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首页> 外文期刊>Journal of Molecular Biology >Structural analysis of the human galectin-9 N-terminal carbohydrate recognition domain reveals unexpected properties that differ from the mouse orthologue
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Structural analysis of the human galectin-9 N-terminal carbohydrate recognition domain reveals unexpected properties that differ from the mouse orthologue

机译:对人galectin-9 N端碳水化合物识别结构域的结构分析揭示了与小鼠直向同源物不同的意外特性

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Galectins are a family of beta-galactoside-binding lectins that contain a conserved carbohydrate recognition domain (CRD). They exhibit high affinities for small beta-galactosides as well as variable binding specificities for complex glycoconjugates. Structural and biochemical analyses of the mechanism governing specific carbohydrate recognition provide a useful template to elucidate the function of these proteins. Here we report the crystal structures of the human galectin-9 N-terminal CRD (NCRD) in the presence of lactose and Forssman pentasaccharide. Mouse galectin-9 NCRD, the structure of which was previously solved by our group, forms a non-canonical dimer in both the crystal state and in solution. Human galectin-9 NCRD, however, exists as a monomer in crystals, despite a high sequence identity to the mouse homologue. Comparative frontal affinity chromatography analysis of the mouse and human galectin-9 NCRDs revealed different carbohydrate binding specificities, with disparate affinities for complex glycoconjugates. Human galectin-9 NCRD exhibited a high affinity for Forssman pentasaccharide; the association constant for mouse galectin-9 NCRD was 100-fold less than that observed for the human protein. The combination of structural data with mutational studies demonstrated that non-conserved amino acid residues on the concave surface were important for determination of target specificities. The human galectin-9 NCRD exhibited greater inhibition of cell proliferation than the mouse NCRD. We discuss the biochemical and structural differences between highly homologous proteins from different species. (c) 2007 Elsevier Ltd. All rights reserved.
机译:半乳凝素是一个β-半乳糖苷结合凝集素家族,其中包含一个保守的碳水化合物识别域(CRD)。它们对小的β-半乳糖苷具有高亲和力,对复杂的糖缀合物具有可变的结合特异性。结构和生化分析机制控制特定的碳水化合物识别提供了一个有用的模板,以阐明这些蛋白质的功能。在这里,我们报告在乳糖和福斯曼五糖的存在下人galectin-9 N末端CRD(NCRD)的晶体结构。小鼠galectin-9 NCRD的结构先前由我们的研究小组解决,在晶体状态和溶液状态下均会形成非规范的二聚体。尽管与小鼠同源物具有高序列同一性,但人半乳凝素9 NCRD作为单体存在于晶体中。小鼠和人半乳凝素9 NCRD的比较额叶亲和层析分析显示了不同的碳水化合物结合特异性,对复杂糖缀合物的亲和力也不同。人半乳糖凝集素9 NCRD对Forssman五糖具有高亲和力。小鼠galectin-9 NCRD的缔合常数比人蛋白的缔合常数小100倍。结构数据与突变研究的结合表明,凹表面上的非保守氨基酸残基对于确定靶标特异性非常重要。与小鼠NCRD相比,人galectin-9 NCRD对细胞增殖的抑制作用更大。我们讨论了来自不同物种的高度同源蛋白之间的生化和结构差异。 (c)2007 Elsevier Ltd.保留所有权利。

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