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Labeling glycans on living cells by a chemoenzymatic glycoengineering approach

机译:通过化学酶糖化学方法标记活细胞上的聚糖

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Structural glycobiology has traditionally been a challenging field due to a limited set of tools available to investigate the diverse and complex glycan molecules. However, we cannot ignore that glycans play critical roles in health as well as in disease, and are present in more than 50% of all proteins and on over 80% of all surface proteins. Chemoenzymatic glycoengineering (CGE) methods are a powerful set of tools to synthesize complex glycans, but the full potential of these methods have not been explored in cell biology yet. Herein, we report the labeling of live Chinese hamster ovary (CHO) cells by employing three highly specific glycosyltransferases: a sialyltransferase, a galactosyltransferase, and an N-acetylglucosaminyl transferase. We verified our results by bio-orthogonal blots and further rationalized them by computational modeling. We expect CGE applications in cell biology to rise and their implementation will assist in structural-functional discoveries in glycobiology. This research will contribute to this effort.
机译:由于可用于研究多样化和复杂的聚糖分子的有限工具,结构糖生物学传统上是一个具有挑战性的领域。然而,我们不能忽视聚糖在健康和疾病中发挥关键作用,并且存在于所有蛋白质的50%以上,并超过所有表面蛋白的80%。化学酶糖糖(CGE)方法是合成复合聚糖的强大工具,但这些方法的全部潜力尚未在细胞生物学中探讨。在此,我们通过使用三种高度特异性糖基转移酶:唾液酸三烷基转移酶,半乳糖基转移酶和N-乙酰葡糖胺蛋白基转移酶来报告活汉仓卵巢(CHO)细胞的标记。我们通过生物正交污点验证了我们的结果,并通过计算建模进一步合理化了它们。我们希望CGE在细胞生物学中的应用增加,其实施将有助于糖类学中的结构功能发现。这项研究将有助于这项努力。

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