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关于半乳糖凝集素中参与寡糖配体中心半乳糖非还原端糖结合的亚位点的证据:仓鼠半乳糖凝集素-3的序列分析、同源建模和诱变研究。

Evidence for subsites in the galectins involved in sugar binding at the nonreducing end of the central galactose of oligosaccharide ligands: sequence analysis, homology modeling and mutagenesis studies of hamster galectin-3.

作者信息

Henrick K, Bawumia S, Barboni E A, Mehul B, Hughes R C

机构信息

National Institute for Medical Research, Mill Hill, London NW7 1AA, United Kingdom.

出版信息

Glycobiology. 1998 Jan;8(1):45-57. doi: 10.1093/glycob/8.1.45.

Abstract

A model of the carbohydrate recognition domain CRD, residues 111-245, of hamster galectin-3 has been made using homology modeling and dynamics minimization methods. The model is based on the known x-ray structures of bovine galectin-1 and human galectin-2. The oligosaccharides NeuNAc-alpha2,3-Gal-beta1,4-Glc and GalNAc-alpha1, 3-[Fuc-alpha1,2]-Gal-beta1,4-Glc, known to be specific high-affinity ligands for galectin-3, as well as lactose recognized by all galectins were docked in the galectin-3 CRD model structure and a minimized binding conformation found in each case. These studies indicate a putative extended carbohydrate-binding subsite in the hamster galectin-3 involving Arg139, Glu230, and Ser232 for NeuNAc-alpha2,3-; Arg139 and Glu160 for fucose-alpha1,2-; and Arg139 and Ile141 for GalNAc-alpha1,3- substituents on the primary galactose. Each of these positions is variable within the whole galectin family. Two of these residues, Arg139 and Ser232, were selected for mutagenesis to probe their importance in this newly identified putative subsite. Residue 139 adopts main-chain dihedral angles characteristic of an isolated bridge structural feature, while residue 232 is the C-terminal residue of beta-strand-11, and is followed immediately by an inverse gamma-turn. A systematic series of mutant proteins have been prepared to represent the residue variation present in the aligned sequences of galectins-1, -2, and -3. Minimized docked models were generated for each mutant in complex with NeuNAc-alpha2,3-Gal-beta1,4-Glc, GalNAc-alpha1, 3-[Fuc-alpha1,2]-Gal-beta1,4- Glc, and Gal-beta1,4-Glc. Correlation of the computed protein-carbohydrate interaction energies for each lectin-oligosaccharide pair with the experimentally determined binding affinities for fetuin and asialofetuin or the relative potencies of lactose and sialyllactose in inhibiting binding to asiolofetuin is consistent with the postulated key importance of Arg139 in recognition of the extended sialylated ligand.

摘要

利用同源建模和动力学最小化方法构建了仓鼠半乳糖凝集素-3碳水化合物识别结构域(CRD)(第111 - 245位氨基酸残基)的模型。该模型基于牛半乳糖凝集素-1和人半乳糖凝集素-2已知的X射线结构。已知作为半乳糖凝集素-3特异性高亲和力配体的寡糖NeuNAc-α2,3-Gal-β1,4-Glc和GalNAc-α1,3-[Fuc-α1,2]-Gal-β1,4-Glc,以及所有半乳糖凝集素都能识别的乳糖,被对接至半乳糖凝集素-3 CRD模型结构中,并分别找到了最小化的结合构象。这些研究表明,仓鼠半乳糖凝集素-3中存在一个假定的延伸碳水化合物结合亚位点,对于NeuNAc-α2,3-而言涉及Arg139、Glu230和Ser232;对于岩藻糖-α1,2-而言涉及Arg139和Glu160;对于主半乳糖上的GalNAc-α1,3-取代基而言涉及Arg139和Ile141。在整个半乳糖凝集素家族中,这些位置中的每一个都是可变的。选择其中两个残基Arg139和Ser232进行诱变,以探究它们在这个新确定的假定亚位点中的重要性。残基139呈现出孤立桥结构特征特有的主链二面角,而残基232是β-链11的C末端残基,紧接着是一个反向γ-转角。已制备了一系列系统的突变蛋白,以代表半乳糖凝集素-1、-2和-3比对序列中存在的残基变异。为每个与NeuNAc-α2,3-Gal-β1,4-Glc、GalNAc-α1,3-[Fuc-α1,2]-Gal-β1,4-Glc和Gal-β1,4-Glc形成复合物的突变体生成了最小化对接模型。每个凝集素-寡糖对计算得到的蛋白质-碳水化合物相互作用能与实验测定的胎球蛋白和去唾液酸胎球蛋白的结合亲和力,或乳糖和唾液酸乳糖抑制与去唾液酸胎球蛋白结合的相对效力之间的相关性,与Arg139在识别延伸的唾液酸化配体中的关键重要性这一假设一致。

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