Department of Pharmacology and Molecular Sciences, The Johns Hopkins University School of Medicine, 725 North Wolfe Street, Baltimore, MD 21205-2185, USA.
Nucleic Acids Res. 2019 May 7;47(8):4153-4168. doi: 10.1093/nar/gkz183.
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.
dUTP 是 dTTP 的紧密结构类似物,在 DNA 复制过程中可轻易与腺嘌呤配对掺入 DNA 中,导致非诱变的 dU/A 碱基对(“尿嘧啶化”)。我们发现,位于 DNA 转录模板中、针对 T7 RNA 聚合酶(T7 RNAP)或人类 RNA 聚合酶 II(pol II)优化的 dU/A 对会对转录产生抑制和诱变作用。T7 RNAP 的数据表明,即使只有一个 dU/A 对也能抑制启动子结合和转录起始高达 30 倍,并且转录延伸的抑制作用也是可能的。T7 RNAP 转录的 mRNA 测序表明,与所有 T/A 模板相比,转换和插入突变的频率增加。在使用尿嘧啶碱基切除修复(UBER)缺陷型人类细胞的 RNA pol II 中,也观察到 dU/A 对细胞转录活性和保真度的强烈影响。在模板尿嘧啶化水平最高时,RNA pol II 的转录完全被阻断。我们提出,这些效应源于 DNA 中 dU/A 对热力学稳定性降低和动态性增加。这些发现对基因调控和疾病的潜在影响进行了讨论。