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A new type of DNA minor-groove complex: carbazole dication-DNA interactions

机译:一种新型的DNA小沟复合物:咔唑指示-DNA相互作用

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The effect of opportunistic infections (OI) on immune-compromised populations has been known for decades, but the recent AIDS epidemic has sparked renewed interest in the development of new anti-OI agents. The mechanism of action of a series of cationic unfused-aromatic anti-OI drugs is believed to involve binding of the drug to AT sequences in the minor groove of DNA. Some new anti-OI drug candidates have been synthesized with fused aromatic ring systems (e.g. carbazoles) that do not resemble the classical paradigm for minor-groove interactions at AT sequences in DNA. To characterize the DNA interactions of these compounds, we have used UV-vis absorbance, fluorescence, kinetic measurements, and circular dichroism in conjunction with NMR spectroscopy to evaluate the structure of the complexes formed between the carbazoles and DNA. Application of these methods to carbazoles substituted at either the 3,6 or 2,7 positions with cationic imidazoline groups gave conclusive, but very surprising, evidence that both compounds bind strongly in the minor groove at AT DNA sequences. NMR and molecular modeling of the complexes formed between the 3,6- and 2,7-carbazoles and the self-complementary oligomer d(GCGAATTCGC) have been used to establish structural details for the minor-groove complex. These results have been used as constraints for molecular modeling calculations to construct models of the minor-groove-carbazole complexes and to draw conclusions regarding the molecular basis for the effects of substituent position on carbazole-DNA affinities. The surprising result is that the 2,7 carbazole binds in AT sequences with hydrogen bonds involving one imidazoline group and the carbazole NH. The 3,6-carbazole compound binds in a more "classical" model that uses both imidazoline groups for H-bonding while the carbazole NH points out of the minor groove. The carbazoles thus form a new type of DNA minor groove complex and their excellent biological activities indicate that a variety of fused-ring minor-groove binding agents should be investigated.
机译:机会感染(OI)对免疫功能低下人群的影响已为人所知,但最近的艾滋病流行已激发了人们对开发新型抗OI药物的兴趣。据信一系列阳离子未融合芳族抗OI药物的作用机理涉及该药物与DNA小沟中AT序列的结合。已经合成了一些新的抗OI候选药物,它们与稠合的芳香环系统(例如咔唑)不相似,后者类似于DNA中AT序列的小沟相互作用的经典范式。为了表征这些化合物之间的DNA相互作用,我们将UV可见光吸收,荧光,动力学测量和圆二色性与NMR光谱结合使用,以评估咔唑和DNA之间形成的复合物的结构。将这些方法应用于在3,6或2,7位上被阳离子咪唑啉基取代的咔唑给出了确凿的但非常令人惊讶的证据,即这两种化合物都在AT DNA序列的小沟中牢固结合。 3,6-和2,7-咔唑与自互补低聚物d(GCGAATTCGC)之间形成的配合物的NMR和分子模型已用于建立次要凹槽配合物的结构细节。这些结果已被用作分子建模计算的约束条件,以构建次要凹槽-咔唑配合物的模型并得出关于取代基位置对咔唑-DNA亲和力影响的分子基础的结论。令人惊讶的结果是2,7咔唑在AT序列中通过氢键结合,该氢键涉及一个咪唑啉基和咔唑NH。 3,6-咔唑化合物在更“经典”的模型中结合,该模型使用两个咪唑啉基团进行H键结合,而咔唑NH则指向较小的凹槽。咔唑因此形成一种新型的DNA小沟复合物,其优异的生物学活性表明应研究各种稠环小沟结合剂。

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