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通过肟连接制备的用于寡糖-蛋白质相互作用微阵列分析的新糖脂探针。

Neoglycolipid probes prepared via oxime ligation for microarray analysis of oligosaccharide-protein interactions.

作者信息

Liu Yan, Feizi Ten, Campanero-Rhodes María A, Childs Robert A, Zhang Yibing, Mulloy Barbara, Evans Philip G, Osborn Helen M I, Otto Diana, Crocker Paul R, Chai Wengang

机构信息

Glycosciences Laboratory, Imperial College London, Northwick Park and St. Mark's Campus, Harrow, Middlesex HA1 3UJ, United Kingdom.

出版信息

Chem Biol. 2007 Jul;14(7):847-59. doi: 10.1016/j.chembiol.2007.06.009.

Abstract

Neoglycolipid technology is the basis of a microarray platform for assigning oligosaccharide ligands for carbohydrate-binding proteins. The strategy for generating the neoglycolipid probes by reductive amination results in ring opening of the core monosaccharides. This often limits applicability to short-chain saccharides, although the majority of recognition motifs are satisfactorily presented with neoglycolipids of longer oligosaccharides. Here, we describe neoglycolipids prepared by oxime ligation. We provide evidence from NMR studies that a significant proportion of the oxime-linked core monosaccharide is in the ring-closed form, and this form selectively interacts with a carbohydrate-binding protein. By microarray analyses we demonstrate the effective presentation with oxime-linked neoglycolipids of (1) Lewis(x) trisaccharide to antibodies to Lewis(x), (2) sialyllactose analogs to the sialic acid-binding receptors, siglecs, and (3) N-glycans to a plant lectin that requires an intact N-acetylglucosamine core.

摘要

新糖脂技术是一种用于为碳水化合物结合蛋白分配寡糖配体的微阵列平台的基础。通过还原胺化生成新糖脂探针的策略会导致核心单糖开环。这通常限制了其对短链糖类的适用性,尽管大多数识别基序可以通过较长寡糖的新糖脂得到令人满意的呈现。在此,我们描述了通过肟连接制备的新糖脂。我们通过核磁共振研究提供证据表明,相当一部分肟连接的核心单糖处于闭环形式,并且这种形式与碳水化合物结合蛋白选择性相互作用。通过微阵列分析,我们证明了肟连接的新糖脂能够有效地呈现:(1) 路易斯(x)三糖给抗路易斯(x)抗体,(2) 唾液酸乳糖类似物给唾液酸结合受体(siglecs),以及(3) N-聚糖给需要完整N-乙酰葡糖胺核心的植物凝集素。

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