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Coulomb and CH–π interactions in (6–4) photolyase–DNA complex dominate DNA binding and repair abilities

机译:(6–4)光裂解酶-DNA复合物中的库仑和CH-π相互作用主导DNA结合和修复能力

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摘要

(6–4) Photolyases ((6–4)PLs) are flavoenzymes that repair the carcinogenic UV-induced DNA damage, pyrimidine(6–4)pyrimidone photoproducts ((6–4)PPs), in a light-dependent manner. Although the reaction mechanism of DNA photorepair by (6–4)PLs has been intensively investigated, the molecular mechanism of the lesion recognition remains obscure. We show that a well-conserved arginine residue in Xenopus laevis (6–4)PL (Xl64) participates in DNA binding, through Coulomb and CH–π interactions. Fragment molecular orbital calculations estimated attractive interaction energies of –80–100 kcal mol–1 for the Coulomb interaction and –6 kcal mol–1 for the CH–π interaction, and the loss of either of them significantly reduced the affinity for (6–4)PP-containing oligonucleotides, as well as the quantum yield of DNA photorepair. From experimental and theoretical observations, we formulated a DNA binding model of (6–4)PLs. Based on the binding model, we mutated this Arg in Xl64 to His, which is well conserved among the animal cryptochromes (CRYs), and found that the CRY-type mutant exhibited reduced affinity for the (6–4)PP-containing oligonucleotides, implying the possible molecular origin of the functional diversity of the photolyase/cryptochrome superfamily.
机译:(6–4)光裂解酶((6–4)PLs)是黄光酶,以光依赖的方式修复致癌的紫外线诱导的DNA损伤,嘧啶(6–4)嘧啶酮光产物((6–4)PPs)。尽管已经深入研究了(6–4)PL对DNA光修复的反应机理,但是病灶识别的分子机理仍然不清楚。我们表明,非洲爪蟾(6–4)PL(X16)中的保守性精氨酸残基通过库仑和CH-π相互作用参与DNA结合。碎片分子轨道计算估计出库仑相互作用的吸引力为–80–100 kcal mol –1 ,CH–π相互作用的吸引力为–6 kcal mol –1 ,并且它们中任一个的丢失都会显着降低对含(6–4)PP的寡核苷酸的亲和力,以及DNA光修复的量子产率。从实验和理论观察,我们建立了(6–4)PL的DNA结合模型。根据结合模型,我们将Xl64中的这个Arg突变为His,在动物隐色染料(CRYs)中非常保守,发现CRY型突变体对含(6–4)PP的寡核苷酸的亲和力降低,这暗示了光裂解酶/隐色素超家族功能多样性的可能分子起源。

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