Physical Chemistry and Mass Spectrometry Laboratory, Department of Chemistry, University of Liège, B-4000 Liège, Belgium.
Biochemistry. 2013 Aug 20;52(33):5620-8. doi: 10.1021/bi4006072. Epub 2013 Aug 2.
Thioflavin T (ThT), a typical probe for protein fibrils, also binds human telomeric G-quadruplexes with a fluorescent light-up signal change and high specificity against DNA duplexes. Cell penetration and low cytotoxicity of fibril probes having been widely established, modifying ThT and other fibril probes is an attractive means of generating new G-quadruplex ligands. Thus, elucidating the binding mechanism is important for the design of new drugs and fluorescent probes based on ThT. Here, we investigated the binding mechanism of ThT with several variants of the human telomeric sequence in the presence of monovalent cations. Fluorescence titrations and electrospray ionization mass spectrometry (ESI-MS) analyses demonstrated that each G-quadruplex unit cooperatively binds to several ThT molecules. ThT brightly fluoresces when a single ligand is bound to the G-quadruplex and is quenched as ligand binding stoichiometry increases. Both the light-up signal and the dissociation constants are exquisitely sensitive to the base sequence and to the G-quadruplex structure. These results are crucial for the sensible design and interpretation of G-quadruplex detection assays using fluorescent ligands in general and ThT in particular.
噻唑橙(ThT)是一种典型的用于检测蛋白质纤维的探针,它也可以与人端粒 G-四链体结合,产生荧光信号变化,并具有很高的特异性,可区分 DNA 双链。由于纤维探针具有细胞穿透性和低细胞毒性,因此对 ThT 和其他纤维探针进行修饰是产生新的 G-四链体配体的一种有吸引力的方法。因此,阐明结合机制对于基于 ThT 的新型药物和荧光探针的设计非常重要。在这里,我们研究了在单价阳离子存在下,ThT 与几种人端粒序列变体的结合机制。荧光滴定和电喷雾电离质谱(ESI-MS)分析表明,每个 G-四链体单元都协同结合了几个 ThT 分子。当一个配体与 G-四链体结合时,ThT 会发出明亮的荧光,而随着配体结合的化学计量增加,荧光会被猝灭。亮灯信号和离解常数都对碱基序列和 G-四链体结构非常敏感。这些结果对于使用荧光配体特别是 ThT 设计和解释 G-四链体检测分析非常重要。