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[通过¹H-NMR光谱法研究柔红霉素与具有不同序列碱基的脱氧四核苷酸在水溶液中的络合情况]

[Study of the complex formation of daunomycin with deoxytetranucleotides with bases of differing sequence in an aqueous solution by 1H-NMR spectroscopy].

作者信息

Eaton R J, Baranovskiĭ D A, Veselkov D A, Osetrov S G, Bolotin P A, Dymant L N, Pakhomov V I, Davis D V, Veselkov A N

机构信息

Sevastopol State Technical University, Ukraine.

出版信息

Biofizika. 2000 Jul-Aug;45(4):586-99.

Abstract

The complex formation of the antibiotic daunomycin with deoxytetranucleotides of different base sequence in the chain, 5'-d(GpCpGpC), 5'-d(CpGpCpG), and 5'-d(TpGpCpA) in aqueous salt solution was studied by 1D and 2D (2M-TOCSY and 2M-NOESY) 1H-NMR spectroscopy. Concentration and temperature dependences of proton chemical shifts of molecules were measured. Based on these dependences, reaction equilibrium constants, relative content of various complexes depending on concentration and temperature, limiting values of chemical shifts of protons of daunomycin incorporated in various complexes, and the thermodynamic parameters delta H and delta S of complex formation were calculated. The analysis of the results enables the conclusion that the sites of predominant intercalation of daunomycin are triplet nucleotide sequences, the binding sites of the antibiotic with three consecutive GC pairs in the tetranucleotide duplex being more preferential. Daunomycin exhibits no sequence specificity upon binding to the single-stranded deoxynucleotide sequence. From the calculated values of induced chemical shifts of daunomycin protons and 2M-NOE data, the most probable spatial structures of complexes (1:2) of the antibiotic with deoxytetranucleotides were constructed. The binding of the second daunomycin molecule to both the single-stranded and duplex form of tetramers is of pronounced anticooperative mode, which is explained by the presence in the antibiotic of a positively charged amino sugar residue, which poses considerable steric constraints for the insertion of the second antibiotic molecule into the short tetranucleotide sequence. The results were compared with the data obtained under identical experimental conditions for typical intercalators proflavine and ethidium bromide.

摘要

通过一维和二维(2M-TOCSY和2M-NOESY)1H-NMR光谱研究了抗生素柔红霉素与链中具有不同碱基序列的脱氧四核苷酸5'-d(GpCpGpC)、5'-d(CpGpCpG)和5'-d(TpGpCpA)在盐水溶液中的复合物形成。测量了分子质子化学位移的浓度和温度依赖性。基于这些依赖性,计算了反应平衡常数、不同复合物的相对含量(取决于浓度和温度)、掺入各种复合物中的柔红霉素质子化学位移的极限值以及复合物形成的热力学参数ΔH和ΔS。对结果的分析得出结论,柔红霉素主要插入位点是三联体核苷酸序列,抗生素与四核苷酸双链体中三个连续GC对的结合位点更具优势。柔红霉素与单链脱氧核苷酸序列结合时不表现出序列特异性。根据计算出的柔红霉素质子诱导化学位移值和2M-NOE数据,构建了抗生素与脱氧四核苷酸复合物(1:2)最可能的空间结构。第二个柔红霉素分子与四聚体的单链和双链形式的结合具有明显的反协同模式,这是由于抗生素中存在带正电荷的氨基糖残基,这对第二个抗生素分子插入短四核苷酸序列造成了相当大的空间限制。将结果与在相同实验条件下获得的典型嵌入剂原黄素和溴化乙锭的数据进行了比较。

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