Laboratory of Neurobiology and Molecular Psychiatry, Department of Biochemistry, Faculty of Science, Masaryk University, Brno, Czech Republic.
Laboratory of Neurobiology and Pathological Physiology, Institute of Animal Physiology and Genetics, The Academy of Sciences of the Czech Republic, Brno, Czech Republic.
PLoS One. 2018 Sep 7;13(9):e0202989. doi: 10.1371/journal.pone.0202989. eCollection 2018.
Tooth agenesis is one of the most common craniofacial disorders in humans. More than 350 genes have been associated with teeth development. In this study, we enrolled 60 child patients (age 13 to 17) with various types of tooth agenesis. Whole gene sequences of PAX9, MSX1, AXIN2, EDA, EDAR and WNT10a genes were sequenced by next generation sequencing on the Illumina MiSeq platform. We found previously undescribed heterozygous nonsense mutation g.8177G>T (c.610G>T) in MSX1 gene in one child. Mutation was verified by Sanger sequencing. Sequencing analysis was performed in other family members of the affected child. All family members carrying g.8177G>T mutation suffered from oligodontia (missing more than 6 teeth excluding third molars). Mutation g.8177G>T leads to a stop codon (p.E204X) and premature termination of Msx1 protein translation. Based on previous in vitro experiments on mutation disrupting function of Msx1 homeodomain, we assume that the heterozygous g.8177G>T nonsense mutation affects the amount and function of Msx1 protein and leads to tooth agenesis.
牙齿缺失是人类最常见的颅面畸形之一。超过 350 个基因与牙齿发育有关。在这项研究中,我们招募了 60 名患有各种类型牙齿缺失的儿童患者(年龄 13 至 17 岁)。通过 Illumina MiSeq 平台上的下一代测序,对 PAX9、MSX1、AXIN2、EDA、EDAR 和 WNT10a 基因的全长基因序列进行了测序。我们在一名儿童的 MSX1 基因中发现了以前未描述的杂合无义突变 g.8177G>T(c.610G>T)。通过 Sanger 测序验证了突变。对受影响儿童的其他家庭成员进行了测序分析。所有携带 g.8177G>T 突变的家庭成员都患有少牙症(除第三磨牙外,缺失超过 6 颗牙齿)。突变 g.8177G>T 导致终止密码子(p.E204X)和 Msx1 蛋白翻译的过早终止。基于先前关于突变破坏 Msx1 同源域功能的体外实验,我们假设杂合 g.8177G>T 无义突变会影响 Msx1 蛋白的数量和功能,导致牙齿缺失。
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