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Ionic Strength Dependent Binding Mode of 9-Aminoacridine to DNA

机译:离子强度依赖的9-氨基ac啶与DNA的结合方式

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The ionic strength dependent binding mode of 9-aminoacridine (9AA), a well-known DNA intercalator, to DNA is studied by flow linear dichroism, circular dichroism, fluorescence techniques and equilibrium dialysis. The DNA-bound 9AA exhibits spectral properties corresponding to the intercalative binding mode disregarding the salt concentrations; the angle between the long-axis transition moment of the 9AA molecule and DNA helix axis is calculated to be about 65∑, indicating a significant deviation from the classical intercalation. At low salt concentrations, however, upwards bending curve in Stern-Volmer plot is observed (where 9AA is a fluorophore and DNA a quencher), indicating the coexistence of both static and dynamic quenching mechanisms or the existence of an additional binding site.
机译:通过流线二色性,圆二色性,荧光技术和平衡透析研究了9-氨基ac啶(9AA)(一种众所周知的DNA嵌入剂)与DNA的离子强度依赖性结合模式。结合DNA的9AA的光谱特性与盐浓度无关的插入结合模式;计算得出9AA分子的长轴跃迁矩和DNA螺旋轴之间的夹角约为65∑,这表明与经典插值有很大偏差。然而,在低盐浓度下,在Stern-Volmer图中观察到向上弯曲曲线(其中9AA是荧光团,DNA是淬灭剂),表明静态和动态淬灭机制同时存在或存在其他结合位点。

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