Li Cong, Chen Jielin, Man Tiantian, Chen Bin, Li Jiang, Li Qian, Yang Xiurong, Wan Ying, Fan Chunhai, Shen Jianlei
School of Chemistry and Chemical Engineering, New Cornerstone Science Laboratory, Frontiers Science Center for Transformative Molecules and National Center for Translational Medicine, Shanghai Jiao Tong University, Shanghai 200240, China.
School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
JACS Au. 2024 Feb 22;4(3):1125-1133. doi: 10.1021/jacsau.3c00826. eCollection 2024 Mar 25.
DNA nanostructures serve as precise templates for organizing organic dyes, enabling the creation of programmable artificial photonic systems with efficient light-harvesting and energy transfer capabilities. However, regulating the organization of organic dyes on DNA frameworks remains a great challenge. In this study, we investigated the factors influencing the self-assembly behavior of cyanine dye K21 on DNA frameworks. We observed that K21 exhibited diverse assembly modes, including monomers, H-aggregates, J-aggregates, and excimers, when combined with DNA frameworks. By manipulating conditions such as the ion concentration, dye concentration, and structure of DNA frameworks, we successfully achieved precise control over the assembly modes of K21. Leveraging K21's microenvironment-sensitive fluorescence properties on DNA nanostructures, we successfully discriminated between the chirality and topology structures of physiologically relevant G-quadruplexes. This study provides valuable insights into the factors influencing the dynamic assembly behavior of organic dyes on DNA framework nanostructures, offering new perspectives for constructing functional supramolecular aggregates and identifying DNA secondary structures.
DNA纳米结构作为用于组装有机染料的精确模板,能够创建具有高效光捕获和能量转移能力的可编程人工光子系统。然而,调控有机染料在DNA骨架上的组装仍然是一项巨大的挑战。在本研究中,我们研究了影响花菁染料K21在DNA骨架上自组装行为的因素。我们观察到,当与DNA骨架结合时,K21呈现出多种组装模式,包括单体、H-聚集体、J-聚集体和激基缔合物。通过控制离子浓度、染料浓度和DNA骨架结构等条件,我们成功实现了对K21组装模式的精确控制。利用K21在DNA纳米结构上的微环境敏感荧光特性,我们成功区分了生理相关G-四链体的手性和拓扑结构。本研究为影响有机染料在DNA骨架纳米结构上动态组装行为的因素提供了有价值的见解,为构建功能性超分子聚集体和识别DNA二级结构提供了新的视角。