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糖科学指南:化学、生物化学与生物学如何协同破解糖密码。

A guide into glycosciences: How chemistry, biochemistry and biology cooperate to crack the sugar code.

作者信息

Solís Dolores, Bovin Nicolai V, Davis Anthony P, Jiménez-Barbero Jesús, Romero Antonio, Roy René, Smetana Karel, Gabius Hans-Joachim

机构信息

Instituto de Química Física "Rocasolano", CSIC, Serrano 119, 28006 Madrid, Spain; Centro de Investigación Biomédica en Red de Enfermedades Respiratorias (CIBERES), 07110 Bunyola, Mallorca, Illes Baleares, Spain.

Shemyakin & Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, ul Miklukho-Maklaya 16/10, 117871 GSP-7, V-437, Moscow, Russian Federation.

出版信息

Biochim Biophys Acta. 2015 Jan;1850(1):186-235. doi: 10.1016/j.bbagen.2014.03.016. Epub 2014 Mar 28.

Abstract

BACKGROUND

The most demanding challenge in research on molecular aspects within the flow of biological information is posed by the complex carbohydrates (glycan part of cellular glycoconjugates). How the 'message' encoded in carbohydrate 'letters' is 'read' and 'translated' can only be unraveled by interdisciplinary efforts.

SCOPE OF REVIEW

This review provides a didactic step-by-step survey of the concept of the sugar code and the way strategic combination of experimental approaches characterizes structure-function relationships, with resources for teaching.

MAJOR CONCLUSIONS

The unsurpassed coding capacity of glycans is an ideal platform for generating a broad range of molecular 'messages'. Structural and functional analyses of complex carbohydrates have been made possible by advances in chemical synthesis, rendering production of oligosaccharides, glycoclusters and neoglycoconjugates possible. This availability facilitates to test the glycans as ligands for natural sugar receptors (lectins). Their interaction is a means to turn sugar-encoded information into cellular effects. Glycan/lectin structures and their spatial modes of presentation underlie the exquisite specificity of the endogenous lectins in counterreceptor selection, that is, to home in on certain cellular glycoproteins or glycolipids.

GENERAL SIGNIFICANCE

Understanding how sugar-encoded 'messages' are 'read' and 'translated' by lectins provides insights into fundamental mechanisms of life, with potential for medical applications.

摘要

背景

生物信息流动中分子层面研究最具挑战性的难题是由复杂碳水化合物(细胞糖缀合物的聚糖部分)构成的。碳水化合物“字母”所编码的“信息”是如何被“读取”和“翻译”的,只能通过跨学科的努力来解开。

综述范围

本综述循序渐进地讲解了糖代码的概念,以及实验方法的策略性组合如何表征结构 - 功能关系,并提供了教学资源。

主要结论

聚糖无与伦比的编码能力是生成广泛分子“信息”的理想平台。化学合成的进展使复杂碳水化合物的结构和功能分析成为可能,从而能够生产寡糖、糖簇和新糖缀合物。这种可得性便于测试聚糖作为天然糖受体(凝集素)的配体。它们的相互作用是将糖编码信息转化为细胞效应的一种方式。聚糖/凝集素结构及其空间呈现模式是内源性凝集素在反受体选择中具有高度特异性的基础,即锁定某些细胞糖蛋白或糖脂。

普遍意义

了解凝集素如何“读取”和“翻译”糖编码的“信息”有助于深入了解生命的基本机制,并具有医学应用潜力。

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