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[水溶液中芳香族染料溴化乙锭与单链非互补脱氧四核苷酸5'-d(CpTpGpA)之间复合物形成的1H-NMR研究]

[1H-NMR study of complex formation between the aromatic dye ethidium bromide and the single-stranded noncomplementary deoxytetranucleotide 5'-d(CpTpGpA) in aqueous solution].

作者信息

Veselkov A N, Baranovskiĭ S F, Dymant L N, Petrenko N V, Osetrov S G, Veselkov D A, Parkes X, Davies D

机构信息

Sevastopol Technical University, Studgorodok, Ukraine.

出版信息

Biofizika. 1998 Mar-Apr;43(2):205-14.

PMID:9591096
Abstract

Complex formation between the aromatic dye ethidium bromide (3,8-diamino-6-phenyl-5-ethylphenanthridine) and the single-stranded noncomplementary deoxytetranucleotide 5'-d(CpTpGpA) in aqueous solution was studied by one- and two-dimensional 1H NMR spectroscopy (500 and 600 MHz). Complete assignments of proton signals from the deoxytetranucleotide 5'-d(CTGA) were made using 2D-TOCSY and 2D-NOESY spectra. The concentration dependences of proton chemical shifts of the tetranucleotide were measured at T = 298 K to determine the self-association constants of tetranucleotide molecules in solution. Due to a small probability of tetranucleotide duplex formation, the complexing of dye molecules with the monomer of the tetramer plays the main role in the equilibrium of the complex in solution, which makes it possible to analyze the specificity of interactions of the aromatic ligand with the single-stranded DNA. Different schemes of complex formation were examined, and equilibrium constants for the reactions and the limiting chemical shifts of dye protons in different complexes were determined. The relative content of different types of complexes was analyzed, and specific features of the dynamic equilibrium were revealed as a function of the dye-tetranucleotide concentration ratio. The analysis indicates a sequence-specific binding of ethidium bromide to the single-stranded oligonucleotide. The structures of 1:1 complexes of the dye with the single strand of the tetranucleotide that correspond to two most probable orientations of the dye chromophore in the pyrimidine-purine T-G-site of the tetramer base sequence were constructed using the calculated values of induced chemical shifts of ethidium bromide protons.

摘要

采用一维和二维¹H NMR光谱(500和600 MHz)研究了芳香族染料溴化乙锭(3,8 - 二氨基 - 6 - 苯基 - 5 - 乙基菲啶)与水溶液中单链非互补脱氧四核苷酸5'-d(CpTpGpA)之间的复合物形成。利用二维全相关谱(2D - TOCSY)和二维核Overhauser效应谱(2D - NOESY)对脱氧四核苷酸5'-d(CTGA)的质子信号进行了完全归属。在T = 298 K下测量了四核苷酸质子化学位移的浓度依赖性,以确定溶液中四核苷酸分子的自缔合常数。由于四核苷酸双链形成的概率较小,染料分子与四聚体单体的络合在溶液中复合物的平衡中起主要作用,这使得分析芳香配体与单链DNA相互作用的特异性成为可能。研究了不同的复合物形成方案,确定了反应的平衡常数以及不同复合物中染料质子的极限化学位移。分析了不同类型复合物的相对含量,并揭示了动态平衡的特定特征与染料 - 四核苷酸浓度比的函数关系。分析表明溴化乙锭与单链寡核苷酸存在序列特异性结合。利用溴化乙锭质子诱导化学位移的计算值,构建了染料与四核苷酸单链1:1复合物的结构,这些结构对应于染料发色团在四聚体碱基序列嘧啶 - 嘌呤T - G位点的两种最可能取向。

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