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苯并二氧杂环戊烯基在天然生物碱白屈菜红碱和黄连碱与人类端粒 G-四链体 DNA 相互作用中的作用。一种多方法研究。

Role of the Benzodioxole Group in the Interactions between the Natural Alkaloids Chelerythrine and Coptisine and the Human Telomeric G-Quadruplex DNA. A Multiapproach Investigation.

机构信息

Department of Chemistry "U. Schiff", University of Florence , Via della Lastruccia 3, 50019 Sesto Fiorentino, Florence, Italy.

Department Neurofarba-Pharmaceutical and Nutraceutical Section and Laboratory of Molecular Modeling Cheminformatics & QSAR, University of Florence , Via U. Schiff 6, 50019 Sesto Fiorentino, Florence, Italy.

出版信息

J Nat Prod. 2017 Dec 22;80(12):3128-3135. doi: 10.1021/acs.jnatprod.7b00350. Epub 2017 Nov 17.

Abstract

The binding properties toward the human telomeric G-quadruplex of the two natural alkaloids coptisine and chelerythrine were studied using spectroscopic techniques, molecular modeling, and X-ray diffraction analysis. The results were compared with reported data for the parent compounds berberine and sanguinarine. Spectroscopic studies showed modest, but different rearrangements of the DNA-ligand complexes, which can be explained considering particular stereochemical features for these alkaloids, in spite of the similarity of their skeletons. In fact, the presence of a dioxolo moiety rather than the two methoxy functions improves the efficiency of coptisine and sanguinarine in comparison to berberine and chelerythrine, and the overall stability trend is sanguinarine > chelerythrine ≈ coptisine > berberine. Accordingly, the X-ray diffraction analysis confirmed the involvement of the benzodioxolo groups in the coptisine/DNA binding by means of π···π, O···π, and CH···O interactions. Similar information is provided by modeling studies, which, additionally, evidenced reasons for the quadruplex vs double-helix selectivity shown by these alkaloids. Thus, the analyses shed light on the key role of the benzodioxolo moieties in strengthening the interaction with the G4-folded human telomeric sequence and indicated the superior G4 stabilizing properties of the benzophenanthridine scaffold with respect to the protoberberine one and conversely the better G4 vs dsDNA selectivity profile of coptisine over the other alkaloids.

摘要

两种天然生物碱小檗碱和白屈菜红碱与人端粒 G-四链体的结合特性采用光谱技术、分子建模和 X 射线衍射分析进行了研究。并将结果与母化合物黄连素和血根碱的报道数据进行了比较。光谱研究表明,尽管这些生物碱的骨架相似,但 DNA-配体复合物有适度的、但不同的重排,可以考虑到这些生物碱的特定立体化学特征来解释。事实上,与二氧基部分相比,两个甲氧基功能的存在提高了小檗碱和血根碱与黄连素和白屈菜红碱相比的效率,并且整体稳定性趋势为血根碱>白屈菜红碱≈小檗碱>黄连素。相应地,X 射线衍射分析通过 π···π、O···π 和 CH···O 相互作用证实了苯并二氧杂环戊烷基团参与了小檗碱/DNA 结合。建模研究提供了类似的信息,此外,还证明了这些生物碱显示出四链体与双链体选择性的原因。因此,这些分析阐明了苯并二氧杂环戊烷部分在增强与 G4 折叠人端粒序列相互作用中的关键作用,并表明苯并菲啶支架相对于原小檗碱具有更好的 G4 稳定性质,反之,小檗碱相对于其他生物碱具有更好的 G4 与 dsDNA 选择性。

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