailand; Theera-Niramol Dental Clinic Roi-et45000 Thailand; Department of Developmental Biology Harvard School of Dental Medicine Boston MA 02115 United States; National Biobank of Thailand National Science and Technology Development Agency (NSTDA) Thailand Science Park Pathum Thani12120 Thailand; Dental Department Sawang Daen Din Crown Prince Hospital Sakon Nakhon 47110 Thailand; Departments of Oral & Craniofacial Sciences School of Dentistry and Pediatrics School of Medicine University of Missouri-Kansas City Kansas City MO 64108 United States
Type
Article
Source Title
International Journal of Molecular Sciences
ISSN
16616596
Year
2023
Volume
24
Issue
5
Open Access
All Open Access Gold Green
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
DOI
10.3390/ijms24054255
Abstract
The activation of Wnt/?-catenin signalling is a prerequisite for odontogenesis. APC a member of the AXIN-CK1-GSK3?-APC ?-catenin destruction complex functions to modulate Wnt/?-catenin signalling to establish regular teeth number and positions. APC loss-of-function mutations are associated with the over-activation of WNT/?-catenin signalling and subsequent familial adenomatous polyposis (FAP; MIM 175100) with or without multiple supernumerary teeth. The ablation of Apc function in mice also results in the constitutive activation of ?-catenin in embryonic mouse epithelium and causes supernumerary tooth formation. The objective of this study was to investigate if genetic variants in the APC gene were associated with supernumerary tooth phenotypes. We clinically radiographically and molecularly investigated 120 Thai patients with mesiodentes or isolated supernumerary teeth. Whole exome and Sanger sequencing identified three extremely rare heterozygous variants (c.3374T>C p.Val1125Ala; c.6127A>G p.Ile2043Val; and c.8383G>A p.Ala2795Thr) in APC in four patients with mesiodentes or a supernumerary premolar. An additional patient with mesiodens was compound as heterozygous for two APC variants (c.2740T>G p.Cys914Gly and c.5722A>T p.Asn1908Tyr). Rare variants in APC in our patients are likely to contribute to isolated supernumerary dental phenotypes including isolated mesiodens and an isolated supernumerary tooth. ? 2023 by the authors.
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Knowledge Taxonomy Level 3
License
CC BY
Rights
Authors
Publication Source
WOS