全外显子测序发现一名中国少牙症患者的新型 PAX9 突变。
A novel PAX9 mutation found in a Chinese patient with hypodontia via whole exome sequencing.
机构信息
Department of Oral and Maxillofacial Surgery, School of Stomatology, Tianjin Medical University, Tianjin, China.
Department of Pediatric Dentistry, School of Stomatology, Tianjin Medical University, Tianjin, China.
出版信息
Oral Dis. 2019 Jan;25(1):234-241. doi: 10.1111/odi.12982. Epub 2018 Oct 30.
OBJECTIVE
To investigate a novel gene mutation in a Chinese patient with non-syndromic hypodontia.
SUBJECTS AND METHODS
Mutation analysis was carried out by whole exome sequencing. Bioinformatics tools were used for the biophysical predictions of the mutative protein. Luciferase reporter assay was performed to analyse the effects of mutation on protein function. PAX9 and BMP4 gene expression from mutant cells was detected by qRT-PCR.
RESULTS
A novel heterozygous mutation (c.G1057A) was detected in the patient but was not found in the controls. The novel missense mutation led to a Val111Met substitution in the paired box domain which was completely conserved evolutionarily, as analysed by dbNSFP. The mutation was predicted to be disease-causing and harmful using MutationTaster and CADD, respectively. Protean of Lasergene showed that this mutation may lead to β-region shortening in the mutant protein compared to the wild type. Luciferase reporter assay indicated that the mutated protein reduced the transactivation activity of PAX9. This mutation led to increased levels of PAX9 transcript and reduced levels of BMP4 transcript, likely due to compensatory activation and lower transactivation activity of mutant PAX9.
CONCLUSION
This novel mutation (c.G1057A) in PAX9 caused hypodontia by altering PAX9 gene function and downregulating BMP4 gene expression.
目的
研究中国非综合征性缺牙患者中的一种新基因突变。
对象与方法
通过全外显子组测序进行突变分析。使用生物信息学工具对突变蛋白进行物理预测。通过荧光素酶报告基因检测分析突变对蛋白功能的影响。通过 qRT-PCR 检测突变细胞中 PAX9 和 BMP4 基因的表达。
结果
在患者中检测到一种新的杂合突变(c.G1057A),但在对照组中未发现。新的错义突变导致配对盒结构域中的 Val111Met 取代,这在进化上是完全保守的,通过 dbNSFP 进行分析。突变被分别预测为致病和有害的突变利用 MutationTaster 和 CADD。Lasergene 的 Protean 显示,与野生型相比,该突变可能导致突变蛋白中的β区域缩短。荧光素酶报告基因检测表明,突变蛋白降低了 PAX9 的转录激活活性。这种突变导致 PAX9 转录本水平升高,BMP4 转录本水平降低,可能是由于突变 PAX9 的代偿性激活和较低的转录激活活性。
结论
PAX9 中的这种新突变(c.G1057A)通过改变 PAX9 基因功能和下调 BMP4 基因表达导致缺牙。