Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research-Raebareli, New Transit Campus, Lucknow, Uttar Pradesh, India 226002.
ACS Appl Bio Mater. 2023 Jun 19;6(6):2196-2210. doi: 10.1021/acsabm.3c00060. Epub 2023 May 25.
Fluorescent compounds that can preferentially interact with certain nucleic acids are of great importance in new drug discovery in a multitude of functions including fluorescence-based displacement assays and gel staining. Here, we report the discovery of an orange emissive styryl-benzothiazolium derivative (compound ) which interacts preferentially with 22 G-quadruplex DNA among a pool of nucleic acid structures containing G-quadruplex, duplex, and single-stranded DNA structures as well as RNA structures. Fluorescence-based binding analysis revealed that compound interacts with 22 G-quadruplex DNA in a 1:1 DNA to ligand binding stoichiometry. The association constant () for this interaction was found to be 1.12 (±0.15) × 10 M. Circular dichroism studies showed that the binding of the probe does not cause changes in the overall parallel G-quadruplex conformation; however, signs of higher-order complex formation were seen in the form of exciton splitting in the chromophore absorption region. UV-visible spectroscopy studies confirmed the stacking nature of the interaction of the fluorescent probe with the G-quadruplex which was further complemented by heat capacity measurement studies. Finally, we have shown that this fluorescent probe can be used toward G-quadruplex-based fluorescence displacement assays for ligand affinity ranking and as a substitute for ethidium bromide in gel staining.
能优先与特定核酸相互作用的荧光化合物在新药发现中具有重要作用,其功能包括基于荧光的置换分析和凝胶染色。在这里,我们报告了一种橙色发射的苯乙烯-苯并噻唑鎓衍生物(化合物)的发现,它优先与 22G-四链体 DNA 相互作用,而不是与包含 G-四链体、双链体和单链 DNA 结构以及 RNA 结构的核酸结构库相互作用。基于荧光的结合分析表明,化合物以 1:1 DNA 与配体的结合化学计量比与 22G-四链体 DNA 相互作用。发现该相互作用的结合常数()为 1.12(±0.15)×10^5M。圆二色性研究表明,探针的结合不会引起整体平行 G-四链体构象的变化;然而,在发色团吸收区域的激子分裂形式中,观察到高阶复合物形成的迹象。紫外可见光谱研究证实了荧光探针与 G-四链体相互作用的堆积性质,这进一步得到了热容测量研究的补充。最后,我们表明,这种荧光探针可用于基于 G-四链体的荧光置换分析,用于配体亲和力排名,并可替代凝胶染色中的溴化乙锭。