首页> 美国卫生研究院文献>The Journal of Biological Chemistry >High Affinity Interaction between a Bivalve C-type Lectin and a Biantennary Complex-type N-Glycan Revealed by Crystallography and Microcalorimetry
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High Affinity Interaction between a Bivalve C-type Lectin and a Biantennary Complex-type N-Glycan Revealed by Crystallography and Microcalorimetry

机译:双壳类C型凝集素与α-双歧杆菌之间的高亲和力相互作用 双天线复合型N-聚糖的结晶学和 微量量热法

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摘要

Codakine is an abundant 14-kDa mannose-binding C-type lectin isolated from the gills of the sea bivalve Codakia orbicularis. Binding studies using inhibition of hemagglutination indicated specificity for mannose and fucose monosaccharides. Further experiments using a glycan array demonstrated, however, a very fine specificity for N-linked biantennary complex-type glycans. An unusually high affinity was measured by titration microcalorimetry performed with a biantennary Asn-linked nonasaccharide. The crystal structure of the native lectin at 1.3Å resolution revealed a new type of disulfide-bridged homodimer. Each monomer displays three intramolecular disulfide bridges and contains only one calcium ion located in the canonical binding site that is occupied by a glycerol molecule. The structure of the complex between Asn-linked nonasaccharide and codakine has been solved at 1.7Å resolution. All residues could be located in the electron density map, except for the capping β1–4-linked galactosides. The α1–6-linked mannose binds to calcium by coordinating the O3 and O4 hydroxyl groups. The GlcNAc moiety of the α1,6 arm engages in several hydrogen bonds with the protein, whereas the GlcNAc on the other antenna is stacked against Trp108, forming an extended binding site. This is the first structural report for a bivalve lectin.
机译:Codakine是一种丰富的14 kDa甘露糖结合性C型凝集素,从海双壳类Codakia orbicularis的ill中分离出来。使用抑制血凝反应的结合研究表明对甘露糖和岩藻糖单糖具有特异性。然而,使用聚糖阵列的进一步实验证明了对N-连接的双天线复合物型聚糖具有非常好的特异性。通过用双天线的Asn连接的九糖进行滴定微量热法测量到异常高的亲和力。天然凝集素在1.3Å分辨率下的晶体结构揭示了一种新型的二硫键桥接同源二聚体。每个单体显示三个分子内二硫键,并且仅包含一个位于钙离子结合位点的钙离子,该结合位点被甘油分子占据。 Asn连接的九糖和codakine之间的复合物的结构已在1.7Å分辨率下得到解析。除了加帽的β1-4连接的半乳​​糖苷外,所有残基都可以位于电子密度图中。 α1-6连接的甘露糖通过协调O3和O4羟基与钙结合。 α1,6臂的GlcNAc部分与蛋白质发生多个氢键结合,而 另一根天线上的GlcNAc与Trp 108 堆叠在一起,形成一个 扩展的结合位点。这是双壳类动物的第一份结构性报告 凝集素。

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