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Rapid and highly-specific generation of targeted DNA sequencing libraries enabled by linking capture probes with universal primers

机译:通过将捕获探针与通用引物连接可快速生成高度特异性的靶向DNA测序文库

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摘要

Targeted Next Generation Sequencing (NGS) is being adopted increasingly broadly in many research, commercial and clinical settings. Currently used target capture methods, however, typically require complex and lengthy (sometimes multi-day) workflows that complicates their use in certain applications. In addition, small panels for high sequencing depth applications such as liquid biopsy typically have low on-target rates, resulting in unnecessarily high sequencing cost. We have developed a novel targeted sequencing library preparation method, named Linked Target Capture (LTC), which replaces typical multi-day target capture workflows with a single-day, combined ‘target-capture-PCR’ workflow. This approach uses physically linked capture probes and PCR primers and is expected to work with panel sizes from 100 bp to >10 Mbp. It reduces the time and complexity of the capture workflow, eliminates long hybridization and wash steps and enables rapid library construction and target capture. High on-target read fractions are achievable due to repeated sequence selection in the target-capture-PCR step, thus lowering sequencing cost. We have demonstrated this technology on sample types including cell-free DNA (cfDNA) and formalin-fixed, paraffin-embedded (FFPE) derived DNA, capturing a 35-gene pan-cancer panel, and therein detecting single nucleotide variants, copy number variants, insertions, deletions and gene fusions. With the integration of unique molecular identifiers (UMIs), variants as low as 0.25% abundance were detected, limited by input mass and sequencing depth. Additionally, sequencing libraries were prepared in less than eight hours from extracted DNA to loaded sequencer, demonstrating that LTC holds promise as a broadly applicable tool for rapid, cost-effective and high performance targeted sequencing.
机译:在许多研究,商业和临床环境中,有针对性的下一代测序(NGS)越来越广泛地被采用。但是,当前使用的目标捕获方法通常需要复杂而漫长的工作流(有时是数天),这会使它们在某些应用程序中的使用复杂化。此外,用于高测序深度应用(例如液体活检)的小面板通常具有较低的靶向率,从而导致不必要的高测序成本。我们开发了一种新颖的靶向测序文库制备方法,称为Linked Target Capture(LTC),该方法用单日组合的“ target-capture-PCR”工作流程代替了典型的多天目标捕获工作流程。该方法使用物理连接的捕获探针和PCR引物,预期可用于100 bp至> 10 Mbp的面板大小。它减少了捕获工作流程的时间和复杂性,消除了冗长的杂交和洗涤步骤,并实现了快速的文库构建和靶标捕获。由于在靶标捕获-PCR步骤中重复进行序列选择,因此可以获得高的靶标读段数,从而降低了测序成本。我们已经在样本类型上证明了这项技术,包括无细胞DNA(cfDNA)和福尔马林固定,石蜡包埋(FFPE)衍生的DNA,捕获35个基因的全癌基因组,并在其中检测单核苷酸变体,拷贝数变体,插入,缺失和基因融合。通过整合独特的分子标识符(UMI),可检测到低至0.25%丰度的变体,受输入质量和测序深度的限制。此外,从提取的DNA到加载的测序仪,不到8小时即可制备测序文库,这表明LTC有望成为快速,低成本,高性能靶向测序的广泛应用工具。

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