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Revealing the carbohydrate pattern on a cell surface by super-resolution imaging

机译:揭示了碳水化合物在细胞模式表面的超分辨率成像

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Carbohydrates are involved in various physiological and pathological activities including cell adhesion, signal transduction and tumor invasion. The distribution of carbohydrates is the molecular basis of their multiple functions, but remains poorly understood. Here, we employed direct stochastic optical reconstruction microscopy (dSTORM) to visualize the pattern of N-acetylglucosamine (N-GlcNAc) on Vero cell membranes at the nanometer level of resolution. We found that N-GlcNAcs exist in irregular clusters on the apical membrane with an average cluster area of about 0.37 mu m(2). Most of these N-GlcNAc clusters are co-localized with lipid rafts by dual-color dSTORM imaging, suggesting that carbohydrates are closely associated with lipid rafts as the functional domains. Our results demonstrate that super-resolution imaging is capable of characterizing the distribution of carbohydrates on the cellular surface at the molecular level.
机译:碳水化合物参与各种生理和病理活动包括细胞粘附、信号转导和肿瘤侵犯。的分子基础是他们的多吗功能,但仍知之甚少。我们采用直接随机光学重建显微镜(dSTORM)可视化的模式N-acetylglucosamine (N-GlcNAc)维罗在纳米级别的细胞膜决议。不规则的顶端膜和一个集群平均集群面积约0.37μm(2)。这些N-GlcNAc集群硝唑脂质筏,既dSTORM成像,表明碳水化合物是密切与脂质筏功能域。超分辨率成像的能力碳水化合物的分布特征在细胞表面在分子水平上。

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