首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Allele-Specific Droplet Digital PCR Combined with a Next-Generation Sequencing-Based Algorithm for Diagnostic Copy Number Analysis in Genes with High Homology: Proof of Concept Using Stereocilin
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Allele-Specific Droplet Digital PCR Combined with a Next-Generation Sequencing-Based Algorithm for Diagnostic Copy Number Analysis in Genes with High Homology: Proof of Concept Using Stereocilin

机译:等位基因特异性液滴数码PCR结合了基于下一代测序的基因诊断算法,具有高同源性的基因诊断副本分析:使用立体素概念证明

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BACKGROUND: Copy number variants (CNVs) can substantially contribute to the pathogenic variant spectrum in several disease genes. The detection of this type of variant is complicated in genes with high homology to other genomic sequences, yet such genomics regions are more likely to lead to CNVs, making it critical to address detection in these settings. METHODS: We developed a copy number analysis approach for high homology genes/regions that consisted of next-generation sequencing (NGS)-based dosage analysis accompanied by allele-specific droplet digital PCR (ddPCR) confirmatory testing. We applied this approach to copy number analysis in STRC , a gene with 98.9% homology to a nonfunctional pseudogene, pSTRC , and characterized its accuracy in detecting different copy number states by use of known samples. RESULTS: Using a cohort of 517 patients with hearing loss, we prospectively demonstrated the clinical utility of the approach, which contributed 30 of the 122 total positives (6%) to the diagnostic yield, increasing the overall yield from 17.6% to 23.6%. Positive STRC genotypes included homozygous (n = 15) or compound heterozygous (n = 8) deletions, or heterozygous deletions in trans with pathogenic sequence variants (n = 7). Finally, this approach limited ddPCR testing to cases with NGS copy number findings, thus markedly reducing the number of costly and laborious, albeit specific, ddPCR tests. CONCLUSIONS: NGS-based CNV detection followed by allele-specific ddPCR confirmatory testing is a reliable and affordable approach for copy number analysis in medically relevant genes with homology issues.
机译:背景:拷贝数变体(CNV)可以基本上有助于若干疾病基因的致病变异谱。这种类型的变体的检测在具有高同源性与其他基因组序列的基因中复杂化,但这种基因组区域更可能导致CNVS,这对于解决这些设置中的检测至关重要。方法:我们开发了一种副本分析方法,用于高同源性基因/地区,其组成的基于下一代测序(NGS)的剂量分析,伴随着等位基因特异性液滴数字PCR(DDPCR)确认检测。我们应用这种方法来复制Strc中的数量分析,一种具有98.9%同源性的基因,对非功能性假基因,PSTRC,并通过使用已知样本来检测不同拷贝数状态的准确性。结果:使用517名患者的听力损失,我们展示了该方法的临床效用,其贡献了122个总阳性(6%)的诊断产量,将总收益率从17.6%增加到23.6%。阳性基因型包括纯合(n = 15)或化合物杂合(n = 8)缺失,或杂合缺失,易于致病序列变体(n = 7)。最后,这种方法有限于DDPCR测试与NGS拷贝数查找的情况,从而显着降低了昂贵和艰苦的数量,尽管具体的DDPCR测试。结论:基于NGS的CNV检测,其次是等位基因特异性DDPCR确认检测是具有同源性问题的医学相关基因中的复制数分析的可靠且价格合理的方法。

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