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Determination of absolute configurations of 4-hydroxyequilenin-cytosine and -adenine adducts by optical rotatory dispersion electronic circular dichroism density functional theory calculations and mass spectrometry

机译:旋光色散电子圆二色性密度泛函理论计算和质谱法测定4-羟基马脑素-胞嘧啶和-腺嘌呤加合物的绝对构型

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摘要

Estrogen components of some hormone replacement formulations have been implicated in the initiation of breast cancer. Some of these formulations contain equine estrogens such as equilin and equilenin that are metabolized to the genotoxic catechol 4 hydroxyequilenin (4-OHEN). Auto-oxidation generates the o-quinone form that reacts with dC and dA in oligodeoxynucleotides to form unusual stable cyclic bulky adducts, with four different stereoisomers identified for each base adduct. The dC and dA adducts have the same unsaturated bicyclo[3.3.1]nonane type linkage site with identical stereochemical characteristics. Stereochemical effects may play an important part in the biological consequences of formation of 4-OHEN-DNA adducts and the assignment of the absolute configurations of the stereoisomeric 4-OHEN-dC and -dA adducts is therefore needed to understand structure function relationships. We used density functional theory (DFT) to compute the specific optical rotations and electronic circular dichroism (ECD) spectra of the four 4-OHEN-C stereoisomers, and the results were compared with experimentally measured ORD and ECD spectra. The predicted ORD curves for the four stereoisomeric base adducts reproduced the shapes and signs of experimental spectra in the transparent spectral region. The stereochemistry of the C3′ atom was determined by comparison of the calculated and experimental ORD and ECD spectra, and the stereochemistry of C2′ was determined by mass spectrometric methods. Combining the ORD and mass spectrometry data, the absolute configurations of the four 4-OHEN-C and the stereochemically identical -dC adducts have been identified. The molecular architecture of the linkage site at the 4-OHEN-C/A and 4-OHEN-dC/dA is identical, and it is shown that the deoxyribose group does not substantially contribute to the optical activities. The absolute configurations of the 4-OHEN-dA adducts were thus deduced by comparing the experimental ORD with computed ORD values of 4-OHEN-A adducts.
机译:一些激素替代制剂的雌激素成分与乳腺癌的发病有关。这些制剂中的一些含有马雌激素,例如马雌草素和马雌激素,它们被代谢成具有遗传毒性的邻苯二酚4羟基邻苯二酚(4-OHEN)。自氧化产生邻醌形式,该形式与寡脱氧核苷酸中的dC和dA反应形成不寻常的稳定环状大体积加合物,每个碱基加合物都鉴定出四种不同的立体异构体。 dC和dA加合物具有相同的不饱和双环[3.3.1]壬烷型连接位点,具有相同的立体化学特征。立体化学作用可能在4-OHEN-DNA加合物形成的生物学后果中起重要作用,因此需要分配立体异构体4-OHEN-dC和-dA加合物的绝对构型以了解结构功能关系。我们使用密度泛函理论(DFT)计算四种4-OHEN-C立体异构体的比旋光度和电子圆二色性(ECD)光谱,并将结果与​​实验测量的ORD和ECD光谱进行比较。四个立体异构体碱基加合物的预测ORD曲线在透明光谱区域中再现了实验光谱的形状和符号。通过比较计算的和实验的ORD和ECD光谱确定C3'原子的立体化学,并通过质谱法确定C2'的立体化学。结合ORD和质谱数据,已确定了四个4-OHEN-C和立体化学上相同的-dC加合物的绝对构型。在4-OHEN-C / A和4-OHEN-dC / dA处的连接位点的分子结构是相同的,并且表明脱氧核糖基团基本上不促进光学活性。因此,通过将实验ORD与4-OHEN-A加合物的计算ORD值进行比较,可以得出4-OHEN-dA加合物的绝对构型。

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