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PEG-Labeled Nucleotides and Nanopore Detection for Single Molecule DNASequencing by Synthesis

机译:PEG标记的核苷酸和单分子DNA的纳米孔检测合成测序

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摘要

We describe a novel single molecule nanopore-based sequencing by synthesis (Nano-SBS) strategy that can accurately distinguish four bases by detecting 4 different sized tags released from 5′-phosphate-modified nucleotides. The basic principle is as follows. As each nucleotide is incorporated into the growing DNA strand during the polymerase reaction, its tag is released and enters a nanopore in release order. This produces a unique ionic current blockade signature due to the tag's distinct chemical structure, thereby determining DNA sequence electronically at single molecule level with single base resolution. As proof of principle, we attached four different length PEG-coumarin tags to the terminal phosphate of 2′-deoxyguanosine-5′-tetraphosphate. We demonstrate efficient, accurate incorporation of the nucleotide analogs during the polymerase reaction, and excellent discrimination among the four tags based on nanopore ionic currents. This approach coupled with polymerase attached to the nanopores in an array format should yield a single-molecule electronic Nano-SBS platform.
机译:我们描述了一种新型的基于合成的单分子纳米孔测序(Nano-SBS)策略,该策略可以通过检测从5'-磷酸修饰的核苷酸释放的4种不同大小的标签来准确区分四个碱基。基本原理如下。在聚合酶反应过程中,由于每个核苷酸都被掺入到正在生长的DNA链中,其标签被释放,并以释放顺序进入纳米孔。由于标签的独特化学结构,这会产生独特的离子电流阻断信号,从而以单碱基分辨率在单分子水平上以电子方式确定DNA序列。作为原理的证明,我们将四个不同长度的PEG-香豆素标签连接到2'-deoxyguanosine-5'-tetraphosphate的末端磷酸酯上。我们展示了在聚合酶反应过程中核苷酸类似物的高效,准确掺入,以及基于纳米孔离子电流在四个标签之间的出色区分。这种方法与以阵列形式连接到纳米孔的聚合酶相结合,应产生一个单分子电子Nano-SBS平台。

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