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全基因组规模的纠错流式测序及其在循环游离DNA分析中的应用。

Error-corrected flow-based sequencing at whole-genome scale and its application to circulating cell-free DNA profiling.

作者信息

Cheng Alexandre Pellan, Widman Adam J, Arora Anushri, Rusinek Itai, Sossin Aaron, Rajagopalan Srinivas, Midler Nicholas, Hooper William F, Murray Rebecca M, Halmos Daniel, Langanay Theophile, Chu Hoyin, Inghirami Giorgio, Potenski Catherine, Germer Soren, Marton Melissa, Manaa Dina, Helland Adrienne, Furatero Rob, McClintock Jaime, Winterkorn Lara, Steinsnyder Zoe, Wang Yohyoh, Alimohamed Asrar I, Malbari Murtaza S, Saxena Ashish, Callahan Margaret K, Frederick Dennie T, Spain Lavinia, Sigouros Michael, Manohar Jyothi, King Abigail, Wilkes David, Otilano John, Elemento Olivier, Mosquera Juan Miguel, Jaimovich Ariel, Lipson Doron, Turajlic Samra, Zody Michael C, Altorki Nasser K, Wolchok Jedd D, Postow Michael A, Robine Nicolas, Faltas Bishoy M, Boland Genevieve, Landau Dan A

机构信息

New York Genome Center, New York, NY, USA.

Sandra and Edward Meyer Cancer Center, Weill Cornell Medicine, Weill Cornell Medical College, New York, NY, USA.

出版信息

Nat Methods. 2025 May;22(5):973-981. doi: 10.1038/s41592-025-02648-9. Epub 2025 Apr 11.

Abstract

Differentiating sequencing errors from true variants is a central genomics challenge, calling for error suppression strategies that balance costs and sensitivity. For example, circulating cell-free DNA (ccfDNA) sequencing for cancer monitoring is limited by sparsity of circulating tumor DNA, abundance of genomic material in samples and preanalytical error rates. Whole-genome sequencing (WGS) can overcome the low abundance of ccfDNA by integrating signals across the mutation landscape, but higher costs limit its wide adoption. Here, we applied deep (~120×) lower-cost WGS (Ultima Genomics) for tumor-informed circulating tumor DNA detection within the part-per-million range. We further leveraged lower-cost sequencing by developing duplex error-corrected WGS of ccfDNA, achieving 7.7 × 10 error rates, allowing us to assess disease burden in individuals with melanoma and urothelial cancer without matched tumor sequencing. This error-corrected WGS approach will have broad applicability across genomics, allowing for accurate calling of low-abundance variants at efficient cost and enabling deeper mapping of somatic mosaicism as an emerging central aspect of aging and disease.

摘要

区分测序错误和真实变异是基因组学的一项核心挑战,这需要平衡成本和灵敏度的错误抑制策略。例如,用于癌症监测的循环游离DNA(ccfDNA)测序受到循环肿瘤DNA的稀疏性、样本中基因组物质的丰度以及分析前错误率的限制。全基因组测序(WGS)可以通过整合整个突变图谱中的信号来克服ccfDNA丰度低的问题,但成本较高限制了其广泛应用。在这里,我们应用深度(约120×)低成本WGS(Ultima Genomics)在百万分之一范围内进行肿瘤信息循环肿瘤DNA检测。我们通过开发ccfDNA的双链错误校正WGS进一步利用了低成本测序,实现了7.7×10的错误率,使我们能够在没有匹配肿瘤测序的情况下评估黑色素瘤和尿路上皮癌患者的疾病负担。这种错误校正WGS方法将在基因组学中具有广泛的适用性,能够以高效的成本准确检测低丰度变异,并能够更深入地绘制体细胞嵌合现象,这是衰老和疾病中一个新出现的核心方面。

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