无细胞DNA采血管交联细胞DNA阻碍纳米孔长读测序。

Journal of biomolecular techniques : JBT Pub Date : 2025-03-19 eCollection Date: 2025-04-30 DOI:10.7171/3fc1f5fe.ad7e097e
Stephanie Chrysanthou, Trishala Karmacharya, Juan Li, Cuijie Lu, Cassidy C Cobbs, Neeman Mohibullah
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引用次数: 0

摘要

长读DNA和RNA测序有助于基因组组装、单倍型、复杂变异召唤和基因异构体鉴定。结构变异召唤是肿瘤分子特征的组成部分;因此,长读纳米孔DNA测序技术正成为癌症研究的常规应用。作为一种标准做法,高分子量(HMW) DNA从肿瘤和匹配的正常样本中提取,从血液或褐色皮毛中编辑体细胞突变的种系变异。然而,我们发现,与从肿瘤组织中提取的DNA相比,褐色被毛DNA的表现一直不佳。此外,这一观察结果只适用于在Streck收集的黄皮细胞中提取的DNA,而不是乙二胺四乙酸(EDTA)管。因此,我们研究了Streck管中释放的甲醛是否导致DNA交联,这将解释低数据吞吐量。事实上,在strek DNA提取过程中的解交联步骤显着提高了数据产量和片段长度,而不影响数据质量。因此,我们建议为纳米孔测序定制strek衍生的灰褐色外壳样品的DNA提取方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cell-Free DNA Blood Collection Tubes Crosslinking Cellular DNA Impeding Nanopore Long-Read Sequencing.

Long-read DNA and RNA sequencing facilitate genome assembly, haplotyping, complex variant calling, and gene isoform identification. Structural variant calling is integral to the molecular characterization of tumors; thus, long-read nanopore DNA sequencing technology is becoming routinely used in cancer research. As a standard practice, high molecular weight (HMW) DNA is extracted from both tumor and matched normal samples from blood or buffy coat to redact germline variants from somatic mutations. However, we found that buffy coat DNA consistently underperformed compared to DNA extracted from tumor tissue. Furthermore, this observation was unique to DNA extracted from buffy coat cells collected in Streck, but not ethylenediaminetetraacetic acid (EDTA), tubes. We therefore investigated whether the released formaldehyde in Streck tubes resulted in DNA crosslinking, which would explain the low data throughput. Indeed, a decrosslinking step during Streck DNA extraction significantly improved data yield and fragment length without compromising data quality. We therefore recommend a tailored DNA extraction protocol of Streck- derived buffy coat samples for nanopore sequencing.

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