van der Velde Jasper H M, Oelerich Jens, Huang Jingyi, Smit Jochem H, Aminian Jazi Atieh, Galiani Silvia, Kolmakov Kirill, Guoridis Giorgos, Eggeling Christian, Herrmann Andreas, Roelfes Gerard, Cordes Thorben
Molecular Microscopy Research Group, Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.
Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.
Nat Commun. 2016 Jan 11;7:10144. doi: 10.1038/ncomms10144.
Intramolecular photostabilization via triple-state quenching was recently revived as a tool to impart synthetic organic fluorophores with 'self-healing' properties. To date, utilization of such fluorophore derivatives is rare due to their elaborate multi-step synthesis. Here we present a general strategy to covalently link a synthetic organic fluorophore simultaneously to a photostabilizer and biomolecular target via unnatural amino acids. The modular approach uses commercially available starting materials and simple chemical transformations. The resulting photostabilizer-dye conjugates are based on rhodamines, carbopyronines and cyanines with excellent photophysical properties, that is, high photostability and minimal signal fluctuations. Their versatile use is demonstrated by single-step labelling of DNA, antibodies and proteins, as well as applications in single-molecule and super-resolution fluorescence microscopy. We are convinced that the presented scaffolding strategy and the improved characteristics of the conjugates in applications will trigger the broader use of intramolecular photostabilization and help to emerge this approach as a new gold standard.
通过三重态猝灭实现的分子内光稳定化最近作为一种工具得以复兴,用于赋予合成有机荧光团“自愈”特性。迄今为止,由于此类荧光团衍生物的合成步骤复杂,其应用较少。在此,我们提出一种通用策略,通过非天然氨基酸将合成有机荧光团同时共价连接到光稳定剂和生物分子靶点上。这种模块化方法使用市售起始原料和简单的化学转化。所得的光稳定剂 - 染料共轭物基于罗丹明、碳吡咯宁和花青,具有优异的光物理性质,即高光稳定性和最小的信号波动。通过对DNA、抗体和蛋白质的单步标记以及在单分子和超分辨率荧光显微镜中的应用,展示了它们的广泛用途。我们相信,所提出的支架策略以及共轭物在应用中改进的特性将引发分子内光稳定化的更广泛应用,并有助于使这种方法成为一种新的金标准。