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Novel nonsense mutation in MSX1 in familial nonsyndromic oligodontia: subcellular localization and role of homeodomain/MH4.

作者信息

Kimura Masashi, Machida Junichiro, Yamaguchi Seishi, Shibata Akio, Tatematsu Tadashi, Miyachi Hitoshi, Jezewski Peter A, Nakayama Atsuo, Higashi Yujiro, Shimozato Kazuo, Tokita Yoshihito

机构信息

Department of Maxillofacial Surgery, Aichi-Gakuin University School of Dentistry, Nagoya, Japan; Department of Perinatology, Institute for Developmental Research, Aichi-Human Service Center, Kasugai, Japan.

出版信息

Eur J Oral Sci. 2014 Feb;122(1):15-20. doi: 10.1111/eos.12105. Epub 2013 Dec 11.


DOI:10.1111/eos.12105
PMID:24329876
Abstract

Nonsyndromic tooth agenesis is one of the most common anomalies in human development. Part of the malformation is inherited and is associated with paired box 9 (PAX9), msh homeobox 1 (MSX1), and axin 2 (AXIN2) mutations. To obtain a comprehensive understanding of the genetic and molecular mechanisms that underlie this genetic disease, we investigated six familial and seven sporadic Japanese cases of nonsyndromic tooth agenesis. Searches for mutations in these candidate genes detected a novel nonsense mutation (c.416G>A) in exon 1 of MSX1 from a family with oligodontia. This mutation co-segregated in the affected family members. Moreover, this mutation produced a termination codon in the first exon and therefore the gene product (W139X) was truncated at the C terminus, hence, the entire homeodomain/MH4, which has many functions, such as DNA binding, protein-protein interaction, and nuclear localization, was absent. We characterized the properties of this truncated MSX1 by investigating the subcellular localization of the mutant gene product in transfected cells. The wild-type MSX1 localized exclusively at the nuclear periphery of transfected cells, whereas the mutant MSX1 was stable but localized diffusely throughout the whole cell. These results indicate that W139X MSX1 is responsible for tooth agenesis.

摘要

相似文献

[1]
Novel nonsense mutation in MSX1 in familial nonsyndromic oligodontia: subcellular localization and role of homeodomain/MH4.

Eur J Oral Sci. 2014-2

[2]
Sequence analysis of PAX9, MSX1 and AXIN2 genes in a Chinese oligodontia family.

Arch Oral Biol. 2011-4-29

[3]
Mutations in MSX1, PAX9 and MMP20 genes in Saudi Arabian patients with tooth agenesis.

Eur J Med Genet. 2016-8

[4]
Nonsyndromic oligodontia : Does the Tooth Agenesis Code (TAC) enable prediction of the causative mutation?

J Orofac Orthop. 2017-3

[5]
Genetic study of non-syndromic tooth agenesis through the screening of paired box 9, msh homeobox 1, axin 2, and Wnt family member 10A genes: a case-series.

Eur J Oral Sci. 2018-2

[6]
Exclusion of coding region mutations in MSX1, PAX9 and AXIN2 in eight patients with severe oligodontia phenotype.

Orthod Craniofac Res. 2006-8

[7]
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.

PLoS One. 2015-6-1

[8]
Next generation sequencing reveals a novel nonsense mutation in MSX1 gene related to oligodontia.

PLoS One. 2018-9-7

[9]
A novel mutation of MSX1 in oligodontia inhibits odontogenesis of dental pulp stem cells via the ERK pathway.

Stem Cell Res Ther. 2018-8-22

[10]
Mutational analysis of AXIN2, MSX1, and PAX9 in two Mexican oligodontia families.

Genet Mol Res. 2013-10-10

引用本文的文献

[1]
Novel Gene Variants in Chinese Children with Non-Syndromic Tooth Agenesis: A Clinical and Genetic Analysis.

Children (Basel). 2024-11-24

[2]
Novel WNT10A variant in a Japanese case of nonsyndromic oligodontia.

Hum Genome Var. 2023-1-26

[3]
Association between tooth agenesis and cancer: a systematic review.

J Appl Oral Sci. 2021

[4]
A narrative review of the roles of muscle segment homeobox transcription factor family in cancer.

Ann Transl Med. 2021-5

[5]
Novel MSX1 variants identified in families with nonsyndromic oligodontia.

Int J Oral Sci. 2021-1-8

[6]
Next generation sequencing reveals a novel nonsense mutation in MSX1 gene related to oligodontia.

PLoS One. 2018-9-7

[7]
A novel mutation of MSX1 in oligodontia inhibits odontogenesis of dental pulp stem cells via the ERK pathway.

Stem Cell Res Ther. 2018-8-22

[8]
Genetic Disorders of Dental Development: Tales from the Bony Crypt.

Curr Osteoporos Rep. 2017-2

[9]
Novel human mutation and CRISPR/Cas genome-edited mice reveal the importance of C-terminal domain of MSX1 in tooth and palate development.

Sci Rep. 2016-12-5

[10]
MSX1 mutations and associated disease phenotypes: genotype-phenotype relations.

Eur J Hum Genet. 2016-12

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