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A palette of background-free tame fluorescent probes for intracellular multi-color labelling in live cells

机译:用于活细胞内细胞内多色标记的无背景驯服荧光探针

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摘要

A multi-color labelling technique for visualizing multiple intracellular apparatuses in their native environment using small fluorescent probes remains challenging. This approach requires both orthogonal and biocompatible coupling reactions in heterogeneous biological systems with minimum fluorescence background noise. Here, we present a palette of BODIPY probes containing azide and cyclooctyne moieties for copper-free click chemistry in living cells. The probes, referred to as ‘tame probes’, are highly permeable and specific in nature, leaving no background noise in cells. Such probes, which are rationally designed through optimized lipophilicity, water solubility and charged van der Waals surface area, allow us to demonstrate rapid and efficient concurrent multi-labelling of intracellular target components. We show that these probes are capable of not only labelling organelles and engineered proteins, but also showing the intracellular glycoconjugates’ dynamics, through the use of metabolic oligosaccharide engineering technology in various cell types. The results demonstrated in this study thus provide flexibility for multi-spectral labelling strategies in native systems in a high spatiotemporal manner.
机译:使用小型荧光探针在其自然环境中可视化多个细胞内装置的多色标记技术仍然具有挑战性。这种方法要求异质生物系统中的正交和生物相容性偶联反应同时具有最小的荧光背景噪声。在这里,我们介绍了含有叠氮化物和环辛炔部分的BODIPY探针,用于活细胞中的无铜点击化学。这些探针被称为“ tame探针”,具有很高的渗透性和特异性,在细胞中不会留下背景噪音。通过优化亲脂性,水溶性和带电范德华表面积合理设计的此类探针,使我们能够证明细胞内靶成分的快速,高效同时多重标记。我们展示了这些探针不仅可以标记细胞器和工程蛋白,而且还可以通过在各种细胞类型中使用代谢寡糖工程技术来显示细胞内糖缀合物的动力学。因此,本研究中证明的结果以高时空的方式为本地系统中的多光谱标记策略提供了灵活性。

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