Department of Chemistry and Biochemistry, University of Lethbridge, 4401 University Drive West, Lethbridge, Alberta T1K 3M4, Canada.
Nucleic Acids Res. 2018 Dec 14;46(22):11858-11868. doi: 10.1093/nar/gky1071.
4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone is a potent carcinogen found in all tobacco products that leads to a variety of DNA lesions in cells, including O6-[4-oxo-4-(3-pyridyl)butyl]guanine (POB-G) and O6-[4-hydroxy-4-(3-pyridyl)butyl]guanine (PHB-G), which differ by only a single substituent in the bulky moiety. This work uses a multiscale computational approach to shed light on the intrinsic conformational and base-pairing preferences of POB-G and PHB-G, and the corresponding properties in DNA and the polymerase η active site. Our calculations reveal that both lesions form stable pairs with C and T, with the T pairs being the least distorted relative to canonical DNA. This rationalizes the experimentally reported mutational profile for POB-G and validates our computational model. The same approach predicts that PHB-G is more mutagenic than POB-G due to a difference in the bulky moiety hydrogen-bonding pattern, which increases the stability of the PHB-G:T pair. The mutagenicity of PHB-G is likely further increased by stabilization of an intercalated DNA conformation that is associated with deletion mutations. This work thereby uncovers structural explanations for the reported mutagenicity of POB-G, provides the first clues regarding the mutagenicity of PHB-G and complements a growing body of literature highlighting that subtle chemical changes can affect the biological outcomes of DNA adducts.
4-(甲基亚硝氨基)-1-(3-吡啶基)-1-丁酮是一种存在于所有烟草制品中的强效致癌物质,会导致细胞内产生多种 DNA 损伤,包括 O6-[4-氧代-4-(3-吡啶基)丁基]鸟嘌呤(POB-G)和 O6-[4-羟基-4-(3-吡啶基)丁基]鸟嘌呤(PHB-G),两者仅在庞大侧基上有一个取代基的差异。这项工作使用多尺度计算方法来阐明 POB-G 和 PHB-G 的固有构象和碱基配对偏好,以及在 DNA 和聚合酶 η 活性位点中的相应性质。我们的计算表明,两种损伤都与 C 和 T 形成稳定的碱基对,与 POB-G 相比,T 碱基对与标准 DNA 的扭曲程度最小。这合理化了 POB-G 的实验报告突变谱,并验证了我们的计算模型。同样的方法预测 PHB-G 比 POB-G 更具突变性,因为在庞大侧基氢键模式上存在差异,这增加了 PHB-G:T 碱基对的稳定性。PHB-G 的突变性可能会进一步增加,因为它稳定了与缺失突变相关的插入 DNA 构象。这项工作因此揭示了 POB-G 报道的突变性的结构解释,提供了关于 PHB-G 突变性的第一个线索,并补充了越来越多的文献,强调了细微的化学变化会影响 DNA 加合物的生物学结果。