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Nonpolar Isosteres of Damaged DNA Bases: Effective Mimicry of Mutagenic Properties of 8-Oxopurines

机译:损坏的DNA碱基的非极性等位基因:有效模拟的8-氧尿嘧啶的诱变特性。

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摘要

A substantial fraction of mutations that arise in the cell comes from oxidative damage to DNA bases. Oxidation of purine bases at the 8-position, yielding 8-oxo-G and 8-oxo-A, results in conformational changes (from anti to syn) that cause miscoding during DNA replication. Here we describe the synthesis and biophysical and biochemical properties of low-polarity shape mimics of 8-oxopurines, and we report that these new analogues exhibit remarkable mimicry of the mutagenic properties of the natural damaged bases. A 2-chloro-4-fluoroindole nucleoside (1) was designed as an isosteric analogue of 8-oxo-dG, and a 2-chloro-4-methylbenzimidazole nucleoside (2) as a mimic of 8-oxo-dA. The nucleosides were prepared by reaction of the parent heterocycles with Hoffer's chlorodeoxyribose derivative. Structural studies of the free nucleosides 1 and 2 revealed that both bases are oriented syn, thus mimicking the conformation of the oxopurine nucleosides. Suitably protected phosphoramidite derivatives were prepared for incorporation into synthetic DNAs, to be used as probes of DNA damage responses, and 5'-triphosphate derivatives (3 and 4) were synthesized as analogues of damaged nucleotides in the cellular nucleotide pool. Base pairing studies in 12-mer duplexes showed that 1 and 2 have low affinity for polar pairing partners, consistent with previous nonpolar DNA base analogues. However, both compounds pair with small but significant selectivity for purine partners, consistent with the idea that the syn purine geometry leads to pyrimidine-like shapes. Steady-state kinetics studies of 1 and 2 were carried out with the Klenow fragment of Escherichia coli DNA Pol Ⅰ (exo~-) in single-nucleotide insertions. In the DNA template, the analogues successfully mimicked the mutagenic behavior of oxopurines, with 1 being paired selectively with adenine and 2 pairing selectively with guanine. The compounds showed similar mutagenic behavior as nucleoside triphosphate analogues, being preferentially inserted opposite mutagenic purine partners. The results suggest that much of the mutagenicity of oxopurines arises from their shapes in the syn conformation rather than from electrostatic and hydrogen-bonding effects. The new analogues are expected to be generally useful as mechanistic probes of cellular responses to DNA damage.
机译:细胞中发生的大部分突变都来自对DNA碱基的氧化损伤。嘌呤碱基在8位上的氧化会生成8-oxo-G和8-oxo-A,导致构象变化(从反义到合成),从而导致DNA复制过程中的编码错误。在这里,我们描述了8-氧嘌呤的低极性形状模拟物的合成,生物物理和生化特性,并且我们报道了这些新的类似物表现出了自然受损碱基诱变特性的显着模仿。 2-氯-4-氟吲哚核苷(1)被设计为8-氧代-dG的立体异构体,2-氯-4-甲基苯并咪唑核苷(2)被模拟为8-氧代-dA的模拟物。通过使母体杂环与霍弗的氯脱氧核糖衍生物反应来制备核苷。游离核苷1和2的结构研究表明,两个碱基都为syn,因此模拟了氧嘌呤核苷的构象。制备了适当保护的亚磷酰胺衍生物以掺入合成DNA中,用作DNA损伤反应的探针,并合成了5'-三磷酸酯衍生物(3和4)作为细胞核苷酸库中受损核苷酸的类似物。在12-mer双链体中的碱基配对研究表明1和2对极性配对伴侣的亲和力低,这与以前的非极性DNA碱基类似物一致。但是,这两种化合物对嘌呤配偶体的选择性都很小但很重要,这与合成嘌呤的几何形状导致嘧啶样形状的想法一致。用单核苷酸插入的大肠杆菌DNA PolⅠ(exo〜-)的Klenow片段进行了1和2的稳态动力学研究。在DNA模板中,类似物成功地模仿了氧尿嘧啶的诱变行为,其中1个与腺嘌呤选择性配对,而2个与鸟嘌呤选择性配对。该化合物显示出与三磷酸核苷类似物相似的诱变行为,优选被插入与诱变的嘌呤伴侣相对的位置。结果表明,氧嘧啶的许多诱变性来自它们在顺式构象中的形状,而非静电和氢键作用。新的类似物有望普遍用作细胞对DNA损伤反应的机理探针。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2007年第28期|p.8836-8844|共9页
  • 作者

    Yosuke Taniguchi; Eric T. Kool;

  • 作者单位

    Department of Chemistry, Stanford University, Stanford California 94305-5080;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:21:29

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