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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Lectin-based structural glycomics: a practical approach to complex glycans.
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Lectin-based structural glycomics: a practical approach to complex glycans.

机译:基于凝集素的结构糖组学:复杂聚糖的实用方法。

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摘要

Glycans exist in nature in various forms of glycoconjugates, i.e., glycoproteins, glycolipids, and glycosaminoglycans, either in soluble or membrane-bound forms. One of their prominent properties distinguished from nucleic acids and proteins is "heterogeneity" largely attributed to their inherent features of biosynthesis. In general, various methods based on the physicochemical principles have been taken for their separation and structural determination although all of them require prior liberation of glycans and appropriate labeling. On the other hand, a series of carbohydrate-binding proteins, or "lectins," have extensively been used in a more direct manner for cell typing, histochemical staining, and glycoprotein fractionation. Although most procedures conventionally used are useful, unfortunately they lack "throughput" comparable to a performance required for current omics studies. Recently, a novel technique called lectin microarray has attracted increasing attention from not only glycoscientists but also researchers in other fields, because it is straightforward and also informative. The method is innovating in that it enables direct approach to glycoconjugates such as glycoproteins and even cells without liberation of glycans from the core substrate, and therefore can be effectively applied for the sake of differential profiling in various fields. Concept, strategy, and technical advancement of lectin microarray are described. Also, as an introduction to glycomics, the authors explain the motivation to challenge this theme.
机译:聚糖以各种形式的糖缀合物(即糖蛋白,糖脂和糖胺聚糖)以可溶或膜结合形式存在于自然界中。它们不同于核酸和蛋白质的突出特性之一是“异质性”,很大程度上归因于其生物合成的固有特征。通常,已经采用了基于理化原理的各种方法进行分离和结构测定,尽管它们都需要事先释放聚糖并进行适当标记。另一方面,一系列碳水化合物结合蛋白或“凝集素”已以更直接的方式广泛用于细胞分型,组织化学染色和糖蛋白分级分离。尽管大多数常规使用的方法都是有用的,但不幸的是,它们缺乏与当前组学研究所需性能相当的“通量”。最近,一种称为凝集素微阵列的新技术不仅吸引了糖学家,而且也吸引了其他领域的研究人员的注意,因为它既简单又有益。该方法的创新之处在于它可以直接接近糖缀合物(例如糖蛋白)甚至细胞,而不会从核心底物中释放出聚糖,因此可以有效地应用于各种领域的差异分析。描述了凝集素微阵列的概念,策略和技术进步。另外,作为糖组学的简介,作者解释了挑战这一主题的动机。

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