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Development of squaraine based G-quadruplex ligands using click chemistry

机译:使用点击化学技术开发基于方酸的G-四链体配体

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摘要

The G-quadruplex (G4) structures of nucleic acids are considered to play an intrinsic role in gene expression. To this end, the development of new G4 ligands has attracted extensive research interests towards potential applications as G4-targeted drugs and molecular probes. To date, the majority of G4 ligands have been composed of an extended planar aromatic scaffold that interacts with the terminal G-tetrad plane via π-π interactions, and various side chains that interact with the sugar-phosphate backbone, loops or grooves of the G4 structures. The side chains act to modulate the affinity and selectivity of the G4 ligands, alongside influencing their biodistribution. Here, we present a click chemistry methodology to generate a series of squaraine-based G4 ligand derivatives based on our previously reported G4 probe (named CSTS) but with varing side chains. We find that importantly these new G4 ligand derivatives retain the G4 selectivity, optical properties and low cytotoxicity of CSTS, but exhibit different binding behaviors to G4 structures, and distinct cellular uptake efficiencies. Indeed, of these new complexes, several exhibit much higher affinity and cellular uptake than CSTS. Overall, this novel, facile and highly effective strategy has significant future potential for the high-throughput screening of G4 ligands or probes targeted towards in vivo applications.
机译:核酸的G-四链体(G4)结构被认为在基因表达中起着固有的作用。为此,新的G4配体的开发吸引了广泛的研究兴趣,将其作为靶向G4的药物和分子探针的潜在应用。迄今为止,大多数G4配体由延伸的平面芳族骨架组成,该骨架通过π-π相互作用与末端G-四联体平面相互作用,以及与糖-磷酸主链,环的环状或凹槽相互作用的各种侧链。 G4结构。侧链起到调节G4配体的亲和力和选择性的作用,同时影响它们的生物分布。在这里,我们提出一种点击化学方法,以基于我们先前报道的G4探针(命名为CSTS)但具有可变的侧链生成一系列基于方酸的G4配体衍生物。我们发现重要的是,这些新的G4配体衍生物保留了CSTS的G4选择性,光学性质和低细胞毒性,但对G4结构表现出不同的结合行为,并具有不同的细胞吸收效率。实际上,在这些新的复合物中,有些具有比CSTS高得多的亲和力和细胞摄取。总体而言,这种新颖,简便且高效的策略对于高通量筛选针对体内应用的G4配体或探针具有巨大的未来潜力。

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