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Fluorescein-5-thiosemicarbazide as a probe for directly imaging of mucin-type O-linked glycoprotein within living cells

机译:荧光素5-硫代氨基脲用作活细胞内粘蛋白型O型糖蛋白直接成像的探针

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摘要

Mucin-type O-linked glycoproteins are known for regulating many aspects of cell activity but remains a challenge to detect under physiological conditions which is due to the diversity of O-glycosylation and the lack of universal method. Here a direct labeling strategy for in situ visualizing of mucin-type O-linked glycoproteins on living cells has been developed. The strategy utilizes the combination of metabolic engineering and chemical probing technologies. Treating cells with an unnatural sugar, 2-keto Ac4GalNAc analogue (2-keto isostere of GalNAc) to generate keto groups upon cells, followed by chemoselective ligation of keto groups on cells with a fluorescent tag, fluorescein-5-thiosemicarbazide (FTSC), provides a promising platform to probing mucin-type Oglycosylation on living cells. The FTSC conjugates illustrated very similar fluorescent spectra as FITC, a fluorescent tag widely used in proteomics, indicating good compatibility with commonly used fluorescent equipments. The established method eliminated the need of an additional fluorescent amplification step. Cells after being treated with the method maintained a rather high level of viability of 84.3 %. Finally, the assay has been successfully applied to image the expression of mucin-type O-linked glycoproteins within CHO and HeLa cells.
机译:粘蛋白型O-连接糖蛋白已知用于调节细胞活性的许多方面,但是由于O-糖基化的多样性和缺乏通用方法,在生理条件下检测仍然是挑战。在这里,已经开发出在活细胞上原位可视化粘蛋白型O连接糖蛋白的直接标记策略。该策略利用了代谢工程学和化学探测技术的结合。用非天然糖,2-酮Ac4GalNAc类似物(GalNAc的2-酮等排酮)处理细胞,以在细胞上产生酮基,然后将酮基化学选择性地连接到带有荧光标签的荧光素-5-硫代半脲(FTSC),为探测活细胞上的粘蛋白型糖基化提供了一个有希望的平台。 FTSC结合物显示出与FITC非常相似的荧光光谱,FITC是蛋白质组学中广泛使用的荧光标签,表明与常用的荧光设备具有良好的相容性。建立的方法消除了额外的荧光扩增步骤的需要。用该方法处理后的细胞保持较高水平的活力,为84.3%。最终,该测定已成功应用于成像CHO和HeLa细胞中粘蛋白型O型糖蛋白的表达。

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