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E-选择素与血型家族岩藻糖寡糖相互作用的研究。

An investigation of the interactions of E-selectin with fuco-oligosaccharides of the blood group family.

作者信息

Martín María J, Feizi Ten, Leteux Christine, Pavlovic Davor, Piskarev Vladimir E, Chai Wengang

机构信息

Imperial College School of Medicine, Northwick Park Campus, Watford Road, Harrow, Middlesex HA1 3UJ, United Kingdom.

出版信息

Glycobiology. 2002 Dec;12(12):829-35. doi: 10.1093/glycob/cwf094.

Abstract

This investigation is concerned with assignments of Lewis(a) (Le(a)) and Le(x) analogs on linear and branched di- to hexasaccharide backbones as components of the recognition motifs for E-selectin. The influence of the location of fucose residue(s) was investigated using 14 structurally defined and variously fucosylated oligosaccharides in biotinylated form or as neoglycolipids in static binding assays, in microwells, and on thin-layer chromatograms. Results of the two assay systems were in agreement overall and showed that the recognition motifs for E-selectin include 4-fucosyl-lacto (Le(a)) and 3-fucosyl-neo-lacto (Le(x)) sequences strictly at capping positions and not Le(x) at an internal position as a part of VIM-2 antigen sequence. There is greater potency of the Le(a) over the Le(x) series. Additional fucose residues alpha1-2-linked to neighboring galactoses or alpha1-3-linked to inner N-acetyglucosamines or to reducing-terminal glucose residues of the tetrasaccharide backbone had little or no effect on the selectin binding. E-selectin binding to the Le(a) or Le(x )capping motif on a 3-linked branch was equivalent to the binding on the corresponding linear backbone. A lack of E-selectin binding to the Le(x) motif capping a 6-linked branch and to the Le(x) trisaccharide linked to biotin via a nine-carbon spacer indicates that the -GlcNAcbeta1-3Gal- sequence on the oligosaccharide backbone adjoining the Le(x) is a part of recognition motif for E-selectin. These findings contribute to understanding the molecular basis of E-selectin recognition and could influence future designs of selectin antagonists as possible therapeutic substances.

摘要

本研究关注Lewis(a)(Le(a))和Le(x)类似物在直链和支链二糖至六糖骨架上的分布,这些骨架作为E-选择素识别基序的组成部分。使用14种结构明确且经不同岩藻糖基化修饰的寡糖(生物素化形式或作为新糖脂),在微孔板中的静态结合试验以及薄层色谱图上,研究了岩藻糖残基位置的影响。两种检测系统的结果总体一致,表明E-选择素的识别基序严格包括位于封端位置的4-岩藻糖基乳糖(Le(a))和3-岩藻糖基新乳糖(Le(x))序列,而不是作为VIM-2抗原序列一部分的内部位置的Le(x)。Le(a)系列比Le(x)系列具有更强的活性。与相邻半乳糖α1-2连接、或与内部N-乙酰葡糖胺α1-3连接、或与四糖骨架的还原端葡萄糖残基连接的额外岩藻糖残基对选择素结合几乎没有影响。E-选择素与3-连接分支上的Le(a)或Le(x)封端基序的结合等同于与相应直链骨架上的结合。E-选择素不与封端6-连接分支的Le(x)基序以及通过九碳间隔臂与生物素连接的Le(x)三糖结合,这表明寡糖骨架上与Le(x)相邻的-GlcNAcbeta1-3Gal-序列是E-选择素识别基序的一部分。这些发现有助于理解E-选择素识别的分子基础,并可能影响未来作为潜在治疗物质的选择素拮抗剂的设计。

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