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凝集素:初识糖代码的转译分子

Lectins: getting familiar with translators of the sugar code.

作者信息

André Sabine, Kaltner Herbert, Manning Joachim C, Murphy Paul V, Gabius Hans-Joachim

机构信息

Institute of Physiological Chemistry, Faculty of Veterinary Medicine, Ludwig-Maximilians-University, Veterinärstr. 13, 80539 Munich, Germany.

School of Chemistry, National University of Ireland Galway, University Road, Galway, Ireland.

出版信息

Molecules. 2015 Jan 22;20(2):1788-823. doi: 10.3390/molecules20021788.

Abstract

The view on the significance of the presence of glycans in glycoconjugates is undergoing a paradigmatic change. Initially mostly considered to be rather inert and passive, the concept of the sugar code identifies glycans as highly versatile platform to store information. Their chemical properties endow carbohydrates to form oligomers with unsurpassed structural variability. Owing to their capacity to engage in hydrogen (and coordination) bonding and C-H/π-interactions these "code words" can be "read" (in Latin, legere) by specific receptors. A distinct class of carbohydrate-binding proteins are the lectins. More than a dozen protein folds have developed carbohydrate-binding capacity in vertebrates. Taking galectins as an example, distinct expression patterns are traced. The availability of labeled endogenous lectins facilitates monitoring of tissue reactivity, extending the scope of lectin histochemistry beyond that which traditionally involved plant lectins. Presentation of glycan and its cognate lectin can be orchestrated, making a glycan-based effector pathway in growth control of tumor and activated T cells possible. In order to unravel the structural basis of lectin specificity for particular glycoconjugates mimetics of branched glycans and programmable models of cell surfaces are being developed by strategic combination of lectin research with synthetic and supramolecular chemistry.

摘要

对于聚糖在糖缀合物中存在的意义的看法正在经历一场范式转变。最初大多被认为相当惰性和被动,糖代码概念将聚糖视为储存信息的高度通用平台。它们的化学性质使碳水化合物能够形成具有无与伦比结构变异性的寡聚物。由于它们参与氢键(和配位键)以及C-H/π相互作用的能力,这些“代码词”能够被特定受体“读取”(拉丁语,legere)。一类独特的碳水化合物结合蛋白是凝集素。在脊椎动物中,超过十二种蛋白质折叠形式发展出了碳水化合物结合能力。以半乳糖凝集素为例,可以追踪到不同的表达模式。标记的内源性凝集素的可用性有助于监测组织反应性,将凝集素组织化学的范围扩展到传统上涉及植物凝集素之外。聚糖及其同源凝集素的呈现可以被精心安排,使得在肿瘤生长控制和活化T细胞中基于聚糖的效应途径成为可能。为了揭示凝集素对特定糖缀合物特异性的结构基础,正在通过凝集素研究与合成化学和超分子化学的策略性结合来开发支链聚糖模拟物和细胞表面可编程模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/800f/6272290/1ef9e377fb89/molecules-20-01788-g001.jpg

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