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Photoinduced electron transfer and fluorescence mechanisms in covalently linked polynuclear aromatic-nucleotide complexes

机译:光突出电子传递和荧光机制在共价连接的多核芳族核苷酸复合物中

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摘要

The fluorescence of polycyclic aromatic hydrocarbon-nucleic acid complexes is quenched by photoinduced electron transfer mechanisms in aqueous solutions at ambient temperatures. These effects are illustrated with the biologically important compound benzo$LB@a$RB@pyrene-7,8-diol-9,10-epoxide (BPDE), a mutagenic and carcinogenic metabolite of the environmental pollutant benzo$LB@a$RB@pyrene, which forms covalent mutagenic lesions with 2'-deoxyguanosine (dG) residues in DNA. The dependence of the fluorescence yield and fluorescence decay times of the covalent model adduct ($PLU@)-trans-BPDE-N$+2$/-dG as a function of temperature and methanol/water composition are described. Because of the sensitivity of the fluorescence of the pyrenyl residue to the polarity of the microenvironment, the magnitude of the fluorescence yield can be used to distinguish between highly hydrophobic (e.g., intercalation) and other more solvent-exposed BPDE-nucleic acid binding sites.
机译:通过在环境温度下的水溶液中的光态电子转移机制淬灭多环芳烃 - 核酸复合物的荧光。这些效果用生物学上重要的复合复合苯并$ LB @ a $ rb /芘-7,8-diol-9,10-环氧化(bpde),环境污染物苯佐$ lb @ a $ rb的诱变和致癌代谢物@己烯,形成具有2'-脱氧核苷酸(DG)残基的共价致突变病变在DNA中。荧光产量和荧光衰减时间的依从性模型加合物($ PLU @) - 转铁BPDE-N $ + 2 $ / - DG作为温度和甲醇/水成分的函数。由于芘基残基的荧光对微环境的极性的敏感性,荧光收率的幅度可用于区分高度疏水(例如嵌入)和其他更溶剂暴露的BPDE-核酸结合位点。

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