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DNA sequencing by synthesis using 3′-O-azidomethyl nucleotide reversible terminators and surface-enhanced Raman spectroscopic detection

机译:使用3-O-叠氮基甲基核苷酸可逆终止子和表面增强拉曼光谱检测法合成​​DNA序列

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摘要

As an alternative to fluorescence-based DNA sequencing by synthesis (SBS), we report here an approach using an azido moiety (N3) that has an intense, narrow and unique Raman shift at 2125 cm−1, where virtually all biological molecules are transparent, as a label for SBS. We first demonstrated that the four 3′-O-azidomethyl nucleotide reversible terminators (3′-O-azidomethyl-dNTPs) displayed surface enhanced Raman scattering (SERS) at 2125 cm−1. Using these 4 nucleotide analogues as substrates, we then performed a complete 4-step SBS reaction. We used SERS to monitor the appearance of the azide-specific Raman peak at 2125 cm−1 as a result of polymerase extension by a single 3′-O-azidomethyl-dNTP into the growing DNA strand and disappearance of this Raman peak with cleavage of the azido label to permit the next nucleotide incorporation, thereby continuously determining the DNA sequence. Due to the small size of the azido label, the 3′-O-azidomethyl-dNTPs are efficient substrates for the DNA polymerase. In the SBS cycles, the natural nucleotides are restored after each incorporation and cleavage, producing a growing DNA strand that bears no modifications and will not impede further polymerase reactions. Thus, with further improvements in SERS for the azido moiety, this approach has the potential to provide an attractive alternative to fluorescence-based SBS.
机译:作为基于荧光的DNA合成测序(SBS)的替代方法,我们在此报告一种使用叠氮基部分(N3)的方法,该叠氮基部分在2125 cm -1 处具有强烈,狭窄和独特的拉曼位移,几乎所有生物分子都是透明的,作为SBS的标签。我们首先证明了4个3'-O-叠氮基甲基核苷酸可逆终止子(3'-O-叠氮基甲基-dNTPs)在2125 cm -1 处显示出表面增强的拉曼散射(SERS)。使用这4个核苷酸类似物作为底物,然后进行完整的4步SBS反应。我们使用SERS监测了2125 cm -1 上叠氮化物特异性拉曼峰的出现,这是由于单个3'-O-叠氮基甲基-dNTP聚合酶延伸进入正在生长的DNA链而消失的结果该拉曼峰的α-末端带有叠氮基标记的切割,以允许下一个核苷酸掺入,从而连续确定DNA序列。由于叠氮基标记的尺寸小,3'-O-叠氮基甲基-dNTPs是DNA聚合酶的有效底物。在SBS循环中,天然核苷酸在每次掺入和切割后都会恢复,从而产生一条不断增长的DNA链,该链没有修饰,也不会阻碍进一步的聚合酶反应。因此,随着叠氮基部分的SERS的进一步改进,这种方法有可能为基于荧光的SBS提供有吸引力的替代方法。

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