ŠTEMBÍREK, Jan, Ondřej BONCZEK, Přemysl KREJČÍ, Omar ŠERÝ, Pavlína ČERNOCHOVÁ, Jiří VANĚK, Eva MATALOVÁ and Ivan MÍŠEK. The relationship between MSX1 gene mutation and tooth agenesis in the Czech population. In International Journal of Oral and Maxillofacial Surgery, 42, 10, s. 1375. 21ST INTERNATIONAL CONFERENCE ON ORAL AND MAXILLOFACIAL SURGERY, BARCELONA 2013. 2013. ISSN 0901-5027. Available from: https://dx.doi.org/10.1016/j.ijom.2013.07.734.
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Basic information
Original name The relationship between MSX1 gene mutation and tooth agenesis in the Czech population
Authors ŠTEMBÍREK, Jan (203 Czech Republic, guarantor, belonging to the institution), Ondřej BONCZEK (203 Czech Republic, belonging to the institution), Přemysl KREJČÍ (203 Czech Republic), Omar ŠERÝ (203 Czech Republic, belonging to the institution), Pavlína ČERNOCHOVÁ (203 Czech Republic, belonging to the institution), Jiří VANĚK (203 Czech Republic, belonging to the institution), Eva MATALOVÁ (203 Czech Republic, belonging to the institution) and Ivan MÍŠEK (203 Czech Republic, belonging to the institution).
Edition International Journal of Oral and Maxillofacial Surgery, 42, 10, s. 1375. 21ST INTERNATIONAL CONFERENCE ON ORAL AND MAXILLOFACIAL SURGERY, BARCELONA 2013, 2013.
Other information
Original language English
Type of outcome Conference abstract
Field of Study 30200 3.2 Clinical medicine
Country of publisher Czech Republic
Confidentiality degree is not subject to a state or trade secret
WWW The relationship between MSX1 gene mutation and tooth agenesis in the Czech population
Impact factor Impact factor: 1.359
RIV identification code RIV/00216224:14110/13:00065637
Organization unit Faculty of Medicine
ISSN 0901-5027
Doi http://dx.doi.org/10.1016/j.ijom.2013.07.734
Keywords (in Czech) ageneze zubů gen pro MSX1 mutace
Keywords in English tooth agenesis MSX1 gene mutations
Tags International impact
Changed by Changed by: RNDr. Ing. Ondřej Bonczek, Ph.D., učo 211856. Changed: 18/11/2013 11:34.
Abstract
Tooth development (odontogenesis) is a very complicated and complex process involving interplay between oral epithelium and adjacent ectomesenchyme. These reciprocal interactions are mediated by more than 300 signaling molecules (e.g. PAX9, AXIN2 and MSX1). Mutations in the genes for these two regulation proteins were associated with isolated (non-syndromic) form of hypodontia and for this reason; we decided to study gene mutations for MSX1 gene. Upon receipt of approval from the Ethical Commission of University Hospital Ostrava (No. 638/2011), DNA was isolated from patients using Ultra Clean Blood Spin DNA Isolation Kit (Mo-Bio). Blood samples or buccal swabs from 200 Czech patients with various types of tooth agenesis were used for this purpose. PCR products for exons of MSX1 gene were prepared using Kapa 2G Robust Hot Start polymerase (KapaBio Systems) and sequenced using ABI 3130 Prism (Life Technologies) genetic analyzer. Finally, sequences were compared to standard sequences of the genes and mutations were described according to their possible effect to the protein structure. We identified novel heterozygous MSX1 gene polymorphism that may cause amino acid substitutions Ala40Gly. This mutation was found both in the group of patients suffering from hypodontia and in the control group. Furthermore, intron and exon mutations without influence on amino acid change have been identified. These changes in nucleotide sequence have no direct effect on protein structure; however they can affect stability and regulation of gene expression. Therefore, detailed analysis of the results and the future research has to be focused on familiar studies and relationship between mutations in MSX1 gene and tooth agenesis (hypodontia, oligodontia) as well as on analysis of other genes coding proteins participating in odontogenesis, such as PAX9 or AXIN2. The project was supported by the IGA MZ CR, project no. NT 114206 6/2010.
Links
NT11420, research and development projectName: Molekulární diagnostika hypodoncie a možnosti zubních autotransplantací
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