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Halogenated Pentamethine Cyanine Dyes Exhibiting High Fidelity for G-Quadruplex DNA

机译:卤化五甲磺酸汀染料表现出G-QuadrepleDNA的高保真度

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摘要

Design and optimization of quadruplex-specific small molecules is developing into an attractive strategy for anti-cancer therapeutics with some promising candidates in clinical trials. A number of therapeutically favorable features of cyanine molecules can be effectively exploited to develop them as promising quadruplex-targeting agents. Herein, the design, synthesis and evaluation of a series of dimethylindoliene cyanine dyes with varying halogen substitutions are reported. Their interactions with telomeric and c-myc quadruplexes as well as a reference duplex sequence have been evaluated using thermal melting, biosensor-surface plasmon resonance, circular dichroism, isothermal titration calorimetry and mass spectrometry. Thermal melting analysis indicates that these ligands exhibit significant quadruplex stabilization and a very low duplex binding, with the dimethyl incorporation of paramount importance for decreased duplex affinity. Circular dichroism studies showed that the interaction of cyanines with quadruplex structures are primarily through stacking at one or both ends of the terminal tetrads with the two (trimethylammonium)propyl groups interacting in the accessible quadruplex grooves. Surface plasmon resonance and mass spectral studies shows the formation of an initial strong 1:1 complex followed by a significantly weaker secondary binding. Isothermal calorimetry studies show that the interaction of cyanines is predominantly entropy driven. In line with the design principles, this work provides new insights for further developing potent, highly selective cyanines as promising quadruplex-specific agents.
机译:四联体特异性小分子的设计和优化正发展成为一种有吸引力的抗癌治疗策略,并且在临床试验中有一些有希望的候选者。可以有效利用花菁分子的许多治疗有利特征,以将其开发为有前途的四链体靶向剂。本文中,报道了一系列具有不同卤素取代基的二甲基茚基花青染料的设计,合成和评估。它们与端粒和c-myc四链体以及参考双链体序列的相互作用已使用热解链,生物传感器表面等离振子共振,圆二色性,等温滴定量热法和质谱法进行了评估。热熔融分析表明,这些配体表现出显着的四链体稳定性和非常低的双链体结合,其中二甲基掺入对于降低双链亲和力至关重要。圆二色性研究表明,花青与四链体结构的相互作用主要是通过堆积在末端四叉体的一个或两个末端,而两个(三甲基铵)丙基在可访问的四链体凹槽中相互作用。表面等离振子共振和质谱研究表明形成了最初的强1:1络合物,随后显着弱化了次级结合。等温量热研究表明,花菁的相互作用主要受熵驱动。根据设计原则,这项工作为进一步开发有效的,高度选择性的花青作为有前途的四联体特异性试剂提供了新的见识。

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