Department of Biotechnology & Biophysics, Julius Maximilian University Wuerzburg, Am Hubland, 97074 Würzburg (Germany) http://www.super-resolution.de.
Angew Chem Int Ed Engl. 2014 Oct 6;53(41):10921-4. doi: 10.1002/anie.201406045. Epub 2014 Aug 27.
Much of the physiology of cells is controlled by the spatial organization of the plasma membrane and the glycosylation patterns of its components, however, studying the distribution, size, and composition of these components remains challenging. A bioorthogonal chemical reporter strategy was used for the efficient and specific labeling of membrane-associated glycoconjugates with modified monosaccharide precursors and organic fluorophores. Super-resolution fluorescence imaging was used to visualize plasma membrane glycans with single-molecule sensitivity. Our results demonstrate a homogeneous distribution of N-acetylmannosamine (ManNAc)-, N-acetylgalactosamine (GalNAc)-, and O-linked N-acetylglucosamine (O-GlcNAc)-modified plasma membrane proteins in different cell lines with densities of several million glycans on each cell surface.
细胞的许多生理学功能都受到质膜的空间组织和其组成成分的糖基化模式的控制,然而,研究这些成分的分布、大小和组成仍然具有挑战性。本研究采用生物正交化学报告策略,使用修饰的单糖前体和有机荧光染料,对膜相关糖缀合物进行高效和特异性标记。超分辨率荧光成像用于以单分子灵敏度可视化质膜聚糖。研究结果表明,在不同细胞系中,N-乙酰甘露糖胺(ManNAc)、N-乙酰半乳糖胺(GalNAc)和 O-连接的 N-乙酰葡萄糖胺(O-GlcNAc)修饰的质膜蛋白具有均匀的分布,每个细胞表面的糖基数高达几百万。