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Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6

Amelogenesis imperfecta (AI) is a group of inherited conditions featuring isolated enamel malformations. About 5% of AI cases show an X-linked pattern of inheritance, which are caused by mutations in AMELX. In humans there are two, non-allelic amelogenin genes: AMELX (Xp22.3) and AMELY (Yp11.2). Abo...

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Autores principales: Hu, Jan C.-C., Chan, Hui-Chen, Simmer, Stephen G., Seymen, Figen, Richardson, Amelia S., Hu, Yuanyuan, Milkovich, Rachel N., Estrella, Ninna M. R. P., Yildirim, Mine, Bayram, Merve, Chen, Chiung-Fen, Simmer, James P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3522662/
https://www.ncbi.nlm.nih.gov/pubmed/23251683
http://dx.doi.org/10.1371/journal.pone.0052052
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author Hu, Jan C.-C.
Chan, Hui-Chen
Simmer, Stephen G.
Seymen, Figen
Richardson, Amelia S.
Hu, Yuanyuan
Milkovich, Rachel N.
Estrella, Ninna M. R. P.
Yildirim, Mine
Bayram, Merve
Chen, Chiung-Fen
Simmer, James P.
author_facet Hu, Jan C.-C.
Chan, Hui-Chen
Simmer, Stephen G.
Seymen, Figen
Richardson, Amelia S.
Hu, Yuanyuan
Milkovich, Rachel N.
Estrella, Ninna M. R. P.
Yildirim, Mine
Bayram, Merve
Chen, Chiung-Fen
Simmer, James P.
author_sort Hu, Jan C.-C.
collection PubMed
description Amelogenesis imperfecta (AI) is a group of inherited conditions featuring isolated enamel malformations. About 5% of AI cases show an X-linked pattern of inheritance, which are caused by mutations in AMELX. In humans there are two, non-allelic amelogenin genes: AMELX (Xp22.3) and AMELY (Yp11.2). About 90% of amelogenin expression is from AMELX, which is nested within intron 1 of the gene encoding Rho GTPase activating protein 6 (ARHGAP6). We recruited two AI families and determined that their disease-causing mutations were partial deletions in ARHGAP6 that completely deleted AMELX. Affected males in both families had a distinctive enamel phenotype resembling “snow-capped” teeth. The 96,240 bp deletion in family 1 was confined to intron 1 of ARHGAP6 (g.302534_398773del96240), but removed alternative ARHGAP6 promoters 1c and 1d. Analyses of developing teeth in mice showed that ARHGAP6 is not expressed from these promoters in ameloblasts. The 52,654 bp deletion in family 2 (g.363924_416577del52654insA) removed ARHGAP6 promoter 1d and exon 2, precluding normal expression of ARHGAP6. The male proband of family 2 had slightly thinner enamel with greater surface roughness, but exhibited the same pattern of enamel malformations characteristic of males in family 1, which themselves showed minor variations in their enamel phenotypes. We conclude that the enamel defects in both families were caused by amelogenin insufficiency, that deletion of AMELX results in males with a characteristic snow-capped enamel phenotype, and failed ARHGAP6 expression did not appreciably alter the severity of enamel defects when AMELX was absent.
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spelling pubmed-35226622012-12-18 Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6 Hu, Jan C.-C. Chan, Hui-Chen Simmer, Stephen G. Seymen, Figen Richardson, Amelia S. Hu, Yuanyuan Milkovich, Rachel N. Estrella, Ninna M. R. P. Yildirim, Mine Bayram, Merve Chen, Chiung-Fen Simmer, James P. PLoS One Research Article Amelogenesis imperfecta (AI) is a group of inherited conditions featuring isolated enamel malformations. About 5% of AI cases show an X-linked pattern of inheritance, which are caused by mutations in AMELX. In humans there are two, non-allelic amelogenin genes: AMELX (Xp22.3) and AMELY (Yp11.2). About 90% of amelogenin expression is from AMELX, which is nested within intron 1 of the gene encoding Rho GTPase activating protein 6 (ARHGAP6). We recruited two AI families and determined that their disease-causing mutations were partial deletions in ARHGAP6 that completely deleted AMELX. Affected males in both families had a distinctive enamel phenotype resembling “snow-capped” teeth. The 96,240 bp deletion in family 1 was confined to intron 1 of ARHGAP6 (g.302534_398773del96240), but removed alternative ARHGAP6 promoters 1c and 1d. Analyses of developing teeth in mice showed that ARHGAP6 is not expressed from these promoters in ameloblasts. The 52,654 bp deletion in family 2 (g.363924_416577del52654insA) removed ARHGAP6 promoter 1d and exon 2, precluding normal expression of ARHGAP6. The male proband of family 2 had slightly thinner enamel with greater surface roughness, but exhibited the same pattern of enamel malformations characteristic of males in family 1, which themselves showed minor variations in their enamel phenotypes. We conclude that the enamel defects in both families were caused by amelogenin insufficiency, that deletion of AMELX results in males with a characteristic snow-capped enamel phenotype, and failed ARHGAP6 expression did not appreciably alter the severity of enamel defects when AMELX was absent. Public Library of Science 2012-12-14 /pmc/articles/PMC3522662/ /pubmed/23251683 http://dx.doi.org/10.1371/journal.pone.0052052 Text en © 2012 Hu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hu, Jan C.-C.
Chan, Hui-Chen
Simmer, Stephen G.
Seymen, Figen
Richardson, Amelia S.
Hu, Yuanyuan
Milkovich, Rachel N.
Estrella, Ninna M. R. P.
Yildirim, Mine
Bayram, Merve
Chen, Chiung-Fen
Simmer, James P.
Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6
title Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6
title_full Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6
title_fullStr Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6
title_full_unstemmed Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6
title_short Amelogenesis Imperfecta in Two Families with Defined AMELX Deletions in ARHGAP6
title_sort amelogenesis imperfecta in two families with defined amelx deletions in arhgap6
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3522662/
https://www.ncbi.nlm.nih.gov/pubmed/23251683
http://dx.doi.org/10.1371/journal.pone.0052052
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