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Investigation of thionin-DNA interaction by satellite hole spectroscopy

机译:硫蛋白与DNA相互作用的卫星空穴光谱研究

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摘要

The interactions of the two tautomers of thionin dye with DNA have been investigated by using satellite hole burning spectroscopy. Similar features in the absorption and satellite hole spectra of thionin in the presence of calf thymus (CT) DNA and polynucleotides [d(GC)(6)](2) (GC) suggested that thionin preferentially binds to GC rather than polynucleotides [d(AT)(6)](2) (AT). Different binding effects of the two tautomers to DNA could be observed. While the imino form fully intercalates into the DNA base pairs, the amino form is only partially intercalated. In addition, a broad hole associated with an antihole appeared in the presence of DNA, particularly in GC base pairs. The coincidence of the antihole with the absorption band of the amino form showed that the amino form is the photoproduct of the imino form. An increase in intensity of the broad hole and its antihole and the loss of nonresonant hole intensity upon interaction with CT DNA could be described by rapid ground state recovery resulting from fast charge transfer between the intercalated thionin and a guanine base quenching the internal conversion. (c) 2005 Pleiades Publishing, Inc.
机译:通过使用卫星孔燃烧光谱法研究了硫素染料的两个互变异构体与DNA的相互作用。在小牛胸腺(CT)DNA和多核苷酸[d(GC)(6)](2)(GC)存在的情况下,硫蛋白的吸收和卫星空穴光谱特征相似,这表明硫蛋白优先结合GC,而不是多核苷酸[d (AT)(6)](2)(AT)。可以观察到两种互变异构体与DNA的不同结合效果。亚氨基形式完全插入DNA碱基对中,而氨基形式仅部分插入。另外,在DNA存在下,特别是在GC碱基对中,出现了与抗孔相关的宽孔。防空穴与氨基形式的吸收带的重合表明氨基形式是亚氨基形式的光产物。宽孔及其抗孔强度的增加以及与CT DNA相互作用时非共振孔强度的损失可以通过嵌入硫蛋白和鸟嘌呤碱基之间快速电荷转移而猝灭内部转化的快速基态恢复来描述。 (c)2005年Pleiades Publishing,Inc.

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