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蘑菇凝集素中配体识别的结构基础:溶剂结构作为特异性预测因子。

Structural basis for ligand recognition in a mushroom lectin: solvent structure as specificity predictor.

机构信息

Departamento de Química Inorgánica, Analítica, y Química Física, INQUIMAE-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Pabellón II, C1428EHA Ciudad de Buenos Aires, Argentina, Argentina.

出版信息

Carbohydr Res. 2011 May 15;346(7):939-48. doi: 10.1016/j.carres.2011.02.016. Epub 2011 Feb 23.

Abstract

Lectins are able to recognize specific carbohydrate structures through their carbohydrate recognition domain (CRD). The lectin from the mushroom Agaricus bisporus (ABL) has the remarkable ability of selectively recognizing the TF-antigen, composed of Galβ1-3GalNAc, Ser/Thr linked to proteins, specifically exposed in neoplastic tissues. Strikingly, the recently solved crystal structure of tetrameric ABL in the presence of TF-antigen and other carbohydrates showed that each monomer has two CRDs, each being able to bind specifically to different monosaccharides that differ only in the configuration of a single hydroxyl, like N-acetyl-d-galactosamine (GalNAc) and N-acetyl-d-glucosamine (GlcNAc). Understanding how lectin CRDs bind and discriminate mono and/or (poly)-saccharides is an important issue in glycobiology, with potential impact in the design of better and selective lectin inhibitors with potential therapeutic properties. In this work, and based on the unusual monosaccharide epimeric specificity of the ABL CRDs, we have performed molecular dynamics simulations of the natural (crystallographic) and inverted (changing GalNAc for GlcNAc and vice-versa) ABL-monosaccharide complexes in order to understand the selective ligand recognition properties of each CRD. We also performed a detailed analysis of the CRD local solvent structure, using previously developed methodology, and related it with the recognition mechanism. Our results provide a detailed picture of each ABL CRD specificity, allowing a better understanding of the carbohydrate selective recognition process in this particular lectin.

摘要

凝集素能够通过其碳水化合物识别域(CRD)识别特定的碳水化合物结构。双孢蘑菇(Agaricus bisporus)中的凝集素(ABL)具有选择性识别 TF 抗原的非凡能力,TF 抗原由与蛋白质连接的 Galβ1-3GalNAc、Ser/Thr 组成,特异性地暴露在肿瘤组织中。引人注目的是,最近在存在 TF 抗原和其他碳水化合物的情况下解决的四聚体 ABL 晶体结构表明,每个单体具有两个 CRD,每个 CRD 都能够特异性地结合到仅在单个羟基的构型上有所不同的不同单糖上,例如 N-乙酰-d-半乳糖胺(GalNAc)和 N-乙酰-d-葡萄糖胺(GlcNAc)。了解凝集素 CRD 如何结合和区分单糖和/或(多)聚糖是糖生物学中的一个重要问题,对于设计具有潜在治疗特性的更好和选择性凝集素抑制剂具有潜在影响。在这项工作中,并且基于 ABL CRD 的异常单糖差向异构特异性,我们对天然(晶体学)和倒置(将 GalNAc 替换为 GlcNAc 反之亦然)ABL-单糖复合物进行了分子动力学模拟,以了解每个 CRD 的选择性配体识别特性。我们还使用先前开发的方法对 CRD 局部溶剂结构进行了详细分析,并将其与识别机制相关联。我们的结果提供了每个 ABL CRD 特异性的详细图片,使我们能够更好地理解这种特定凝集素中的碳水化合物选择性识别过程。

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