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用于肌营养不良症分子诊断的可靠下一代测序策略的实施

Implementation of a Reliable Next-Generation Sequencing Strategy for Molecular Diagnosis of Dystrophinopathies.

作者信息

Alame Melissa, Lacourt Delphine, Zenagui Reda, Mechin Déborah, Danton Fabienne, Koenig Michel, Claustres Mireille, Cossée Mireille

机构信息

Molecular Genetic Laboratory, Centre Hospitalier Universitaire, Montpellier, France.

Molecular Genetic Laboratory, Centre Hospitalier Universitaire, Montpellier, France; Rare Disease Genetics Laboratory, Université Montpellier, Montpellier, France.

出版信息

J Mol Diagn. 2016 Sep;18(5):731-740. doi: 10.1016/j.jmoldx.2016.05.003. Epub 2016 Jul 16.

Abstract

Diagnosis of dystrophinopathies needs to combine several techniques for detecting copy number variations (CNVs; two-thirds of mutations) and single nucleotide variations (SNVs). We participated in the design of an amplicon-based PCR kit (Multiplicom) for sequencing with a GS-Junior instrument (Roche) and later with a MiSeq instrument (Illumina). We compared two different software programs, MiSeq Reporter (Illumina) and SeqNext (JSI Medical Systems) for data analyses. Testing of six patient DNA samples carrying 72 SNVs in the DMD gene showed an experimental sensitivity of 91.7% with MiSeq Reporter, 98.6% with SeqNext, and >99.9% with both, demonstrating the need to use two different software programs. Analytical specificity was >98%. Fifty-eight additional patient DNAs were analyzed, and 25 deleterious mutations were identified, without false-negative results. We also tested the possibility for our protocol to identify CNVs. We performed additional next-generation sequencing experiments on 50 DNAs and identified 28 CNVs, all confirmed by multiple ligation probe amplification. Statistical analyses on amplicons without CNV (n = 3797), amplicons with heterozygous deletions (n = 51) or duplications (n = 191), and with hemizygous duplications (n = 63) showed a sensitivity and specificity of >99.9%. We implemented a strategy to simultaneously detect SNVs and CNVs in the DMD gene with one comprehensive technique, allowing considerable reduction of time and cost burden for diagnosis of dystrophinopathies.

摘要

杜兴氏肌营养不良症的诊断需要结合多种技术来检测拷贝数变异(CNV,三分之二的突变类型)和单核苷酸变异(SNV)。我们参与设计了一种基于扩增子的PCR试剂盒(Multiplicom),用于配合GS-Junior仪器(罗氏公司)测序,随后又用于配合MiSeq仪器(Illumina公司)测序。我们比较了两种不同的软件程序,即MiSeq Reporter(Illumina公司)和SeqNext(JSI医疗系统公司),用于数据分析。对6个携带DMD基因中72个SNV的患者DNA样本进行检测,结果显示,使用MiSeq Reporter时实验灵敏度为91.7%,使用SeqNext时为98.6%,而两种软件同时使用时则>99.9%,这表明需要使用两种不同的软件程序。分析特异性>98%。另外对58个患者DNA进行了分析,鉴定出25个有害突变,无假阴性结果。我们还测试了我们的方案识别CNV的可能性。我们对50个DNA进行了额外的下一代测序实验,鉴定出28个CNV,所有结果均通过多重连接探针扩增得到证实。对无CNV的扩增子(n = 3797)、杂合缺失(n = 51)或重复(n = 191)以及半合子重复(n = 63)的扩增子进行统计分析,结果显示灵敏度和特异性>99.9%。我们实施了一种策略,通过一种综合技术同时检测DMD基因中的SNV和CNV,从而大幅减少杜兴氏肌营养不良症诊断的时间和成本负担。

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