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Absolute Configurations of DNA Lesions Determined by Comparisons of Experimental ECD and ORD Spectra with DFT Calculations

机译:通过比较实验性ECD和ORD光谱与DFT计算确定的DNA损伤的绝对构型

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摘要

The usefulness of modern DFT methods is considered for establishing the absolute configurations of DNA lesions by comparisons of computed and experimentally measured optical rotatory dispersion (ORD) and electronic circular dichroism (ECD) spectra. Two rigid, structurally different DNA lesions (two spiroiminodihydantoin stereoisomers and four equine estrogen 4-hydoxyequilenin – DNA stereoisomeric adducts) have been investigated. In all cases, the signs and shapes of the computed ORD spectra reproduced the experimentally measured ORD spectra, although the magnitudes of the computed ORD values are different. The computed ECD spectra also reproduced the shapes of the experimental ECD spectra rather well, but are blue-shifted by 10 – 20 nm. The assignments of the absolute configurations of the DNA lesions studied based on computed and experimental ORD and ECD spectra are fully consistent with one another. The computational DFT method shows significant promise for determining the absolute configurations of DNA lesions. Establishing the stereochemistry of DNA lesions is highly useful for understanding their biological impact, especially when sufficient amounts of material are not available for other methods of structural characterization.
机译:通过比较计算和实验测量的旋光色散(ORD)和电子圆二色性(ECD)光谱,可以考虑使用现代DFT方法建立DNA损伤的绝对构型。已经研究了两种结构上不同的刚性DNA损伤(两种螺二氨基乙内酰脲立体异构体和四种马雌激素4-羟基间苯二酚-DNA立体异构加合物)。在所有情况下,尽管计算出的ORD值的大小不同,但是计算出的ORD谱的符号和形状都再现了实验测量的ORD谱。计算出的ECD光谱还可以很好地再现实验性ECD光谱的形状,但是蓝移了10-20 nm。基于计算的和实验的ORD和ECD光谱研究的DNA损伤的绝对构型的分配彼此完全一致。 DFT计算方法显示出确定DNA损伤的绝对构型的重要前景。建立DNA损伤的立体化学对于理解其生物学影响非常有用,尤其是当没有足够数量的材料可用于其他结构表征方法时。

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