Liang Yuan, Peng Qi, Wang Kangwei, Zhu Pengyuan, Wu Chunqiu, Rao Chunbao, Chang Jiang, Li Siping, Lu Xiaomei
Department of Neurology, Dongguan Children's Hospital, Dongguan, Guangdong, China; Department of Medical and Molecular Genetics, Dongguan Institute of Pediatrics, Dongguan, Guangdong, China.
Department of Medical and Molecular Genetics, Dongguan Institute of Pediatrics, Dongguan, Guangdong, China.
Int J Pediatr Otorhinolaryngol. 2018 Apr;107:97-100. doi: 10.1016/j.ijporl.2018.01.037. Epub 2018 Jan 31.
To identity the genetic causes of hearing loss in a Han Chinese family with enlarged vestibular aqueduct syndrome.
Multiplex PCR technology combined with Ion Torrent™ next-generation sequencing technology was used to search for pathogenic mutations. A group of 1500 ethnically-matched normal hearing subjects screened for mutations in deafness-related genes using the same method in previously studied were included as a control.
The proband and his little sister suffered from typical features of sensorineural hearing loss with enlarged vestibular aqueduct (EVA). Both subjects harbored two compound heterozygous mutations in the SLC26A4 gene. A novel mutation named c.2110 G > C (p.Glu704Gln) in exon 19 and another previously reported mutation c.1673 A > T (p.Asn558Ile) were identified. These mutations were carried in the heterozygous state by the parents and therefore co-segregated with the genetic disease. The c.2110 G > C (p.Glu704Gln) mutation was absent in 1500 healthy newborns. Protein alignment indicated high evolutionary conservation of the p.E704 residue, and this mutation was predicted by online tools to be damaging and deleterious.
This study demonstrates that the novel mutation c.2110 G > C (p.Glu704Gln) in compound heterozygosity with c.1673 A > T (p.Asn558Ile) in the SLC26A4 gene corresponds to the EVA in this family. Our study will provide a foundation for elucidating the SLC26A4-related mechanisms of hearing loss.
确定一个患有大前庭导水管综合征的汉族家庭中听力损失的遗传原因。
采用多重PCR技术结合Ion Torrent™ 下一代测序技术来寻找致病突变。将一组1500名种族匹配的听力正常受试者纳入对照组,这些受试者此前已使用相同方法进行过耳聋相关基因突变筛查。
先证者及其妹妹患有伴有大前庭导水管(EVA)的典型感音神经性听力损失特征。两名受试者在SLC26A4基因中均携带两个复合杂合突变。在第19外显子中鉴定出一个名为c.2110 G > C(p.Glu704Gln)的新突变以及另一个先前报道的突变c.1673 A > T(p.Asn558Ile)。父母以杂合状态携带这些突变,因此与该遗传病共分离。1500名健康新生儿中不存在c.2110 G > C(p.Glu704Gln)突变。蛋白质比对表明p.E704残基具有高度进化保守性,并且在线工具预测该突变具有损害性和有害性。
本研究表明,SLC26A4基因中与c.1673 A > T(p.Asn558Ile)复合杂合的新突变c.2110 G > C(p.Glu704Gln)与该家庭中的EVA相对应。我们的研究将为阐明SLC26A4相关的听力损失机制提供基础。