首页> 外文期刊>Chemistry: A European journal >Design and Synthesis of a Berberine Dimer: A Fluorescent Ligand with High Affinity towards G-Quadruplexes
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Design and Synthesis of a Berberine Dimer: A Fluorescent Ligand with High Affinity towards G-Quadruplexes

机译:小ber碱二聚体的设计与合成:对G-四链体具有高亲和力的荧光配体。

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摘要

G-quadruplexes (G4) are thought to be important factors for telomerase inhibition and transcriptional/translational modulations. Bioinformatic analyses imply that the human genome and mRNA contain a multitude of G4-forming sequences; however, their analysis requires selective and detectable ligands. Given that two molecules of fluorescent berberine (BBR) coordinate to telomeric G4 in their co-crystals, we designed hydrocarbon-linked BBR-analogue dimers because we expected the alignment of two BBR chromophores would avoid Watson-Crick base pair intercalation, which should result in high selectivity towards G4. An alkene-cis-C2 BBR dimer showed the highest affinity (K-d <= 2.6 nm) and selectivity (ca. 900-fold vs. duplex) towards G4. The intrinsic "light-up" fluorescence properties of this BBR dimer, derived from its conformational switching by G4, allowed a selective visualization of various G4 in the gel without using additional bulky fluorescence dyes, which, combined with the observed lack of conformational change of the ligand, suggested future applications in in vitro detection systems.
机译:G-四链体(G4)被认为是端粒酶抑制和转录/翻译调节的重要因素。生物信息学分析表明,人类基因组和mRNA包含大量形成G4的序列。然而,他们的分析需要选择性和可检测的配体。鉴于两个荧光小ber碱(BBR)分子在其共晶体中与端粒G4配位,我们设计了烃连接的BBR-类似物二聚体,因为我们期望两个BBR生色团的排列将避免沃森-克里克碱基对的嵌入,这应导致对G4具有高选择性。烯烃-顺式-C2 BBR二聚体显示出对G4的最高亲和力(K-d <= 2.6 nm)和选择性(相对于双链体约900倍)。该BBR二聚体的固有“发光”荧光特性源自于G4的构象转换,从而无需使用额外的笨重的荧光染料就可以选择性地观察凝胶中的各种G4,这与观察到的B4二聚体缺乏构象变化相结合。配体,建议在体外检测系统中的未来应用。

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