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线性和角形二苯并喹啉鎓离子DNA结合特性的比较研究

Comparative studies on the DNA-binding properties of linear and angular dibenzoquinolizinium ions.

作者信息

Ihmels Heiko, Otto Daniela, Dall'Acqua Francesco, Faccio Anita, Moro Stefano, Viola Giampietro

机构信息

Organic Chemistry II, University of Siegen, Adolf-Reichwein-Str. 2, 57068 Siegen, Germany.

出版信息

J Org Chem. 2006 Oct 27;71(22):8401-11. doi: 10.1021/jo0612271.

Abstract

The interaction of the linear dibenzo[b,g]quinolizinium (5a) and the angular dibenzo[a,f]quinolizinium (6) with DNA was studied in detail in order to evaluate the influence of the shape of polycyclic quinolizinium ions on their DNA-binding properties. First, the synthesis and the thermally induced dimerization of 5a were reinvestigated because the preparation and isolation of the bromide salt of 5a according to literature procedures turned out to be problematic. The dibenzo[b,g]quinolizinium bromide [5a(Br)] tends to dimerize in solution with a highly selective and unprecedented formation of the corresponding anti-head-to-head dimer. Nevertheless, it was observed that careful exclusion of bromide ions from the reaction mixture suppresses the formation of the dimer. Moreover, the dimer may be transformed to the monomer by a remarkably rapid photoinduced electron-transfer reaction with 1-methoxynaphthalene. The association of 5a and 6 with nucleic acids was investigated by spectrophotometric and spectrofluorimetric DNA titrations, CD and LD spectroscopy, DNA thermal denaturation studies, and competition-dialysis techniques. Both dibenzoquinolizinium ions 5a and 6 exhibit an intercalative mode of binding to double-stranded DNA with moderate binding constants (K = 1-7 x 10(5) M(-1)) and a slight preference for association with GC-rich DNA regions. The structures of the intercalation complexes were calculated by molecular modeling methods. Competition-dialysis studies reveal that the isomers 5a and 6 bind selectively to triple-helical DNA (poly[dA]-poly[dT]2) as compared to selected synthetic and native double-stranded nucleic acids. Notably, the selectivity of the linear dibenzo[b,g]quinolizinium 5a toward triplex DNA is higher than the one of the angular derivative 6. In contrast, the DNA thermal denaturation studies reveal a higher stabilization of triple-helical DNA in the presence of 6 (DeltaTm3-->2 = 28 degrees C at r = 0.5) as compared to the stabilization by 5a (DeltaTm3-->2 = 14 degrees C at r = 0.5). This comparison emphasizes the importance of the extended pi system for the interaction of annelated quinolizinium ions with DNA. Moreover, the comparison between 5a and 6 demonstrates the significant influence of the shape of the pi system on the duplex- and triplex-stabilizing properties of the dibenzoquinolizinium ions.

摘要

为了评估多环喹嗪鎓离子的形状对其与DNA结合性质的影响,详细研究了线性二苯并[b,g]喹嗪鎓(5a)和角形二苯并[a,f]喹嗪鎓(6)与DNA的相互作用。首先,对5a的合成及其热诱导二聚化进行了重新研究,因为按照文献方法制备和分离5a的溴化物盐存在问题。二苯并[b,g]喹嗪鎓溴化物[5a(Br)]在溶液中倾向于二聚化,以高度选择性且前所未有的方式形成相应的反头对头二聚体。然而,观察到小心地从反应混合物中排除溴离子可抑制二聚体的形成。此外,通过与1-甲氧基萘进行显著快速的光诱导电子转移反应,二聚体可转化为单体。通过分光光度法和荧光分光光度法DNA滴定、圆二色光谱(CD)和线性二色光谱(LD)、DNA热变性研究以及竞争透析技术研究了5a和6与核酸的结合。两种二苯并喹嗪鎓离子5a和6均表现出以中等结合常数(K = 1 - 7×10⁵ M⁻¹)与双链DNA进行嵌入结合的模式,并且略微倾向于与富含GC的DNA区域结合。通过分子建模方法计算了嵌入复合物的结构。竞争透析研究表明,与选定的合成双链核酸和天然双链核酸相比,异构体5a和6选择性地与三链DNA(聚[dA]-聚[dT]₂)结合。值得注意的是,线性二苯并[b,g]喹嗪鎓5a对三链DNA的选择性高于角形衍生物6。相反,DNA热变性研究表明,与5a(r = 0.5时,ΔTm₃→₂ = 14℃)相比,在6存在下三链DNA的稳定性更高(r = 0.5时,ΔTm₃→₂ = 28℃)。这种比较强调了扩展π体系对于稠合喹嗪鎓离子与DNA相互作用的重要性。此外,5a和6之间的比较表明了π体系形状对二苯并喹嗪鎓离子双链和三链稳定性质的显著影响。

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