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Supramolecular latching system based on ultrastable synthetic binding pairs as versatile tools for protein imaging

机译:基于超稳定合成结合对的超分子锁存系统作为蛋白质成像的多功能工具

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摘要

Here we report ultrastable synthetic binding pairs between cucurbit[7]uril (CB[7]) and adamantyl- (AdA) or ferrocenyl-ammonium (FcA) as a supramolecular latching system for protein imaging, overcoming the limitations of protein-based binding pairs. Cyanine 3-conjugated CB[7] (Cy3-CB[7]) can visualize AdA- or FcA-labeled proteins to provide clear fluorescence images for accurate and precise analysis of proteins. Furthermore, controllability of the system is demonstrated by treating with a stronger competitor guest. At low temperature, this allows us to selectively detach Cy3-CB[7] from guest-labeled proteins on the cell surface, while leaving Cy3-CB[7] latched to the cytosolic proteins for spatially conditional visualization of target proteins. This work represents a non-protein-based bioimaging tool which has inherent advantages over the widely used protein-based techniques, thereby demonstrating the great potential of this synthetic system.
机译:在这里我们报告葫芦[7]尿素(CB [7])和金刚烷基-(AdA)或二茂铁基铵盐(FcA)之间的超稳定合成结合对,作为蛋白质成像的超分子锁存系统,克服了基于蛋白质的结合对的局限性。结合了花青3的CB [7](Cy3-CB [7])可以可视化AdA或FcA标记的蛋白质,从而提供清晰的荧光图像,可以对蛋白质进行准确而精确的分析。此外,通过与更强的竞争对手的客人打交道来证明系统的可控制性。在低温下,这使我们能够选择性地从细胞表面的客体标记蛋白上分离Cy3-CB [7],而将Cy3-CB [7]锁存在胞浆蛋白中,以对目标蛋白进行空间条件可视化。这项工作代表了一种基于非蛋白质的生物成像工具,与广泛使用的基于蛋白质的技术相比,它具有固有的优势,从而证明了这种合成系统的巨大潜力。

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