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An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family

Congenital tooth agenesis is caused by mutations in the MSX1, PAX9, WNT10A, or AXIN2 genes. Here, we report a Japanese family with nonsyndromic tooth agenesis caused by a novel nucleotide substitution in the intronic region between exons 1 and 2 of the MSX1 gene. Because the mutation is located 9 bp...

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Autores principales: Tatematsu, Tadashi, Kimura, Masashi, Nakashima, Mitsuko, Machida, Junichiro, Yamaguchi, Seishi, Shibata, Akio, Goto, Hiroki, Nakayama, Atsuo, Higashi, Yujiro, Miyachi, Hitoshi, Shimozato, Kazuo, Matsumoto, Naomichi, Tokita, Yoshihito
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4451150/
https://www.ncbi.nlm.nih.gov/pubmed/26030286
http://dx.doi.org/10.1371/journal.pone.0128227
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author Tatematsu, Tadashi
Kimura, Masashi
Nakashima, Mitsuko
Machida, Junichiro
Yamaguchi, Seishi
Shibata, Akio
Goto, Hiroki
Nakayama, Atsuo
Higashi, Yujiro
Miyachi, Hitoshi
Shimozato, Kazuo
Matsumoto, Naomichi
Tokita, Yoshihito
author_facet Tatematsu, Tadashi
Kimura, Masashi
Nakashima, Mitsuko
Machida, Junichiro
Yamaguchi, Seishi
Shibata, Akio
Goto, Hiroki
Nakayama, Atsuo
Higashi, Yujiro
Miyachi, Hitoshi
Shimozato, Kazuo
Matsumoto, Naomichi
Tokita, Yoshihito
author_sort Tatematsu, Tadashi
collection PubMed
description Congenital tooth agenesis is caused by mutations in the MSX1, PAX9, WNT10A, or AXIN2 genes. Here, we report a Japanese family with nonsyndromic tooth agenesis caused by a novel nucleotide substitution in the intronic region between exons 1 and 2 of the MSX1 gene. Because the mutation is located 9 bp before exon 2 (c.452-9G>A), we speculated that the nucleotide substitution would generate an abnormal splice site. Using cDNA analysis of an immortalized patient blood cell, we confirmed that an additional 7-nucleotide sequence was inserted at the splice junction between exons 1 and 2 (c.451_452insCCCTCAG). The consequent frameshift generated a homeodomain-truncated MSX1 (p.R151fsX20). We then studied the subcellular localization of truncated MSX1 protein in COS cells, and observed that it had a whole cell distribution more than a nuclear localization, compared to that of wild-type protein. This result suggests a deletion of the nuclear localization signal, which is mapped to the MSX1 homeodomain. These results indicate that this novel intronic nucleotide substitution is the cause of tooth agenesis in this family. To date, most MSX1 variants isolated from patients with tooth agenesis involve single amino acid substitutions in the highly conserved homeodomain or deletion mutants caused by frameshift or nonsense mutations. We here report a rare case of an intronic mutation of the MSX1 gene responsible for human tooth agenesis. In addition, the missing tooth patterns were slightly but significantly different between an affected monozygotic twin pair of this family, showing that epigenetic or environmental factors also affect the phenotypic variations of missing teeth among patients with nonsyndromic tooth agenesis caused by an MSX1 haploinsufficiency.
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spelling pubmed-44511502015-06-09 An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family Tatematsu, Tadashi Kimura, Masashi Nakashima, Mitsuko Machida, Junichiro Yamaguchi, Seishi Shibata, Akio Goto, Hiroki Nakayama, Atsuo Higashi, Yujiro Miyachi, Hitoshi Shimozato, Kazuo Matsumoto, Naomichi Tokita, Yoshihito PLoS One Research Article Congenital tooth agenesis is caused by mutations in the MSX1, PAX9, WNT10A, or AXIN2 genes. Here, we report a Japanese family with nonsyndromic tooth agenesis caused by a novel nucleotide substitution in the intronic region between exons 1 and 2 of the MSX1 gene. Because the mutation is located 9 bp before exon 2 (c.452-9G>A), we speculated that the nucleotide substitution would generate an abnormal splice site. Using cDNA analysis of an immortalized patient blood cell, we confirmed that an additional 7-nucleotide sequence was inserted at the splice junction between exons 1 and 2 (c.451_452insCCCTCAG). The consequent frameshift generated a homeodomain-truncated MSX1 (p.R151fsX20). We then studied the subcellular localization of truncated MSX1 protein in COS cells, and observed that it had a whole cell distribution more than a nuclear localization, compared to that of wild-type protein. This result suggests a deletion of the nuclear localization signal, which is mapped to the MSX1 homeodomain. These results indicate that this novel intronic nucleotide substitution is the cause of tooth agenesis in this family. To date, most MSX1 variants isolated from patients with tooth agenesis involve single amino acid substitutions in the highly conserved homeodomain or deletion mutants caused by frameshift or nonsense mutations. We here report a rare case of an intronic mutation of the MSX1 gene responsible for human tooth agenesis. In addition, the missing tooth patterns were slightly but significantly different between an affected monozygotic twin pair of this family, showing that epigenetic or environmental factors also affect the phenotypic variations of missing teeth among patients with nonsyndromic tooth agenesis caused by an MSX1 haploinsufficiency. Public Library of Science 2015-06-01 /pmc/articles/PMC4451150/ /pubmed/26030286 http://dx.doi.org/10.1371/journal.pone.0128227 Text en © 2015 Tatematsu 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
Tatematsu, Tadashi
Kimura, Masashi
Nakashima, Mitsuko
Machida, Junichiro
Yamaguchi, Seishi
Shibata, Akio
Goto, Hiroki
Nakayama, Atsuo
Higashi, Yujiro
Miyachi, Hitoshi
Shimozato, Kazuo
Matsumoto, Naomichi
Tokita, Yoshihito
An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family
title An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family
title_full An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family
title_fullStr An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family
title_full_unstemmed An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family
title_short An Aberrant Splice Acceptor Site Due to a Novel Intronic Nucleotide Substitution in MSX1 Gene Is the Cause of Congenital Tooth Agenesis in a Japanese Family
title_sort aberrant splice acceptor site due to a novel intronic nucleotide substitution in msx1 gene is the cause of congenital tooth agenesis in a japanese family
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4451150/
https://www.ncbi.nlm.nih.gov/pubmed/26030286
http://dx.doi.org/10.1371/journal.pone.0128227
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