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Using Metal Complex Reduced States to Monitor the Oxidation ofudDNA

机译:使用金属络合物还原态监测 ud的氧化脱氧核糖核酸

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摘要

Metallointercalating photooxidants interact intimately with the base stack of double-stranded DNA and exhibit rich photophysical and electrochemical properties, making them ideal probes for the study of DNA-mediated charge transport (CT). The complexes [Rh(phi)_2(bpy′)]^(3+) (phi = 9,10-phenanthrenequinone diimine; bpy′ = 4-methyl-4′-(butyric acid)-2,2′-bipyridine), [Ir(ppy)_2(dppz′)]^+ (ppy = 2-phenylpyridine; dppz′ = 6-(dipyrido[3,2-a:2′,3′-c]phenazin-11-yl)hex-5-ynoic acid), and [Re(CO)_3(dppz)(py′)]^+ (dppz = dipyrido[2,3-a:2′,3′-c]phenazine; py′ = 3-(pyridin-4-yl)-propanoic acid) were each covalently tethered to DNA to compare their photooxidation efficiencies. Biochemical studies show that upon irradiation, the three complexes oxidize guanine by long-range DNA-mediated CT with the efficiency: Rh > Re > Ir. Comparison of spectra obtained by spectroelectrochemistry after bulk reduction of the free metal complexes with those obtained by transient absorption (TA) spectroscopy of the conjugates suggests that the reduced metal states form following excitation of the conjugates at 355 nm. Electrochemical experiments and kinetic analysis of the TA decays indicate that the thermodynamic driving force for CT, variations in the efficiency of back electron transfer, and coupling to DNA are the primary factors responsible for the trend observed in the guanine oxidation yields of the three complexes.
机译:金属嵌入光氧化剂与双链DNA的基础堆栈紧密相互作用,并显示出丰富的光物理和电化学特性,使其成为研究DNA介导的电荷传输(CT)的理想探针。配合物[Rh(phi)_2(bpy')] ^(3+)(phi = 9,10-菲醌二亚胺; bpy'= 4-甲基-4'-(丁酸)-2,2'-联吡啶) ,[Ir(ppy)_2(dppz')] ^ +(ppy = 2-苯基吡啶; dppz'= 6-(dipyrido [3,2-a:2',3'-c] phenazin-11-yl)hex -5-ynoic acid)和[Re(CO)_3(dppz)(py')] ^ +(dppz =双吡啶[2,3-a:2',3'-c]吩嗪; py'= 3- (吡啶-4-基)-丙酸)分别与DNA共价连接,以比较其光氧化效率。生化研究表明,辐射后,这三种复合物通过远程DNA介导的CT氧化鸟嘌呤,效率为:Rh> Re> Ir。将游离金属配合物大量还原后通过光谱电化学获得的光谱与通过缀合物的瞬态吸收(TA)光谱获得的光谱进行比较,表明在缀合物在355 nm激发后形成了还原的金属态。电化学实验和TA衰变的动力学分析表明,CT的热力学驱动力,反电子传递效率的变化以及与DNA的耦合是导致这三种配合物鸟嘌呤氧化产量趋势变化的主要因素。

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