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Genomic Approaches For the Discovery of Genes Mutated in Inherited Retinal Degeneration

机译:发现遗传性视网膜变性突变基因的基因组方法

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摘要

In view of their high degree of genetic heterogeneity, inherited retinal diseases (IRDs) pose a significant challenge for identifying novel genetic causes. Thus far, more than 200 genes have been found to be mutated in IRDs, which together contain causal variants in >80% of the cases. Accurate genetic diagnostics is particularly important for isolated cases, in which X-linked and de novo autosomal dominant variants are not uncommon. In addition, new gene- or mutation-specific therapies are emerging, underlining the importance of identifying causative mutations in each individual. Sanger sequencing of selected genes followed by cost-effective targeted next-generation sequencing (NGS) can identify defects in known IRD-associated genes in the majority of the cases. Exome NGS in combination with genetic linkage or homozygosity mapping studies can aid the identification of the remaining causal genes. As these are thought to be mutated in <1% of the cases, validation through functional modeling in, for example, zebrafish and/or replication through the genotyping of large patient cohorts is required. In the near future, whole genome NGS in combination with transcriptome NGS may reveal mutations that are currently hidden in the noncoding regions of the human genome.
机译:鉴于其高度的遗传异质性,遗传性视网膜疾病(IRD)对确定新的遗传原因提出了重大挑战。迄今为止,已发现IRD中有200多个基因发生了突变,在超过80%的病例中,它们一起包含因果变异。准确的遗传学诊断对于X连锁和从头常染色体显性变异的罕见病例尤其重要。另外,新的基因或突变特异性疗法正在出现,突显了在每个个体中鉴定致病突变的重要性。在大多数情况下,对选定基因进行Sanger测序,然后进行具有成本效益的靶向下一代测序(NGS),可以识别已知IRD相关基因中的缺陷。外显子组NGS与遗传连锁或纯合性作图研究相结合可以帮助鉴定剩余的因果基因。由于认为这些突变在小于1%的病例中发生,因此需要通过功能模型(例如斑马鱼)进行验证和/或通过大型患者群体的基因分型进行复制。在不久的将来,全基因组NGS与转录组NGS结合可能会揭示出目前隐藏在人类基因组非编码区中的突变。

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