首页> 外文期刊>European journal of human genetics: EJHG >Panel-based next generation sequencing as a reliable and efficient technique to detect mutations in unselected patients with retinal dystrophies
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Panel-based next generation sequencing as a reliable and efficient technique to detect mutations in unselected patients with retinal dystrophies

机译:基于面板的下一代测序是一种可靠且有效的技术,可检测未选出的视网膜营养不良患者的突变

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摘要

Hereditary retinal dystrophies (RD) constitute a group of blinding diseases that are characterized by clinical variability and pronounced genetic heterogeneity. The different forms of RD can be caused by mutations in >100 genes, including >1600 exons. Consequently, next generation sequencing (NGS) technologies are among the most promising approaches to identify mutations in RD. So far, NGS is not routinely used in gene diagnostics. We developed a diagnostic NGS pipeline to identify mutations in 170 genetically and clinically unselected RD patients. NGS was applied to 105 RD-associated genes. Underrepresented regions were examined by Sanger sequencing. The NGS approach was successfully established using cases with known sequence alterations. Depending on the initial clinical diagnosis, we identified likely causative mutations in 55% of retinitis pigmentosa and 80% of Bardet-Biedl or Usher syndrome cases. Seventy-one novel mutations in 40 genes were newly associated with RD. The genes USH2A, EYS, ABCA4, and RHO were more frequently affected than others. Occasionally, cases carried mutations in more than one RD-associated gene. In addition, we found possible dominant de-novo mutations in cases with sporadic RD, which implies consequences for counseling of patients and families. NGS-based mutation analyses are reliable and cost-efficient approaches in gene diagnostics of genetically heterogeneous diseases like RD.
机译:遗传性视网膜营养不良(RD)构成一组致盲性疾病,其特征是临床变异性和明显的遗传异质性。 RD的不同形式可能是由> 100个基因(包括> 1600个外显子)中的突变引起的。因此,下一代测序(NGS)技术是鉴定RD突变的最有前途的方法之一。到目前为止,NGS尚未在基因诊断中常规使用。我们开发了诊断NGS管道,以鉴定170例遗传和临床未选择的RD患者中的突变。将NGS应用于105个与RD相关的基因。通过Sanger测序检查了代表性不足的区域。 NGS方法是使用具有已知序列更改的案例成功建立的。根据最初的临床诊断,我们确定了55%的视网膜色素变性和80%的Bardet-Biedl或Usher综合征病例中可能的致病突变。 RD中新发现了40个基因中的71个新突变。基因USH2A,EYS,ABCA4和RHO比其他基因受到更频繁的影响。有时,病例在多个与RD相关的基因中发生突变。此外,我们发现散发性RD病例中可能存在显性的de-novo突变,这暗示着对患者和家属的建议。基于NGS的突变分析是对遗传异质性疾病(如RD)进行基因诊断的可靠且经济高效的方法。

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