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通过序列选择性和温度稳健性扩增对稀有DNA变异体进行多重富集。

Multiplexed enrichment of rare DNA variants via sequence-selective and temperature-robust amplification.

作者信息

Wu Lucia R, Chen Sherry X, Wu Yalei, Patel Abhijit A, Zhang David Yu

机构信息

Department of Bioengineering, Rice University, Houston, TX, 77030, USA.

Thermo Fisher, San Francisco, CA, 94080, USA.

出版信息

Nat Biomed Eng. 2017;1:714-723. doi: 10.1038/s41551-017-0126-5. Epub 2017 Sep 4.

DOI:10.1038/s41551-017-0126-5
PMID:29805844
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5969535/
Abstract

Rare DNA-sequence variants hold important clinical and biological information, but existing detection techniques are expensive, complex, allele-specific, or don't allow for significant multiplexing. Here, we report a temperature-robust polymerase-chain-reaction method, which we term blocker displacement amplification (BDA), that selectively amplifies all sequence variants, including single-nucleotide variants (SNVs), within a roughly 20-nucleotide window by 1,000-fold over wild-type sequences. This allows for easy detection and quantitation of hundreds of potential variants originally at ≤0.1% in allele frequency. BDA is compatible with inexpensive thermocycler instrumentation and employs a rationally designed competitive hybridization reaction to achieve comparable enrichment performance across annealing temperatures ranging from 56 °C to 64 °C. To show the sequence generality of BDA, we demonstrate enrichment of 156 SNVs and the reliable detection of single-digit copies. We also show that the BDA detection of rare driver mutations in cell-free DNA samples extracted from the blood plasma of lung-cancer patients is highly consistent with deep sequencing using molecular lineage tags, with a receiver operator characteristic accuracy of 95%.

摘要

罕见的DNA序列变异蕴含着重要的临床和生物学信息,但现有的检测技术昂贵、复杂、具有等位基因特异性,或者无法实现显著的多重检测。在此,我们报告了一种温度稳健的聚合酶链反应方法,我们将其称为阻断剂置换扩增(BDA),该方法能在大约20个核苷酸的窗口内,将包括单核苷酸变异(SNV)在内的所有序列变异相对于野生型序列选择性地扩增1000倍。这使得原本等位基因频率≤0.1%的数百种潜在变异易于检测和定量。BDA与廉价的热循环仪仪器兼容,并采用合理设计的竞争性杂交反应,在56℃至64℃的退火温度范围内实现可比的富集性能。为了展示BDA的序列通用性,我们证明了156个SNV的富集以及对个位数拷贝的可靠检测。我们还表明,对从肺癌患者血浆中提取的游离DNA样本中的罕见驱动突变进行BDA检测,与使用分子谱系标签进行的深度测序高度一致,受试者操作特征准确性为95%。

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