Palma Angelina S, Feizi Ten, Zhang Yibing, Stoll Mark S, Lawson Alexander M, Díaz-Rodríguez Esther, Campanero-Rhodes María Asunción, Costa Júlia, Gordon Siamon, Brown Gordon D, Chai Wengang
Glycosciences Laboratory, Faculty of Medicine, Imperial College London, Northwick Park and St Mark's Campus, Watford Road, Harrow, Middlesex HA1 3UJ, United Kingdom.
J Biol Chem. 2006 Mar 3;281(9):5771-9. doi: 10.1074/jbc.M511461200. Epub 2005 Dec 21.
Dectin-1 is a C-type lectin-like receptor on leukocytes that mediates phagocytosis and inflammatory mediator production in innate immunity to fungal pathogens. Dectin-1 lacks residues involved in calcium ligation that mediates carbohydrate-binding by classical C-type lectins; nevertheless, it binds zymosan, a particulate beta-glucan-rich extract of Saccharomyces cerevisiae, and binding is inhibited by polysaccharides rich in beta1,3- or both beta1,3- and beta1,6-linked glucose. The oligosaccharide ligands on glucans recognized by Dectin-1 have not yet been delineated precisely. It is also not known whether Dectin-1 can interact with other types of carbohydrates. We have investigated this, since Dectin-1 shows glucan-independent binding to a subset of T-lymphocytes and is involved in triggering their proliferation. Here we assign oligosaccharide ligands for Dectin-1 using the neoglycolipid-based oligosaccharide microarray technology, a unique approach for constructing microarrays of lipid-linked oligosaccharide probes from desired sources. We generate "designer" microarrays from three glucan polysaccharides, a neutral soluble glucan isolated from S. cerevisiae and two bacterial glucans, curdlan from Alcaligenes faecalis and pustulan from Umbilicaria papullosa, and use these in conjunction with 187 diverse, sequence-defined, predominantly mammalian-type, oligosaccharide probes. Among these, Dectin-1 binding is detected exclusively to 1,3-linked glucose oligomers, the minimum length required for detectable binding being a 10- or 11-mer. Thus, the ligands assigned so far are exogenous rather than endogenous. We further show that Dectin-1 ligands, 11-13 gluco-oligomers, in clustered form (displayed on liposomes), mimic the macromolecular beta-glucans and compete with zymosan binding and triggering of tumor necrosis factor-alpha secretion by a Dectin-1-expressing macrophage cell line.
Dectin-1是白细胞上的一种C型凝集素样受体,在对真菌病原体的固有免疫中介导吞噬作用和炎症介质的产生。Dectin-1缺乏参与钙连接的残基,而钙连接介导经典C型凝集素的碳水化合物结合;然而,它能结合酵母聚糖,一种富含β-葡聚糖的酿酒酵母颗粒提取物,且富含β1,3-或同时富含β1,3-和β1,6-连接葡萄糖的多糖可抑制其结合。Dectin-1识别的葡聚糖上的寡糖配体尚未被精确界定。也不清楚Dectin-1是否能与其他类型的碳水化合物相互作用。我们对此进行了研究,因为Dectin-1显示出与一部分T淋巴细胞存在不依赖葡聚糖的结合,并参与触发它们的增殖。在此,我们使用基于新糖脂的寡糖微阵列技术为Dectin-1确定寡糖配体,这是一种从所需来源构建脂质连接寡糖探针微阵列的独特方法。我们从三种葡聚糖多糖生成“定制”微阵列,一种是从酿酒酵母中分离出的中性可溶性葡聚糖,以及两种细菌葡聚糖,粪产碱杆菌的凝胶多糖和乳头脐菇的石耳多糖,并将它们与187种不同的、序列明确的、主要为哺乳动物类型的寡糖探针一起使用。其中,仅检测到Dectin-1与1,3-连接的葡萄糖寡聚物结合,可检测到结合所需的最短长度为10或11聚体。因此,目前确定的配体是外源性而非内源性的。我们进一步表明,呈簇状形式(展示在脂质体上)的Dectin-1配体,即11 - 13葡糖寡聚物,可模拟大分子β-葡聚糖,并与酵母聚糖竞争结合,以及抑制表达Dectin-1的巨噬细胞系分泌肿瘤坏死因子-α。