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[DNA序列特异性配体:十三。新型二聚体Hoechst 33258分子,体外HIV-1整合酶抑制剂]

[DNA sequence-specific ligands: XIII. New Dimeric Hoechst 33258 molecules, inhibitors of HIV-1 integrase in vitro].

作者信息

Gromyko A V, Salianov V I, Strel'tsov S A, Oleĭnikov V A, Korolev S P, Gottikh M B, Zhuze A L

出版信息

Bioorg Khim. 2007 Nov-Dec;33(6):613-23. doi: 10.1134/s1068162007060064.

DOI:10.1134/s1068162007060064
PMID:18173124
Abstract

Dimeric Hoechst 33258 molecules [dimeric bisbenzimidazoles (DBBIs)] that, upon binding, occupy one turn of the B form of DNA in the narrow groove were constructed by computer simulation. Three fluorescent DBBIs were synthesized; they consist of two bisbenzimidazole units tail-to-tail linked to phenolic hydroxy groups via penta- or heptamethylene or tri(ethylene glycol) spacers and have terminal positively charged N.N-dimethylaminopropyl carboxamide groups in the molecule. The absorption spectra of the DBBIs in the presence of different DNA concentrations showed a hypochromic effect and a small shift of the absorption band to longer wavelengths, which indicated the formation of a complex with DNA. The presence of an isobestic point in the spectrum indicates the formation of one type of DBBI-DNA complexes. The interaction of DBBIs with DNA was studied by CD using a cholesteric liquid-crystalline dispersion (CLD) of DNA. The appearance of a positive band in the absorption region of ligand chromophores in the CD spectrum of the DNA CLD indicates the formation of a DBBI-DNA complex in which ligand chromophores are arranged at an angle close to 54 degrees relative to the helix axis of DNA, which suggests the localization of the DBBI in the narrow groove of DNA. All the DBBIs were found to be in vitro inhibitors of HIV-1 DNA integrase in the 3'-processing reaction, and, of the three DBBIs, two dimers inhibit HIV-1 integrase even in submicromolar concentrations.

摘要

通过计算机模拟构建了二聚体Hoechst 33258分子[二聚体双苯并咪唑(DBBIs)],其结合时在窄沟中占据B型DNA的一圈。合成了三种荧光DBBIs;它们由两个双苯并咪唑单元通过五亚甲基或七亚甲基或三(乙二醇)间隔基尾对尾连接到酚羟基组成,并且分子中具有末端带正电荷的N,N-二甲基氨基丙基羧酰胺基团。在不同DNA浓度存在下DBBIs的吸收光谱显示出减色效应和吸收带向更长波长的小位移,这表明与DNA形成了复合物。光谱中同色异谱点的存在表明形成了一种类型的DBBI-DNA复合物。使用DNA的胆甾型液晶分散体(CLD)通过圆二色性(CD)研究了DBBIs与DNA的相互作用。DNA CLD的CD光谱中配体发色团吸收区域出现正带表明形成了DBBI-DNA复合物,其中配体发色团相对于DNA螺旋轴以接近54度的角度排列,这表明DBBI定位于DNA的窄沟中。发现所有DBBIs在3'-加工反应中都是HIV-1 DNA整合酶的体外抑制剂,并且在这三种DBBIs中,两种二聚体即使在亚微摩尔浓度下也能抑制HIV-1整合酶。

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