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High efficiency error suppression for accurate detection of low-frequency variants

机译:用于精确检测低频变体的高效误差抑制

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摘要

Detection of cancer-associated somatic mutations has broad applications for oncology and precision medicine. However, this becomes challenging when cancer-derived DNA is in low abundance, such as in impure tissue specimens or in circulating cell-free DNA. Next-generation sequencing (NGS) is particularly prone to technical artefacts that can limit the accuracy for calling low-allele-frequency mutations. State-of-the-art methods to improve detection of low-frequency mutations often employ unique molecular identifiers (UMIs) for error suppression; however, these methods are highly inefficient as they depend on redundant sequencing to assemble consensus sequences. Here, we present a novel strategy to enhance the efficiency of UMI-based error suppression by retaining single reads (singletons) that can participate in consensus assembly. This 'Singleton Correction' methodology outperformed other UMI-based strategies in efficiency, leading to greater sensitivity with high specificity in a cell line dilution series. Significant benefits were seen with Singleton Correction at sequencing depths = 16 000x. We validated the utility and generalizability of this approach in a cohort of >300 individuals whose peripheral blood DNA was subjected to hybrid capture sequencing at similar to 5000x depth. Singleton Correction can be incorporated into existing UMI-based error suppression workflows to boost mutation detection accuracy, thus improving the cost-effectiveness and clinical impact of NGS.
机译:检测癌症相关的体细胞突变具有广泛的肿瘤和精密药物应用。然而,当癌症衍生的DNA处于低丰度时,这变得挑战,例如在纯组织标本或无细胞的无细胞DNA中。下一代测序(NGS)特别容易达到可以限制用于呼叫低等位基频突变的准确性的技术人员。最先进的方法以改善低频突变的检测通常采用独特的分子标识符(UMIS)进行误差抑制;然而,这些方法具有高效,因为它们取决于冗余测序以组装共识序列。在这里,我们通过保留可以参与共识组件的单个读取(单例)来提高基于UMI的误差抑制的效率的新策略。这种“单例校正”方法优于效率的其他基于UMI的策略,导致细胞系稀释系列中具有高特异性的敏感性。在测序深度时,单例校正可以看到显着的益处& = 16 000 x。我们验证了这种方法的效用和概括性在群组中的群组中,其外周血DNA在类似于5000x深度的杂化捕获测序。单例校正可以纳入现有的基于UMI的误差抑制工作流程,以提高突变检测精度,从而提高NGS的成本效益和临床影响。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第15期|共11页
  • 作者单位

    Univ Toronto Dept Med Biophys Toronto ON Canada;

    Univ Hlth Network Princess Margaret Canc Ctr Toronto ON Canada;

    Univ Hlth Network Princess Margaret Canc Ctr Toronto ON Canada;

    Univ Hlth Network Princess Margaret Canc Ctr Toronto ON Canada;

    Univ Hlth Network Princess Margaret Canc Ctr Toronto ON Canada;

    Univ Hlth Network Princess Margaret Canc Ctr Toronto ON Canada;

    Univ Hlth Network Princess Margaret Canc Ctr Toronto ON Canada;

    Univ Toronto Dept Med Biophys Toronto ON Canada;

    Univ Toronto Dept Med Biophys Toronto ON Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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