Watson Christopher M, Crinnion Laura A, Morgan Joanne E, Harrison Sally M, Diggle Christine P, Adlard Julian, Lindsay Helen A, Camm Nick, Charlton Ruth, Sheridan Eamonn, Bonthron David T, Taylor Graham R, Carr Ian M
Yorkshire Regional Genetics Service, St. James's University Hospital, Leeds, LS9 7TF, United Kingdom.
Hum Mutat. 2014 Apr;35(4):434-41. doi: 10.1002/humu.22490.
Targeted hybridization enrichment prior to next-generation sequencing is a widespread method for characterizing sequence variation in a research setting, and is being adopted by diagnostic laboratories. However, the number of variants identified can overwhelm clinical laboratories with strict time constraints, the final interpretation of likely pathogenicity being a particular bottleneck. To address this, we have developed an approach in which, after automatic variant calling on a standard unix pipeline, subsequent variant filtering is performed interactively, using AgileExomeFilter and AgilePindelFilter (http://dna.leeds.ac.uk/agile), tools designed for clinical scientists with standard desktop computers. To demonstrate the method's diagnostic efficacy, we tested 128 patients using (1) a targeted capture of 36 cancer-predisposing genes or (2) whole-exome capture for diagnosis of the genetically heterogeneous disorder primary ciliary dyskinesia (PCD). In the cancer cohort, complete concordance with previous diagnostic data was achieved across 793 variant genotypes. A high yield (42%) was also achieved for exome-based PCD diagnosis, underscoring the scalability of our method. Simple adjustments to the variant filtering parameters further allowed the identification of a homozygous truncating mutation in a presumptive new PCD gene, DNAH8. These tools should allow diagnostic laboratories to expand their testing portfolios flexibly, using a standard set of reagents and techniques.
在新一代测序之前进行靶向杂交富集是一种在研究环境中表征序列变异的广泛使用的方法,并且正在被诊断实验室所采用。然而,鉴定出的变异数量可能会使有严格时间限制的临床实验室不堪重负,对可能致病性的最终解释是一个特别的瓶颈。为了解决这个问题,我们开发了一种方法,即在标准的unix管道上自动进行变异调用之后,使用AgileExomeFilter和AgilePindelFilter(http://dna.leeds.ac.uk/agile)进行交互式的后续变异过滤,这两个工具是为使用标准台式计算机的临床科学家设计的。为了证明该方法的诊断效力,我们对128名患者进行了测试,使用(1)对36个癌症易感基因进行靶向捕获,或(2)进行全外显子捕获以诊断遗传异质性疾病原发性纤毛运动障碍(PCD)。在癌症队列中,793个变异基因型与先前的诊断数据完全一致。基于外显子的PCD诊断也获得了高产率(42%),突出了我们方法的可扩展性。对变异过滤参数进行简单调整,进一步使得在一个推测的新PCD基因DNAH8中鉴定出一个纯合截短突变。这些工具应能使诊断实验室使用一套标准的试剂和技术灵活地扩展其检测项目组合。