Bioconjug Chem. 2018 Apr 18;29(4):1312-1318. doi: 10.1021/acs.bioconjchem.8b00061. Epub 2018 Feb 20.
The synthesis, fluorogenic characterization, and labeling application of four tetrazine-quenched cyanine probes with emission maxima in the red-far red range is reported. Fluorescence of the cyanine-cores is quenched via through-bond-energy-transfer (TBET) exerted by a bioorthogonal tetrazine unit. Upon bioorthogonal labeling reaction with cyclooctyne tagged proteins, the quenching effect ceases, and thus the fluorescence reinstates, resulting in an increase in fluorescence intensity. As a rare example among indocyanines, one of our new probes was found suitable in STED-based super-resolution imaging. The applicability of this fluorogenic Tet-Cy3 probe was therefore further demonstrated in the bioorthogonal labeling of cytoskeletal protein, actin, with subsequent super-resolution microscopy (STED) imaging even under no-wash conditions.
本文报道了四种四嗪猝灭型菁染料探针的合成、荧光性质及标记应用,其荧光发射峰位于红-远红区。菁染料的荧光通过生物正交四嗪单元的通过键能转移(TBET)而猝灭。与环辛炔标记的蛋白质进行生物正交标记反应后,猝灭效应消失,荧光恢复,从而导致荧光强度增加。在吲哚菁染料中较为罕见的是,我们的一种新探针适用于基于 STED 的超分辨率成像。因此,这种荧光四嗪-Cy3 探针在生物正交标记细胞骨架蛋白肌动蛋白后的超分辨率显微镜(STED)成像中的应用得到了进一步的证明,即使在无需洗涤的条件下也能进行。