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首页> 外文期刊>Angewandte Chemie >Sequencing 5-Hydroxymethyluracil at Single-Base Resolution
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Sequencing 5-Hydroxymethyluracil at Single-Base Resolution

机译:单碱分辨率测序5-羟甲基脲

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摘要

5-hydroxymethyluracil (5hmU) is formed through oxidation of thymine both enzymatically and non-enzymatically in various biological systems. Although 5hmU has been reported to affect biological processes such as protein-DNA interactions, the consequences of 5hmU formation in genomes have not been yet fully explored. Herein, we report a method to sequence 5hmU at single-base resolution. We employ chemical oxidation to transform 5hmU to 5-formyluracil (5fU), followed by the polymerase extension to induce T-to-C base changes owing to the inherent ability of 5fU to form 5fU:G base pairing. In combination with the Illumina next generation sequencing technology, we developed polymerase chain reaction (PCR) conditions to amplify the T-to-C base changes and demonstrate the method in three different synthetic oligonucleotide models as well as part of the genome of a 5hmU-rich eukaryotic pathogen. Our method has the potential capability to map 5hmU in genomic DNA and thus will contribute to promote the understanding of this modified base.
机译:通过在各种生物系统中酶促和非酶促抑制胸腺嘧啶形成5-羟甲基脲(5HMU)。虽然据报道5HMU对蛋白质-DNA相互作用如蛋白质-DNA相互作用影响,但尚未完全探索5HMU形成的后果。这里,我们在单基分辨率下报告了序列5HMU的方法。我们采用化学氧化以将5HMU转变为5-甲酰脲(5FU),然后聚合酶延伸,以诱导T-C碱基的碱基变化,由于5Fu的固有能力形成5FU:G碱基配对。结合Illumina下一代测序技术,我们开发了聚合酶链反应(PCR)条件以扩增T-C碱基变化,并在三种不同的合成寡核苷酸模型中证明该方法以及5HMu的基因组的一部分富含真核病原体。我们的方法具有在基因组DNA中映射5HMU的潜在能力,因此将有助于促进对这种改进的基础的理解。

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