Kou Yi, Koag Myong-Chul, Lee Seongmin
Division of Medicinal Chemistry, College of Pharmacy, The University of Texas at Austin , Austin, Texas 78712, United States.
J Am Chem Soc. 2015 Nov 11;137(44):14067-70. doi: 10.1021/jacs.5b10172. Epub 2015 Nov 2.
N7-Alkyl-2'-deoxyguanosines are major adducts in DNA that are generated by various alkylating mutagens and drugs. However, the effect of the N7 alkylation on the hydrogen-bonding patterns of the guanine remains poorly understood. We prepared N7-methyl-2'-deoxyguanosine (N7mdG)-containing DNA using a transition-state destabilization strategy, developed a novel polβ-host-guest complex system, and determined eight crystal structures of N7mdG or dG paired with dC, dT, dG, and dA. The structures of N7mdG:dC and N7mdG:dG are very similar to those of dG:dC and dG:dG, respectively, indicating the involvement of the keto tautomeric form of N7mdG in the base pairings with dC and dG. On the other hand, the structure of N7mdG:dT shows that the mispair forms three hydrogen bonds and adopts a Watson-Crick-like geometry rather than a wobble geometry, suggesting that the enol tautomeric form of N7mdG involves in its base pairing with dT. In addition, N7mdG:dA adopts a novel shifted anti:syn base pair presumably via the enol tautomeric form of N7mdG. The polβ-host-guest complex structures reveal that guanine-N7 methylation changes the hydrogen-bonding patterns of the guanine when paired with dT or dA and suggest that N7 alkylation may alter the base pairing patterns of guanine by promoting the formation of the rare enol tautomeric form of guanine.
N7-烷基-2'-脱氧鸟苷是DNA中的主要加合物,由各种烷基化诱变剂和药物产生。然而,N7烷基化对鸟嘌呤氢键模式的影响仍知之甚少。我们采用过渡态去稳定化策略制备了含N7-甲基-2'-脱氧鸟苷(N7mdG)的DNA,开发了一种新型的polβ-主客体复合系统,并确定了N7mdG或dG与dC、dT、dG和dA配对的八个晶体结构。N7mdG:dC和N7mdG:dG的结构分别与dG:dC和dG:dG的结构非常相似,表明N7mdG的酮式互变异构形式参与了与dC和dG的碱基配对。另一方面,N7mdG:dT的结构表明错配形成了三个氢键,并采用了类似沃森-克里克的几何结构而不是摆动几何结构,这表明N7mdG的烯醇式互变异构形式参与了其与dT的碱基配对。此外,N7mdG:dA可能通过N7mdG的烯醇式互变异构形式采用了一种新型的反向:顺向碱基对。polβ-主客体复合结构表明,鸟嘌呤-N7甲基化在与dT或dA配对时会改变鸟嘌呤的氢键模式,并表明N7烷基化可能通过促进鸟嘌呤罕见的烯醇式互变异构形式的形成来改变鸟嘌呤的碱基配对模式。