Zaliznyak Tanya, Bonala Rahda, Attaluri Sivaprasad, Johnson Francis, de los Santos Carlos
Department of Pharmacological Sciences, Stony Brook University, School of Medicine Stony Brook, NY 11794-8651, USA.
Nucleic Acids Res. 2009 Apr;37(7):2153-63. doi: 10.1093/nar/gkp076. Epub 2009 Feb 17.
Acrolein is a cell metabolic product and a main component of cigarette smoke. Its reaction with DNA produces two guanine lesions gamma-OH-PdG, a major adduct that is nonmutagenic in mammalian cells, and the positional isomer alpha-OH-PdG. We describe here the solution structure of a short DNA duplex containing a single alpha-OH-PdG lesion, as determined by solution NMR spectroscopy and restrained molecular dynamics simulations. The spectroscopic data show a mostly regular right-handed helix, locally perturbed at its center by the presence of the lesion. All undamaged residues of the duplex are in anti orientation, forming standard Watson-Crick base-pair alignments. Duplication of proton signals near the damaged site differentiates two enantiomeric duplexes, thus establishing the exocyclic nature of the lesion. At the lesion site, alpha-OH-PdG rotates to a syn conformation, pairing to its counter cytosine residue that is protonated at pH 5.9. Three-dimensional models produced by restrained molecular dynamics simulations show different hydrogen-bonding patterns between the lesion and its cytosine partner and identify further stabilization of alpha-OH-PdG in a syn conformation by intra-residue hydrogen bonds. We compare the alpha-OH-PdG.dC duplex structure with that of duplexes containing the analogous lesion propano-dG and discuss the implications of our findings for the mutagenic bypass of acrolein lesions.
丙烯醛是一种细胞代谢产物,也是香烟烟雾的主要成分。它与DNA反应会产生两种鸟嘌呤损伤产物,即γ-OH-PdG,这是一种在哺乳动物细胞中无致突变性的主要加合物,以及位置异构体α-OH-PdG。我们在此描述了一种含有单个α-OH-PdG损伤的短DNA双链体的溶液结构,该结构通过溶液核磁共振光谱和受限分子动力学模拟确定。光谱数据显示,该双链体大部分呈现规则的右手螺旋结构,损伤的存在使其中心局部受到扰动。双链体中所有未受损的残基均处于反式构象,形成标准的沃森-克里克碱基对排列。受损位点附近质子信号的重复区分了两种对映体双链体,从而确定了损伤的环外性质。在损伤位点,α-OH-PdG旋转至顺式构象,与在pH 5.9时质子化的互补胞嘧啶残基配对。受限分子动力学模拟产生的三维模型显示了损伤与其胞嘧啶配对体之间不同的氢键模式,并通过残基内氢键确定了α-OH-PdG在顺式构象中的进一步稳定。我们将α-OH-PdG.dC双链体结构与含有类似损伤丙酰-dG的双链体结构进行了比较,并讨论了我们的发现对丙烯醛损伤的诱变旁路的影响。