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Super-photostable organic dye for long-term live-cell single-protein imaging
Journal article   Peer reviewed

Super-photostable organic dye for long-term live-cell single-protein imaging

Do-Hyeon Kim, Hong Minh Triet, Sun Hyeok Lee, Sina Jazani, Seongjae Jang, Syed Ali Abbas Abedi, Xiaogang Liu, Jongcheol Seo, Taekjip Ha, Young-Tae Chang, …
Nature methods, Vol.22(3), pp.550-558
01/03/2025
PMID: 39815105

Abstract

Carbocyanines - chemistry Cell Membrane - metabolism Clathrin - metabolism ErbB Receptors - metabolism Fluorescent Dyes - chemistry HeLa Cells Humans Microscopy, Fluorescence - methods Photobleaching Single Molecule Imaging - methods
Organic dyes play a crucial role in live-cell imaging because of their advantageous properties, such as photostability and high brightness. Here we introduce a super-photostable and bright organic dye, Phoenix Fluor 555 (PF555), which exhibits an order-of-magnitude longer photobleaching lifetime than conventional organic dyes without the requirement of any anti-photobleaching additives. PF555 is an asymmetric cyanine structure in which, on one side, the indole in the conventional Cyanine-3 is substituted with 3-oxo-quinoline. PF555 provides a powerful tool for long-term live-cell single-molecule imaging, as demonstrated by the imaging of the dynamic single-molecule interactions of the epidermal growth factor receptor with clathrin-coated structures on the plasma membrane of a live cell under physiological conditions.

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