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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Excited state dependent electron transfer of a rhenium-dipyridophenazine complex intercalated between the base pairs of DNA: a time-resolved UV-visible and IR absorption investigation into the photophysics of fac-[Re(CO)3(F2dppz)(py)]~+ bound to either [poly(dA-dT)]2 or [poly(dG-dC)]2
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Excited state dependent electron transfer of a rhenium-dipyridophenazine complex intercalated between the base pairs of DNA: a time-resolved UV-visible and IR absorption investigation into the photophysics of fac-[Re(CO)3(F2dppz)(py)]~+ bound to either [poly(dA-dT)]2 or [poly(dG-dC)]2

机译:the-二吡啶并吩嗪复合物嵌入DNA碱基对之间的激发态依赖性电子转移:时间分辨的紫外可见光和红外吸收研究fac- [Re(CO)3(F2dppz)(py)]的光物理+绑定到[poly(dA-dT)] 2或[poly(dG-dC)] 2

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摘要

The transient species formed following excitation of fao[Re(CO)3(F2dppz)(py)]~+ (F2dppz = 11,12-difluorodipyrido[3,2-a:2',3'-c]phenazine) bound to double-stranded polynucleotides [poly(dA-dT)]2 or [poly(dG-dC)]2 have been studied by transient visible and infra-red spectroscopy in both the picosecond and nanosecond time domains. The latter technique has been used to monitor both the metal complex and the DNA by monitoring the regions 1900-2100 and 1500-1750 cm~(-1) respectively. These data provide direct evidence for electron transfer from guanine to the excited state of the metal complex, which proceeds both on a sub-picosecond time scale and with a lifetime of 35 ps, possibly due to the involvement of two excited states. No electron transfer is found for the [poly(dA-dT)]2 complex, although characteristic changes are seen in the DNA-region TRIR consistent with changes in the binding of the bases in the intercalation site upon excitation of the dppz-complex.
机译:在fao [Re(CO)3(F2dppz)(py)]〜+(F2dppz = 11,12-difluorodipyrido [3,2-a:2',3'-c] phenazine)激发后形成的瞬态物质双链多核苷酸[poly(dA-dT)] 2或[poly(dG-dC)] 2已通过皮秒和纳秒时域的瞬态可见和红外光谱进行了研究。后一种技术已被用于通过分别监测区域1900-2100和1500-1750 cm〜(-1)来监测金属络合物和DNA。这些数据为电子从鸟嘌呤转移到金属络合物的激发态提供了直接证据,这可能在亚皮秒级的时间内进行,并且寿命为35 ps,这可能是由于两个激发态的参与。没有发现[poly(dA-dT)] 2络合物的电子转移,尽管在DNA区域TRIR中发现了与dppz络合物激发后嵌入位点中碱基结合的变化一致的特征变化。

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