Hereditary hearing loss stands as the most prevalent sensory disorder, with over 124 non-syndromic genes and approximately 400 syndromic forms of deafness identified in humans. The clinical presentation of these conditions spans a spectrum, ranging from mild to profound hearing loss. The aim of this study was to identify the genetic cause of hearing loss in a family and functionally validate a novel variant identified in the MYO6 gene. After Whole Exome Sequencing analysis, the variant c.2775G>C p.Arg925Ser in MYO6 was detected in a family with postlingual non-syndromic hearing loss. By protein modeling a change in the electrostatic charge of the single alpha helix domain surface was revealed. Through a knockdown phenotype rescue assay in zebrafish, the detrimental effects of the identified variant on the auditory system was determined. These findings underscore the significance of a comprehensive approach, integrating both in silico and in vivo strategies, to ascertain the pathogenicity of this candidate variant. Such an approach has demonstrated its effectiveness in achieving an accurate genetic diagnosis and in promoting a more profound comprehension of the mechanisms that underlie the pathophysiology of hearing.
In silico and in vivo analyses of a novel variant in MYO6 identified in a family with postlingual non-syndromic hearing loss from Argentina.
对阿根廷一个患有后天性非综合征性听力损失的家庭中发现的 MYO6 的新变异进行计算机模拟和体内分析
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作者:Buonfiglio Paula I, Bruque Carlos D, Salatino LucÃa, Lotersztein Vanesa, Pace Mariela, Grinberg Sofia, Elgoyhen Ana B, Plazas Paola V, Dalamón Viviana
| 期刊: | NAR Genomics and Bioinformatics | 影响因子: | 2.800 |
| 时间: | 2024 | 起止号: | 2024 Dec 11; 6(4):lqae162 |
| doi: | 10.1093/nargab/lqae162 | 研究方向: | 其它 |
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