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A Low-Cost Exon Capture Method Suitable for Large-Scale Screening of Genetic Deafness by the Massively-Parallel Sequencing Approach

机译:大规模平行测序方法适合大规模筛查遗传性耳聋的低成本外显子捕获方法

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摘要

Current major barriers for using next-generation sequencing (NGS) technologies in genetic mutation screening on an epidemiological scale appear to be the high accuracy demanded by clinical applications and high per-sample cost. How to achieve high efficiency in enriching targeted disease genes while keeping a low cost/sample is a key technical hurdle to overcome. We validated a cDNA-probe-based approach for capturing exons of a group of genes known to cause deafness. Polymerase chain reaction amplicons were made from cDNA clones of the targeted genes and used as bait probes in hybridization for capturing human genomic DNA (gDNA) fragments. The cDNA library containing the clones of targeted genes provided a readily available, low-cost, and regenerable source for producing capture probes with standard molecular biology equipment. Captured gDNA fragments by our method were sequenced by the Illumina NGS platform. Results demonstrated that targeted exons captured by our approach achieved specificity, multiplexicity, uniformity, and depth of coverage suitable for accurate sequencing applications by the NGS systems. Reliable genotype calls for various homozygous and heterozygous mutations were achieved. The results were confirmed independently by conventional Sanger sequencing. The method validated here could be readily expanded to include all-known deafness genes for applications such as genetic hearing screening in newborns. The high coverage depth and cost benefits of the cDNA-probe-based exon capture approach may also facilitate widespread applications in clinical practices beyond screening mutations in deafness genes.
机译:在流行病学规模的基因突变筛查中,使用下一代测序(NGS)技术的当前主要障碍似乎是临床应用所要求的高精度和较高的每样本成本。如何在保持低成本/样品的同时实现高效富集目标疾病基因的高效率是要克服的关键技术障碍。我们验证了一种基于cDNA探针的方法,用于捕获已知引起耳聋的一组基因的外显子。聚合酶链反应扩增子由目标基因的cDNA克隆制成,并用作诱饵探针,​​用于杂交捕获人基因组DNA(gDNA)片段。包含目标基因克隆的cDNA文库为使用标准分子生物学设备生产捕获探针提供了容易获得,低成本且可再生的来源。通过我们的方法捕获的gDNA片段在Illumina NGS平台上测序。结果表明,通过我们的方法捕获的靶向外显子达到了适合NGS系统进行准确测序应用的特异性,多重性,均匀性和覆盖深度。可靠的基因型要求实现各种纯合和杂合突变。通过常规的Sanger测序独立地证实了结果。这里验证的方法可以很容易地扩展到包括所有已知的耳聋基因,用于新生儿遗传听力筛查等应用。基于cDNA探针的外显子捕获方法具有很高的覆盖深度和成本优势,除了筛选耳聋基因的突变外,它还可以促进临床实践中的广泛应用。

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