化学
菁
G-四倍体
核酸
核糖核酸
拓扑(电路)
小RNA
癌症
计算生物学
DNA
基因
遗传学
生物化学
荧光
组合数学
物理
生物
量子力学
数学
作者
Hongxia Sun,Ranran Sun,Dawei Yang,Qian Li,Wenna Jiang,Tianxing Zhou,Ruiyang Bai,Fanru Zhong,Boyang Zhang,Junfeng Xiang,Jing Wang,Yalin Tang,Li Yao
摘要
G-quadruplex (G4), an unconventional nucleic acid structure, shows polymorphism in its topological morphology. The parallel G4 topology is the most prevalent form in organisms and plays a regulatory role in many biological processes. Designing fluorescent probes with high specificity for parallel G4s is important but challenging. Herein, a supramolecular assembly of the anionic cyanine dye SCY-5 is reported, which selectively identifies parallel G4 topology. SCY-5 can clearly distinguish parallel G4s from other G4s and non-G4s, even including hybrid-type G4s with parallel characteristics. The high specificity mechanism of SCY-5 involves a delicate balance between electrostatic repulsion and π–π interaction between SCY-5 and G4s. Using SCY-5, cellular RNA extracted from peripheral venous blood was quantitatively detected, and a remarkable increase in RNA G4 content in cancer patients compared to healthy volunteers was confirmed for the first time. This study provides new insights for designing specific probes for parallel G4 topology and opens a new path for clinical cancer diagnosis using RNA G4 as a biomarker.
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