首页> 美国卫生研究院文献>The Journal of Biological Chemistry >X-ray Structures of Human Galectin-9 C-terminal Domain in Complexes with a Biantennary Oligosaccharide and Sialyllactose
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X-ray Structures of Human Galectin-9 C-terminal Domain in Complexes with a Biantennary Oligosaccharide and Sialyllactose

机译:X射线结构的人Galectin-9 C末端域与Biantennary寡糖和唾液酸乳糖复合物中。

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摘要

Galectin-9, a tandem-repeat-type β-galactoside-specific animal lectin with two carbohydrate recognition domains (CRDs) at the N- and C-terminal ends, is involved in chemoattraction, apoptosis, and the regulation of cell differentiation and has anti-allergic effects. Its ability to recognize carbohydrates is essential for its biological functions. Human galectin-9 (hG9) has high affinity for branched N-glycan-type oligosaccharides (dissociation constants of 0.16–0.70 μm) and linear β1–3-linked poly-N-acetyllactosamines (0.09–8.3 μm) and significant affinity for the α2–3-sialylated oligosaccharides (17–34 μm). Further, its N-terminal CRD (hG9N) and C-terminal CRD (hG9C) differ in specificity. To elucidate this unique feature of hG9, x-ray structures of hG9C in the free form and in complexes with N-acetyllactosamine, the biantennary pyridylaminated oligosaccharide, and α2–3-sialyllactose were determined. They are the first x-ray structural analysis of C-terminal CRD of the tandem-repeat-type galectin. The results clearly revealed the mechanism by which branched and α2–3-sialylated oligosaccharides are recognized and explained the difference in specificity between hG9N and hG9C. Based on structural comparisons with other galectins, we propose that the wide entrance for ligand binding and the shallow binding site of hG9C are favorable for branched oligosaccharides and that Arg221 is responsible for recognizing sialylated oligosaccharides.
机译:Galectin-9是串联重复型β-半乳糖苷特异性动物凝集素,在N和C末端具有两个碳水化合物识别域(CRD),参与化学引诱,细胞凋亡和细胞分化调控,并具有抗过敏作用。它识别碳水化合物的能力对其生物学功能至关重要。人galectin-9(hG9)对支链N-聚糖型寡糖(解离常数为0.16-0.70μm)和线性β1-3连接的聚-N-乙酰基乳糖胺(0.09-8.3μm)具有高亲和力,并且对α2–3唾液酸化寡糖(17–34μm)。此外,其N端CRD(hG9N)和C端CRD(hG9C)的特异性不同。为了阐明hG9的独特特征,测定了hG9C的X射线结构,其游离形式以及与N-乙酰基乳糖胺的复合物,双触角吡啶基寡糖和α2–3-唾液乳糖。它们是串联重复型半乳凝素C端CRD的第一个X射线结构分析。结果清楚地揭示了识别支链和α2–3-唾液酸化寡糖的机制,并解释了hG9N和hG9C之间的特异性差异。基于与其他半乳糖凝集素的结构比较,我们认为hG9C的配体结合的宽入口和hG9C的浅结合位点有利于分支寡糖,而Arg 221 负责识别唾液酸化寡糖。

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