首页> 外文期刊>The Journal of Biochemistry >Comparative analysis by frontal affinity chromatography of oligosaccharide specificity of GlcNAc-binding lectins, Griffonia simplicifolia lectin-II (GSL-II) and Boletopsis leucomelas lectin (BLL).
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Comparative analysis by frontal affinity chromatography of oligosaccharide specificity of GlcNAc-binding lectins, Griffonia simplicifolia lectin-II (GSL-II) and Boletopsis leucomelas lectin (BLL).

机译:通过额叶亲和层析对结合GlcNAc的凝集素,Griffonia simplicifolia lectin-II(GSL-II)和Boletopsis leucomelas lectin(BLL)的寡糖特异性进行比较分析。

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摘要

Lectin-based structural glycomics requires a search for useful lectins and their biochemical characterization to profile complex features of glycans. In this paper, two GlcNAc-binding lectins are reported with their detailed oligosaccharide specificity. One is a classic plant lectin, Griffonia simplicifolia lectin-II (GSL-II), and the other is a novel fungal lectin, Boletopsis leucomelas lectin (BLL). Their sugar-binding specificity was analyzed by frontal affinity chromatography using 146 glycans (125 pyridylaminated and 21 p-nitrophenyl saccharides). As a result, it was found that both GSL-II and BLL showed significant affinity toward complex-type N-glycans, which are either partially or completely agalactosylated. However, their branch-specific features differed significantly: GSL-II strongly bound to agalacto-type, tri- or tetra-antennary N-glycans with its primary recognition of a GlcNAc residue transferred by GlcNAc-transferase IV, while BLL preferred N-glycans with fewer branches. In fact, the presence of a GlcNAc residue transferred by GlcNAc-transferase V abolishes the binding of BLL. Thus, GSL-II and BLL forms a pair of complementally probes to profile a series of agalacto-type N-glycans.
机译:基于凝集素的结构糖组学需要寻找有用的凝集素及其生化特征以描绘聚糖的复杂特征。本文报道了两种结合GlcNAc的凝集素及其详细的寡糖特异性。一种是经典植物凝集素,Griffonia simplicifolia lectin-II(GSL-II),另一种是新型真菌凝集素,Boletopsis leucomelas lectin(BLL)。通过额叶亲和色谱法,使用146个聚糖(125个吡啶叠层和21个对硝基苯基糖)对它们的糖结合特异性进行了分析。结果,发现GSL-II和BLL均显示出对复杂类型的N-聚糖的显着亲和力,所述复杂类型的N-聚糖被部分或完全被半乳糖基化。但是,它们的分支特异性特征存在显着差异:GSL-II与半乳糖型,三或四天线N-聚糖牢固结合,主要识别由GlcNAc-转移酶IV转移的GlcNAc残基,而BLL优选N-聚糖。分行少。实际上,由GlcNAc转移酶V转移的GlcNAc残基的存在消除了BLL的结合。因此,GSL-II和BLL形成一对互补探针,以分析一系列半乳糖型N-聚糖。

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