化学
适体
亚甲蓝
氧化还原
结合亲和力
亲缘关系
结合位点
生物物理学
对接(动物)
共轭体系
组合化学
立体化学
生物化学
有机化学
受体
催化作用
生物
医学
护理部
光催化
聚合物
遗传学
作者
Yonatan Biniuri,Guo‐Feng Luo,Michael Fadeev,Verena Wulf,Itamar Willner
摘要
In this study, we report on a redox-controllable and reversible complete "ON"/"OFF"-switchable aptamer binding to ATP. A series of methylene blue-modified ATP-aptamers was synthesized, revealing improved binding affinities toward ATP as compared to the nonmodified aptamer. These binding affinities were dependent on the conjugation site of the redox label on the aptamer scaffold. Importantly, we find that the oxidized methylene blue-modified aptamers bind to ATP with micromolar affinity, while the reduced form lacks binding affinity toward ATP, resulting in an unprecedented complete "ON"/"OFF" redox-controllable aptamer switch. We demonstrate the cyclic "ON"/"OFF" binding of ATP to the methylene blue-functionalized aptamer through cyclic oxidation and reduction of the redox label using both chemical and electrochemical means. Molecular dynamics and docking simulations were performed to account for the redox-switchable properties of the conjugated aptamers and to rationalize the enhanced binding affinities of the different aptamer designs.
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