Theoretical Chemistry, School of Biotechnology, Royal Institute of Technology, SE-10691 Stockholm, Sweden.
J Phys Chem B. 2011 Sep 22;115(37):10976-82. doi: 10.1021/jp204128k. Epub 2011 Aug 29.
Dewar photoproduct (Dewar PP) is the valence isomer of (6-4) photoproduct ((6-4)PP) in photodamaged DNA. Compared to the extensive studied CPD photoproducts, the underlying repair mechanisms for the (6-4)PP, and especially for the Dewar PP, are not well-established to date. In this paper, the repair mechanism of DNA Dewar photoproduct T(dew)C in (6-4) photolyase was elucidated using hybrid density functional theory. Our results showed that, during the repair process, the T(dew)C has to isomerize to T(6-4)C photolesion first via direct C6'-N3' bond cleavage facilitated by electron injection. This isomerization mechanism is energetically much more efficient than other possible rearrangement pathways. The calculations provide a theoretical interpretation to recent experimental observations.
Dewar 光产物 (Dewar PP) 是 DNA 光损伤中 (6-4) 光产物 ((6-4)PP) 的价态异构体。与广泛研究的 CPD 光产物相比,(6-4)PP 的潜在修复机制,特别是 Dewar PP 的修复机制,至今尚未得到很好的确立。在本文中,我们使用杂化密度泛函理论阐明了 (6-4) 光解酶中 DNA Dewar 光产物 T(dew)C 的修复机制。我们的结果表明,在修复过程中,T(dew)C 必须首先通过电子注入促进的直接 C6'-N3'键断裂异构化为 T(6-4)C 光损伤。这种异构化机制在能量上比其他可能的重排途径更有效。该计算为最近的实验观察结果提供了理论解释。