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Labeling of unique sequences in double-stranded DNA at sites of vicinal nicks generated by nicking endonucleases

机译:标记内切核酸酶产生的邻近切口位点的双链DNA独特序列的标记

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摘要

We describe a new approach for labeling of unique sequences within dsDNA under nondenaturing conditions. The method is based on the site-specific formation of vicinal nicks, which are created by nicking endonucleases (NEases) at specified DNA sites on the same strand within dsDNA. The oligomeric segment flanked by both nicks is then substituted, in a strand displacement reaction, by an oligonucleotide probe that becomes covalently attached to the target site upon subsequent ligation. Monitoring probe hybridization and ligation reactions by electrophoretic mobility retardation assay, we show that selected target sites can be quantitatively labeled with excellent sequence specificity. In these experiments, predominantly probes carrying a target-independent 3′ terminal sequence were employed. At target labeling, thus a branched DNA structure known as 3′-flap DNA is obtained. The single-stranded terminus in 3′-flap DNA is then utilized to prime the replication of an externally supplied ssDNA circle in a rolling circle amplification (RCA) reaction. In model experiments with samples comprised of genomic λ-DNA and human herpes virus 6 type B (HHV-6B) DNA, we have used our labeling method in combination with surface RCA as reporter system to achieve both high sequence specificity of dsDNA targeting and high sensitivity of detection. The method can find applications in sensitive and specific detection of viral duplex DNA.
机译:我们描述了一种在非变性条件下标记dsDNA内独特序列的新方法。该方法基于邻近切口的位点特异性形成,该邻近切口是通过在dsDNA内同一条链上指定DNA位置上形成内切核酸酶(NEase)形成切口而形成的。然后,在链置换反应中,将两个缺口侧翼的寡聚片段替换为寡核苷酸探针,该寡核苷酸探针在随后的连接中共价连接至靶位点。通过电泳迁移率延迟测定法监测探针杂交和连接反应,我们显示所选的靶位点可以以优异的序列特异性进行定量标记。在这些实验中,主要使用带有靶标无关的3'末端序列的探针。在靶标标记处,因此获得了被称为3'-flap DNA的分支DNA结构。然后将3'-flap DNA中的单链末端用于在滚环扩增(RCA)反应中引发外部提供的ssDNA环的复制。在由基因组λ-DNA和人类疱疹病毒6型B型(HHV-6B)DNA组成的样品的模型实验中,我们将标记方法与表面RCA结合用作报告系统,以实现dsDNA靶向的高序列特异性和高靶向性检测灵敏度。该方法可用于敏感和特异性检测病毒双链DNA。

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