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Fluorescent amplifying recognition for DNA G-quadruplex folding with a cationic conjugated polymer: A platform for homogeneous potassium detection

机译:阳离子共轭聚合物对DNA G-四链体折叠的荧光放大识别:均质钾检测的平台

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摘要

Single-stranded DNA with G-rich sequences can fold into secondary structures, G-quadruplexes, via intramolecular hydrogen-bonding interactions. This conformational change can be detected by a homogeneous assay method based on fluorescence resonance energy transfer (FRET) from a water-soluble cationic conjugated polymer (CCP) to a fluorescein chromophore labeled at the terminus of the G-quadruplex DNA. The space charge density around the DNA controls the efficiency of FRET from the CCP to the fluorescein. The higher FRET efficiency for the CCP/G-quadruplex pair is correlated to the stronger electrostatic interactions between the more condensed G-quadruplex and the CCP in comparison to the CCP/ssDNA pair. Since the potassium ion can specifically bind to the G-quadruplex DNA, the G-quartet-DNA/CCPs assembly can also be used as a platform to sense the potassium ion in water with high selectivity and sensitivity.
机译:具有丰富G序列的单链DNA可以通过分子内氢键相互作用折叠成二级结构G-四链体。可以通过基于荧光共振能量转移(FRET)从水溶性阳离子共轭聚合物(CCP)到在G四联体DNA末端标记的荧光素生色团的均相测定方法,检测这种构象变化。 DNA周围的空间电荷密度控制着从CCP到荧光素的FRET效率。与CCP / ssDNA对相比,CCP / G-四链体对的较高FRET效率与更缩合的G-四链体与CCP之间更强的静电相互作用相关。由于钾离子可以与G-四链体DNA特异性结合,因此G-四重体DNA / CCPs组件也可以用作以高选择性和高灵敏度感测水中钾离子的平台。

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