Click-free imaging of carbohydrate trafficking in live cells using an azido photothermal probe

Real-time tracking of intracellular carbohydrates remains challenging. While click chemistry allows bio-orthogonal tagging with fluorescent probes, the reaction permanently alters the target molecule and only allows a single snapshot. Here, we demonstrate click-free mid-infrared photothermal (MIP) i...

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Veröffentlicht in:Science advances 2024-08, Vol.10 (34), p.eadq0294
Hauptverfasser: Xia, Qing, Perera, Harini A, Bolarinho, Rylie, Piskulich, Zeke A, Guo, Zhongyue, Yin, Jiaze, He, Hongjian, Li, Mingsheng, Ge, Xiaowei, Cui, Qiang, Ramström, Olof, Yan, Mingdi, Cheng, Ji-Xin
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Sprache:eng
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Zusammenfassung:Real-time tracking of intracellular carbohydrates remains challenging. While click chemistry allows bio-orthogonal tagging with fluorescent probes, the reaction permanently alters the target molecule and only allows a single snapshot. Here, we demonstrate click-free mid-infrared photothermal (MIP) imaging of azide-tagged carbohydrates in live cells. Leveraging the micromolar detection sensitivity for 6-azido-trehalose (TreAz) and the 300-nm spatial resolution of MIP imaging, the trehalose recycling pathway in single mycobacteria, from cytoplasmic uptake to membrane localization, is directly visualized. A peak shift of azide in MIP spectrum further uncovers interactions between TreAz and intracellular protein. MIP mapping of unreacted azide after click reaction reveals click chemistry heterogeneity within a bacterium. Broader applications of azido photothermal probes to visualize the initial steps of the Leloir pathway in yeasts and the newly synthesized glycans in mammalian cells are demonstrated.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.adq0294