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Selective detection of N6-methyladenine in DNA via metal ion-mediated replication and rolling circle amplification

机译:通过金属离子介导的复制和滚环扩增选择性检测DNA中的N6-甲基腺嘌呤

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摘要

N6-methyladenine (6mA) is reported as a potential epigenetic marker in eukaryotic genomes. However, accurate identification of the location of 6mA in DNA remains a challenging task. Here, we show that Ag+ can selectively stabilize the A–C mismatch and efficiently promote primer extension. In contrast, the complex of 6mA–Ag+–C is instable and therefore cannot be recognized by DNA polymerases, resulting in the termination of primer extension. Based on this finding, we successfully identified and quantified 6mA at the single-base level through the analysis of gel bands of extended primers and fluorescence measurements combined with rolling circle amplification. The high selectivity and sensitivity of this strategy may provide a new platform for the efficient analysis of 6mA in DNA in the future.
机译:N6-甲基腺嘌呤(6mA)被报道为真核基因组中潜在的表观遗传标记。但是,准确鉴定DNA中6mA的位置仍然是一项艰巨的任务。在这里,我们表明Ag + 可以选择性地稳定A–C错配并有效地促进引物延伸。相反,6mA–Ag + –C的复合物不稳定,因此无法被DNA聚合酶识别,从而导致引物延伸终止。基于此发现,我们通过分析扩展引物的凝胶条带和荧光测量并结合滚环扩增,成功鉴定并定量了单碱基水平的6mA。该策略的高选择性和灵敏度可能会为将来对DNA中6mA的有效分析提供一个新平台。

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