化学
核酸
氢键
两亲性
分子识别
化学计量学
组合化学
立体化学
水溶液
化学生物学
核苷酸
功能多样性
配体(生物化学)
氨基酸
纳米技术
寡核苷酸
生物物理学
笼子
化学通讯
结合位点
水介质
核酸热力学
蛋白质设计
分子
自组装
生物化学
受体
作者
Fan Cao,Zhimin Cao,Nuojin Yao,Ting Yang,Tianci He,Lin Cheng,Liping Cao
标识
DOI:10.1002/anie.202523981
摘要
Natural biological systems achieve precise recognition and regulation of nucleic acids through multi-domain synergistic interactions. Herein, we report the design and synthesis of a crown-ether-functionalized tetraphenylethene-based cage (1•8X, X = PF6- or Cl-) with two distinct recognition sites-four flexible, amphiphilic 18-crown-6 (18-C-6) units and a rigid, hydrophobic cavity. Its multi-cavity architecture offers an enzyme-like microenvironment, replicating the cooperative recognition behavior seen in natural receptors. As a result, 1•8Cl- promotes distinctive hydrogen-bonded assemblies of dinucleotides with various sequences in aqueous environments. Notably, 1•8Cl- facilitates a stable G•C•G•C quartet upon binding with two d(GpC), while assembling into an unprecedented C•C•C•C quartet in a 1:4 stoichiometric ratio with d(CpC). Additionally, 1•8Cl- selectively recognizes the 5'-base of dinucleotides or specifically binds to T base, promoting the formation of non-classical base-pairing patterns such as G•G, T•(H2O)2•T, and T•(K+)•T dimers in crystalline states. This study systematically investigates the hydrogen-bonding patterns of dinucleotides in biomimetic environments, providing new insights into the design of biomimetic receptors and understanding the diversity of non-classical nucleic acid structures.
科研通智能强力驱动
Strongly Powered by AbleSci AI