首页> 外文期刊>Journal of the American Chemical Society >ANTHRAQUINONE PHOTONUCLEASES - MECHANISMS FOR GG-SELECTIVE AND NONSELECTIVE CLEAVAGE OF DOUBLE-STRANDED DNA
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ANTHRAQUINONE PHOTONUCLEASES - MECHANISMS FOR GG-SELECTIVE AND NONSELECTIVE CLEAVAGE OF DOUBLE-STRANDED DNA

机译:蒽醌磷酸核酸酶-GG选择性和非选择性切割双链DNA的机制

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Anthraquinone derivatives 2AQA2(HEt(2)) and 2AQC2(HEt(2)) were examined as light-activated agents that initiate DNA cleavage. The substituents control the electronic configuration of the lowest excited state of the anthraquinone. 2AQC2(HEt(2)) has a lowest n pi* excited state and can react by electron transfer or hydrogen atom abstraction. 2AQC2(HEt(2)) has a lowest excited state of pi pi* or intramolecular charge-transfer character and reacts only by electron transfer. Spectroscopic evidence indicates that both quinones bind to double-stranded DNA by intercalation with essentially the same affinity. Picosecond time-resolved laser spectroscopy shows that single electron transfer from the DNA bases to either bound quinone occurs rapidly and to the same extent. Irradiation of either intercalated 2AQA2(HEt(2)) or 2AQC2(HEt(2)) followed by treatment with hot piperdine leads to equally effective cleavage of DNA at the 5'-G of GG steps. These findings indicate that electron transfer from a DNA base to the excited quinone is the dominant path for the GG-selective DNA cleavage. At high concentrations, where some quinone is free in solution, irradiation of 2AQC2(HEt(2)), but not 2AQA2(HEt(2)), leads to nonselective spontaneous cleavage of DNA. This second path to DNA cleavage is identified as direct hydrogen atom abstraction from the deoxyribose backbone by excited, nonintercalated 2AQC2(HEt(2)).
机译:蒽醌衍生物2AQA2(HEt(2))和2AQC2(HEt(2))已作为引发DNA裂解的光激活剂进行了研究。取代基控制蒽醌的最低激发态的电子构型。 2AQC2(HEt(2))的n pi *激发态最低,可通过电子转移或氢原子抽象反应。 2AQC2(HEt(2))具有pi pi *或分子内电荷转移特性的最低激发态,并且仅通过电子转移反应。光谱学证据表明,两个醌都通过插入以基本相同的亲和力与双链DNA结合。皮秒时间分辨激光光谱显示,单电子从DNA碱基到任一键合醌的转移迅速并以相同程度发生。辐照插入的2AQA2(HEt(2))或2AQC2(HEt(2)),然后用热哌啶处理,可在GG步骤的5'-G处同样有效地裂解DNA。这些发现表明,电子从DNA碱基转移到激发的醌是GG选择性DNA裂解的主要途径。在溶液中游离一些醌的高浓度下,辐照2AQC2(HEt(2))而不是辐照2AQA2(HEt(2))会导致DNA的非选择性自发裂解。这第二条DNA切割途径被确定为通过脱氧核糖主链通过兴奋的,非嵌入的2AQC2(HEt(2))直接提取氢原子。

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