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首页> 外文期刊>Nucleic Acids Research >Deoxyuridine in DNA has an inhibitory and promutagenic effect on RNA transcription by diverse RNA polymerases
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Deoxyuridine in DNA has an inhibitory and promutagenic effect on RNA transcription by diverse RNA polymerases

机译:DNA中的脱氧尿苷对通过不同的RNA聚合酶对RNA转录具有抑制性和促销作用

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摘要

dUTP is a close structural congener of dTTP and can be readily incorporated into DNA opposite to adenine during DNA replication leading to non-mutagenic dU/A base pairs ('uracilation'). We find that dU/A pairs located within DNA transcriptional templates optimized for either T7 RNA polymerase (T7 RNAP) or human RNA polymerase II (pol II) have inhibitory and mutagenic effects on transcription. The data for T7 RNAP establishes that even a single dU/A pair can inhibit promoter binding and transcription initiation up to 30-fold, and that inhibitory effects on transcription elongation are also possible. Sequencing of the mRNA transcribed from uniformly uracilated DNA templates by T7 RNAP indicated an increased frequency of transversion and insertion mutations compared to all T/A templates. Strong effects of dU/A pairs on cellular transcription activity and fidelity were also observed with RNA pol II using uracil base excision repair (UBER)-deficient human cells. At the highest levels of template uracilation, transcription by RNA pol II was completely blocked. We propose that these effects arise from the decreased thermodynamic stability and increased dynamics of dU/A pairs in DNA. The potential implications of these findings on gene regulation and disease are discussed.
机译:DUTP是DTTP的紧密结构同觉,可以在DNA复制期间容易地掺入与腺嘌呤相对的DNA,导致非诱变DU / A碱基对('尿素')。我们发现DU / A对在针对T7 RNA聚合酶(T7 RNAP)或人RNA聚合酶II(POL II)优化的DNA转录模板内具有抑制和致突变性的转录作用。 T7 RNAP的数据建立了甚至单个DU / A对可以抑制高达30倍的启动子结合和转录起始,并且还可以抑制对转录伸长的抑制作用。通过T7 RNAP转录的mRNA的测序指示与所有T / A模板相比的横转化和插入突变的频率增加。使用Uracil基本切除修复(UBER)的人细胞,还观察到DU / A对对细胞转录活动和保真度的强烈影响。在最高水平的模板尿酸水平时,RNA POL II的转录被完全阻塞。我们提出这些效应来自降低的热力学稳定性和DNA中DU / A对的动态增加。讨论了这些结果对基因调控和疾病的潜在影响。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第8期|共16页
  • 作者单位

    Johns Hopkins Univ Sch Med Dept Pharmacol &

    Mol Sci 725 North Wolfe St Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med Dept Pharmacol &

    Mol Sci 725 North Wolfe St Baltimore MD 21205 USA;

    Johns Hopkins Univ Sch Med Dept Pharmacol &

    Mol Sci 725 North Wolfe St Baltimore MD 21205 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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