College of Chemistry, Beijing Normal University, Beijing 100875, China.
J Phys Chem B. 2010 Nov 11;114(44):14096-102. doi: 10.1021/jp107873w.
The (6-4) photoproduct ((6-4) PP) is one of the main lesions in UV-induced DNA damage. The (6-4) PP and its valence isomer Dewar photoproduct (Dewar PP) can have a great threat of mutation and cancer but gained much less attention to date. In this study, with density functional theory (DFT) and the complete active space self-consistent field (CASSCF) methods, the photoisomerization processes between the (6-4) PP and the Dewar PP in the gas phase, the aqueous solution, and the photolyase have been carefully examined. Noticeably, the solvent effect is treated with the CASPT2//CASSCF/Amber (QM/MM) method. Our calculations show that the conical intersection (CI) points play a crucial role in the photoisomerization reaction between the (6-4) PP and the Dewar PP in the gas and the aqueous solution. The ultrafast internal conversion between the S(2) ((1)ππ*) and the S(0) states via a distorted intersection point is found to be responsible for the formation of the Dewar PP lesion at 313 nm, as observed experimentally. For the reversed isomeric process, two channels involving the "dark" excited states have been identified. In addition to the above passages, in the photolyase, a new electron-injection isomerization process as an efficient way for the photorepair of the Dewar PP is revealed.
(6-4)光产物((6-4)PP)是紫外线诱导 DNA 损伤的主要病变之一。(6-4)PP 及其价态异构体 Dewar 光产物(Dewar PP)具有很大的突变和致癌威胁,但迄今为止受到的关注较少。在这项研究中,我们使用密度泛函理论(DFT)和完全活性空间自洽场(CASSCF)方法,仔细研究了(6-4)PP 和 Dewar PP 在气相、水溶液和光解酶中的光异构化过程。值得注意的是,我们用 CASPT2//CASSCF/Amber(QM/MM)方法处理溶剂效应。我们的计算表明,在气相和水溶液中,(6-4)PP 和 Dewar PP 之间的光异构化反应中,锥形交叉(CI)点起着至关重要的作用。通过扭曲的交叉点,S(2)((1)ππ*)和 S(0)态之间的超快内转换被发现是在 313nm 下形成 Dewar PP 病变的原因,这与实验观察到的结果一致。对于相反的异构化过程,已经确定了两个涉及“暗”激发态的通道。此外,在光解酶中,揭示了一种新的电子注入异构化过程,这是 Dewar PP 光修复的有效途径。