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Novel myosin mutations for hereditary hearing loss revealed by targeted genomic capture and massively parallel sequencing

机译:通过靶向基因组捕获和大规模平行测序揭示了遗传性听力损失的新型肌球蛋白突变

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摘要

Hereditary hearing loss is genetically heterogeneous, with a large number of genes and mutations contributing to this sensory, often monogenic, disease. This number, as well as large size, precludes comprehensive genetic diagnosis of all known deafness genes. A combination of targeted genomic capture and massively parallel sequencing (MPS), also referred to as next-generation sequencing, was applied to determine the deafness-causing genes in hearing-impaired individuals from Israeli Jewish and Palestinian Arab families. Among the mutations detected, we identified nine novel mutations in the genes encoding myosin VI, myosin VIIA and myosin XVA, doubling the number of myosin mutations in the Middle East. Myosin VI mutations were identified in this population for the first time. Modeling of the mutations provided predicted mechanisms for the damage they inflict in the molecular motors, leading to impaired function and thus deafness. The myosin mutations span all regions of these molecular motors, leading to a wide range of hearing phenotypes, reinforcing the key role of this family of proteins in auditory function. This study demonstrates that multiple mutations responsible for hearing loss can be identified in a relatively straightforward manner by targeted-gene MPS technology and concludes that this is the optimal genetic diagnostic approach for identification of mutations responsible for hearing loss.
机译:遗传性听力损失在遗传上是异质的,有大量的基因和突变导致这种感觉性疾病,通常是单基因疾病。该数目以及较大的数目排除了所有已知耳聋基因的全面遗传诊断的可能性。靶向基因组捕获和大规模并行测序(MPS)(也称为下一代测序)的结合用于确定以色列犹太人和巴勒斯坦阿拉伯家庭的听力障碍人士的失聪基因。在检测到的突变中,我们在编码肌球蛋白VI,肌球蛋白VIIA和肌球蛋白XVA的基因中鉴定出9个新突变,使中东的肌球蛋白突变数增加了一倍。首次在该人群中鉴定出肌球蛋白VI突变。突变的建模为它们在分子马达中造成的损害提供了预测的机制,从而导致功能受损,从而导致耳聋。肌球蛋白突变跨越这些分子运动的所有区域,导致广泛的听力表型,从而增强了该蛋白家族在听觉功能中的关键作用。这项研究表明,可以通过靶向基因MPS技术以相对简单的方式识别造成听力损失的多种突变,并得出结论,这是鉴定导致听力损失的突变的最佳遗传诊断方法。

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