Department of Health Sciences and Technology, Institute of Food, Nutrition, and Health, ETH Zürich , 8092 Zürich, Switzerland.
Department of Chemistry and Biochemistry, and the Canadian Centre for Research in Advanced Fluorine Technologies, University of Lethbridge , Lethbridge, Alberta T1K 3M4, Canada.
Chem Res Toxicol. 2018 Jan 16;31(1):37-47. doi: 10.1021/acs.chemrestox.7b00266. Epub 2017 Dec 14.
Aromatic chemical carcinogens can undergo enzymatic transformations to produce a range of electrophilic species that attach covalently to the C8-site of 2'-deoxyguanosine (dG) to afford C8-dG adducts. The most studied C8-dG adducts are formed from arylamines and contain a N-linkage separating the dG from the C8-aryl moiety. Other carcinogenic species result in direct aryl ring attachment to the dG moiety, resulting in C-linked adducts. The resulting C-linked adducts have reduced conformational flexibility compared to the corresponding N-linked C8-dG adducts, which can alter their orientation in the DNA duplex. Described herein are structural studies of a fluorescent C-linked 4-fluorobiphenyl-dG (FBP-dG) that has been incorporated into the reiterated G-postion of the 12-mer NarI sequence and those containing other 5'-flanking nucleobases. FBP-dG displays a strong preference for adopting a syn conformation in the fully paired NarI duplex to produce an intercalated structure that exhibits stacking interactions between the C-linked biphenyl and the flanking bases. FBP-dG is also shown to significantly stabilize the slippage mutagenic intermediate (SMI) duplex containing the lesion and 5'-flanking base within a 2-base bulge. FBP-dG exhibits fluorescence sensitivity to SMI duplex formation that can readily distinguish it from the fully paired duplex. Molecular dynamics simulations and optical spectroscopy for the NarI oligonucleotides containing the C-linked FBP-dG predict increased rigidity of the biphenyl in the syn conformation. The greater propensity to generate the promutagenic syn conformation for the C-linked FBP-dG adduct compared to the N-linked 4-aminobiphenyl-dG adduct (ABP-dG) suggests greater mutagenicity for the C-linked analogue. These results highlight the effect of the adduct linkage type on the conformational properties of adducted DNA. The turn-on emission response of FBP-dG in the SMI duplex may be a powerful tool for monitoring SMI formation in the NarI sequence upon synthesis with DNA polymerases.
芳香族化学致癌剂可经酶转化产生一系列亲电物质,与 2'-脱氧鸟苷(dG)的 C8 位共价结合,生成 C8-dG 加合物。研究最多的 C8-dG 加合物是由芳胺形成的,其中含有一个 N 键将 dG 与 C8-芳基部分隔开。其他致癌物质会导致芳环直接与 dG 部分连接,形成 C 键加合物。与相应的 N 键 C8-dG 加合物相比,生成的 C 键加合物的构象灵活性降低,这会改变它们在 DNA 双链体中的取向。本文描述了对荧光 C 键 4-氟联苯-dG(FBP-dG)的结构研究,该化合物已被掺入 12 聚体 NarI 序列的重复 G 位和含有其他 5'-侧翼碱基的序列中。FBP-dG 强烈倾向于在完全配对的 NarI 双链体中采用顺式构象,生成一个嵌入结构,其中 C 键联苯与侧翼碱基之间存在堆积相互作用。还表明,FBP-dG 可显著稳定包含损伤和 5'-侧翼碱基的滑动诱变中间物(SMI)双链体,在 2 个碱基膨出中。FBP-dG 对 SMI 双链体形成表现出荧光敏感性,可轻易将其与完全配对的双链体区分开。包含 C 键联 FBP-dG 的 NarI 寡核苷酸的分子动力学模拟和光学光谱预测,顺式构象中联苯的刚性增加。与 N 键联 4-氨基联苯-dG 加合物(ABP-dG)相比,C 键联 FBP-dG 加合物生成前诱变顺式构象的倾向性更大,表明 C 键联类似物具有更大的致突变性。这些结果突出了加合物键联类型对加合物 DNA 构象性质的影响。FBP-dG 在 SMI 双链体中的开启发射响应可能是在聚合酶合成时监测 NarI 序列中 SMI 形成的有力工具。