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[DNA与染料复合物的圆二色性。III. 潜在光学活性的影响及复合物的结构]

[Circular dichroism of DNA complexes with dyes. III. Effect of latent optical activity and the structure of the complexes].

作者信息

Makarov V L, Poletaev A I, Sveshnikov P G, Kondrat'eva N O, Pis'menskiĭ V F

出版信息

Mol Biol (Mosk). 1979 Mar-Apr;13(2):450-68.

PMID:86947
Abstract

Circular dichroism anisotropy was studied both theoretically and experimentally for the complexes of DNA and dsRNA with dyes (proflavine, 2,7-di-t-butyl proflavine, "Hoechst-33258") and antibiotics (distamycin A, netropsin and olivomycin). Theoretical analysis showed that general features of CD anisotropy, revealed in the previous studies (CD components--delta epsilon parallel to and delta epsilon perpendicular--are ten times or more bigger than the CD-effect without orientation, and delta epsilon parallel to approximately 2 delta epsilon perpendicular) are due to the existence of a specific effect named "latent" optical activity (LOA). This effect can be observed in many cases of non-chiral symmetrical chromophores if they are oriented. The effect is due to the excitation of an electrical dipole transition and a perpendicular magnetic dipole transition (or quadrupole transition) of a molecule. The amplitude and the sign of the LOA-effect depends on the orientation of the chromophores with respect to the light beam; with a random orientation the mutual compensation of LOA-effects of different chromophores happens and no LOA-effect appears. The analitycal expressions relating the value of LOA-effect of the system with electronical characteristics of the chromophores and the geometrical parametra of their arrangement was obtained. The experimental data obtained for the oriented complexes of DNA and dsRNA with proflavine made it possible to determine an angle between the chromophore and the plane perpendicular to the DNA axis--gamma. For the calf thymus DNA gamma = = + 1.8 +/- 0.4 degrees, for the phage T2 DNA gamma = + 2.2 +/- 0.4 degrees, and for phage f2 dsRNA gamma=--3.5 +/- +/- 0.5 degrees. These results, obtained at relatively low concentrations of the bound proflavine (r approximately 0.01), are in accordance with the intercalating mode of the dye binding. A study of CD anisotropy of DNA complexes with other ligands showed that many different chromophores possess LOA-effect. This phenomenon can be used to obtain both spectroscopic and structural information about the systems similar to those reported here.

摘要

对DNA和双链RNA与染料(原黄素、2,7 - 二叔丁基原黄素、“Hoechst - 33258”)以及抗生素(Distamycin A、纺锤菌素和橄榄霉素)形成的复合物的圆二色性各向异性进行了理论和实验研究。理论分析表明,先前研究中揭示的圆二色性各向异性的一般特征(圆二色性分量——平行的δε和垂直的δε——比无取向时的圆二色性效应大十倍或更多,且平行的δε约为垂直的δε的两倍)是由于存在一种名为“潜在”光学活性(LOA)的特定效应。如果非手性对称发色团是取向的,在许多情况下都能观察到这种效应。该效应是由于分子的电偶极跃迁和垂直磁偶极跃迁(或四极跃迁)的激发。LOA效应的幅度和符号取决于发色团相对于光束的取向;在随机取向时,不同发色团的LOA效应会相互补偿,不会出现LOA效应。得到了将系统的LOA效应值与发色团的电子特性及其排列的几何参数相关联的解析表达式。对DNA和双链RNA与原黄素的取向复合物获得的实验数据使得能够确定发色团与垂直于DNA轴的平面之间的夹角——γ。对于小牛胸腺DNA,γ = + 1.8 ± 0.4度,对于噬菌体T2 DNA,γ = + 2.2 ± 0.4度,对于噬菌体f2双链RNA,γ = - 3.5 ± 0.5度。这些结果是在结合的原黄素浓度相对较低(r约为0.01)时获得的,与染料结合的插入模式一致。对DNA与其他配体复合物的圆二色性各向异性的研究表明,许多不同的发色团都具有LOA效应。这种现象可用于获取与本文报道的系统类似的系统的光谱和结构信息。

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