Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.

Pachyonychia congenita (PC) is a cutaneous disorder primarily characterized by nail dystrophy and painful palmoplantar keratoderma. PC is caused by mutations in KRT6A, KRT6B, KRT6C, KRT16, and KRT17, a set of keratin genes expressed in the nail bed, palmoplantar epidermis, oral mucosal epithelium, h...

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Main Authors: Olivier Duverger, Jenna C Carlson, Chelsea M Karacz, Mary E Schwartz, Michael A Cross, Mary L Marazita, John R Shaffer, Maria I Morasso
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC5794186?pdf=render
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spelling doaj-bf0a59d5a8744cc9b3dcea50b5834f4d2020-11-25T02:11:48ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042018-01-01141e100716810.1371/journal.pgen.1007168Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.Olivier DuvergerJenna C CarlsonChelsea M KaraczMary E SchwartzMichael A CrossMary L MarazitaJohn R ShafferMaria I MorassoPachyonychia congenita (PC) is a cutaneous disorder primarily characterized by nail dystrophy and painful palmoplantar keratoderma. PC is caused by mutations in KRT6A, KRT6B, KRT6C, KRT16, and KRT17, a set of keratin genes expressed in the nail bed, palmoplantar epidermis, oral mucosal epithelium, hair follicle and sweat gland. RNA-seq analysis revealed that all PC-associated keratins (except for Krt6c that does exist in the mouse genome) are expressed in the mouse enamel organ. We further demonstrated that these keratins are produced by ameloblasts and are incorporated into mature human enamel. Using genetic and intraoral examination data from 573 adults and 449 children, we identified several missense polymorphisms in KRT6A, KRT6B and KRT6C that lead to a higher risk for dental caries. Structural analysis of teeth from a PC patient carrying a p.Asn171Lys substitution in keratin-6a (K6a) revealed disruption of enamel rod sheaths resulting in altered rod shape and distribution. Finally, this PC-associated substitution as well as more frequent caries-associated SNPs, found in two of the KRT6 genes, that result in p.Ser143Asn substitution (rs28538343 in KRT6B and rs151117600 in KRT6C), alter the assembly of K6 filaments in ameloblast-like cells. These results identify a new set of keratins involved in tooth enamel formation, distinguish novel susceptibility loci for tooth decay and reveal additional clinical features of pachyonychia congenita.http://europepmc.org/articles/PMC5794186?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Olivier Duverger
Jenna C Carlson
Chelsea M Karacz
Mary E Schwartz
Michael A Cross
Mary L Marazita
John R Shaffer
Maria I Morasso
spellingShingle Olivier Duverger
Jenna C Carlson
Chelsea M Karacz
Mary E Schwartz
Michael A Cross
Mary L Marazita
John R Shaffer
Maria I Morasso
Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.
PLoS Genetics
author_facet Olivier Duverger
Jenna C Carlson
Chelsea M Karacz
Mary E Schwartz
Michael A Cross
Mary L Marazita
John R Shaffer
Maria I Morasso
author_sort Olivier Duverger
title Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.
title_short Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.
title_full Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.
title_fullStr Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.
title_full_unstemmed Genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.
title_sort genetic variants in pachyonychia congenita-associated keratins increase susceptibility to tooth decay.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2018-01-01
description Pachyonychia congenita (PC) is a cutaneous disorder primarily characterized by nail dystrophy and painful palmoplantar keratoderma. PC is caused by mutations in KRT6A, KRT6B, KRT6C, KRT16, and KRT17, a set of keratin genes expressed in the nail bed, palmoplantar epidermis, oral mucosal epithelium, hair follicle and sweat gland. RNA-seq analysis revealed that all PC-associated keratins (except for Krt6c that does exist in the mouse genome) are expressed in the mouse enamel organ. We further demonstrated that these keratins are produced by ameloblasts and are incorporated into mature human enamel. Using genetic and intraoral examination data from 573 adults and 449 children, we identified several missense polymorphisms in KRT6A, KRT6B and KRT6C that lead to a higher risk for dental caries. Structural analysis of teeth from a PC patient carrying a p.Asn171Lys substitution in keratin-6a (K6a) revealed disruption of enamel rod sheaths resulting in altered rod shape and distribution. Finally, this PC-associated substitution as well as more frequent caries-associated SNPs, found in two of the KRT6 genes, that result in p.Ser143Asn substitution (rs28538343 in KRT6B and rs151117600 in KRT6C), alter the assembly of K6 filaments in ameloblast-like cells. These results identify a new set of keratins involved in tooth enamel formation, distinguish novel susceptibility loci for tooth decay and reveal additional clinical features of pachyonychia congenita.
url http://europepmc.org/articles/PMC5794186?pdf=render
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