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聚糖:由凝集素解码的生物活性信号。

Glycans: bioactive signals decoded by lectins.

作者信息

Gabius Hans-Joachim

机构信息

Department of Veterinary Sciences, Faculty of Veterinary Medicine, Ludwig-Maximilians-University Munich, Munich, Germany.

出版信息

Biochem Soc Trans. 2008 Dec;36(Pt 6):1491-6. doi: 10.1042/BST0361491.

Abstract

The glycan part of cellular glycoconjugates affords a versatile means to build biochemical signals. These oligosaccharides have an exceptional talent in this respect. They surpass any other class of biomolecule in coding capacity within an oligomer (code word). Four structural factors account for this property: the potential for variability of linkage points, anomeric position and ring size as well as the aptitude for branching (first and second dimensions of the sugar code). Specific intermolecular recognition is favoured by abundant potential for hydrogen/co-ordination bonds and for C-H/pi-interactions. Fittingly, an array of protein folds has developed in evolution with the ability to select certain glycans from the natural diversity. The thermodynamics of this reaction profits from the occurrence of these ligands in only a few energetically favoured conformers, comparing favourably with highly flexible peptides (third dimension of the sugar code). Sequence, shape and local aspects of glycan presentation (e.g. multivalency) are key factors to regulate the avidity of lectin binding. At the level of cells, distinct glycan determinants, a result of enzymatic synthesis and dynamic remodelling, are being defined as biomarkers. Their presence gains a functional perspective by co-regulation of the cognate lectin as effector, for example in growth regulation. The way to tie sugar signal and lectin together is illustrated herein for two tumour model systems. In this sense, orchestration of glycan and lectin expression is an efficient means, with far-reaching relevance, to exploit the coding potential of oligosaccharides physiologically and medically.

摘要

细胞糖缀合物的聚糖部分为构建生化信号提供了一种通用手段。这些寡糖在这方面具有非凡的能力。在寡聚物(密码子)的编码能力方面,它们超越了任何其他类别的生物分子。有四个结构因素导致了这种特性:连接点、异头位置和环大小的可变性潜力,以及分支能力(糖代码的第一维和第二维)。丰富的氢键/配位键以及C-H/π相互作用潜力有利于特定的分子间识别。相应地,在进化过程中已经形成了一系列蛋白质折叠,能够从天然多样性中选择某些聚糖。与高度灵活的肽相比,这种反应的热力学得益于这些配体仅以少数能量有利的构象出现(糖代码的第三维)。聚糖呈现的序列、形状和局部方面(例如多价性)是调节凝集素结合亲和力的关键因素。在细胞水平上,由酶促合成和动态重塑产生的独特聚糖决定簇被定义为生物标志物。通过作为效应器的同源凝集素的共同调节,例如在生长调节中,它们的存在获得了功能视角。本文针对两个肿瘤模型系统阐述了将糖信号和凝集素联系在一起的方式。从这个意义上说,聚糖和凝集素表达的协调是一种有效手段,具有深远的相关性,可在生理和医学上利用寡糖的编码潜力。

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