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N6-Methyladenine hinders RNA- and DNA-directed DNA synthesis: application in human rRNA methylation analysis of clinical specimens

机译:ñ6-甲基腺嘌呤阻碍RNA和DNA定向的DNA合成:在临床标本的人类rRNA甲基化分析中的应用

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摘要

N 6-Methyladenine (m6A) is the most abundant internal modification on mammalian mRNA. Very recently, m6A has been reported as a potentially important ‘epigenetic’ mark in eukaryotes. Until now, site-specific detection of m6A is technically very challenging. Here, we first reveal that m6A significantly hinders DNA- and RNA-directed DNA synthesis. Systematic investigations of 5′-triphosphates of a variety of 5-substituted 2′-deoxyuridine analogs in primer extension have been performed. In the current study, a quantitative analysis of m6A in the RNA or DNA context has been achieved, using Bst DNA polymerase catalyzed primer extension. Molecular dynamics study predicted that m6A in template tends to enter into and be restrained in the MGR region of Bst DNA polymerase, reducing conformational flexibility of the DNA backbone. More importantly, a site-specific determination of m6A in human ribosomal RNA (rRNA) with high accuracy has been afforded. Through a cumulative analysis of methylation alterations, we first reveal that significantly cancer-related changes in human rRNA methylation were present in patients with hepatocellular carcinoma.
机译:N 6 -甲基腺嘌呤(m 6 A)是哺乳动物mRNA上最丰富的内部修饰。最近,据报道m 6 A是真核生物中潜在的重要“表观遗传”标记。到目前为止,在特定位置检测m 6 A在技术上仍具有挑战性。在这里,我们首先揭示m 6 A显着阻碍了DNA和RNA定向的DNA合成。已经对引物延伸中的各种5-取代的2'-脱氧尿苷类似物的5'-三磷酸进行了系统研究。在当前的研究中,使用Bst DNA聚合酶催化的引物延伸,已经实现了对RNA或DNA中m 6 A的定量分析。分子动力学研究预测,模板中的m 6 A倾向于进入Bst DNA聚合酶的MGR区并受其限制,从而降低了DNA骨架的构象柔性。更重要的是,已经提供了高精确度的人核糖体RNA(rRNA)中m 6 A的位点特异性测定。通过对甲基化改变的累积分析,我们首先揭示出,肝细胞癌患者中存在人类rRNA甲基化中与癌症相关的显着变化。

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