Brooks Susan A
Department of Biological & Medical Sciences, Oxford Brookes University, Gipsy Lane, Headington, Oxford, OX3 0BP, UK.
Methods Mol Biol. 2017;1560:93-107. doi: 10.1007/978-1-4939-6788-9_6.
Lectins, discovered more than 100 years ago and defined by their ability to selectively recognize specific carbohydrate structures, are ubiquitous in living organisms. Their precise functions are as yet under-explored and incompletely understood but they are clearly involved, through recognition of their binding partners, in a myriad of biological mechanisms involved in cell identity, adhesion, signaling, growth regulation, in health and disease. Understanding the complex "sugar code" represented by the glycome is a major challenge and at the forefront of current biological research. Lectins have been widely employed in histochemical studies to map glycosylation in cells and tissues. Here, a brief history of the discovery of lectins and early developments in their use is presented along with a selection of some of the most interesting and significant discoveries to emerge from use of lectin histochemistry. Further, an evaluation of the next generation of lectin-based technologies is presented, including the potential for designing recombinant lectins with more precisely defined binding characteristics, linking lectin-based studies with other technologies to answer fundamental questions in glycobiology, and approaches to exploring the interactions of lectins with their binding partners in more detail.
凝集素于100多年前被发现,其定义为能够选择性识别特定碳水化合物结构的物质,在生物体内普遍存在。它们的确切功能尚未得到充分探索和完全理解,但通过识别其结合伴侣,它们显然参与了细胞识别、黏附、信号传导、生长调节等众多与健康和疾病相关的生物机制。理解糖组所代表的复杂“糖代码”是一项重大挑战,也是当前生物学研究的前沿领域。凝集素已广泛应用于组织化学研究,以绘制细胞和组织中的糖基化图谱。本文介绍了凝集素的发现简史及其早期应用发展,以及凝集素组织化学应用中一些最有趣和重要的发现。此外,还对下一代基于凝集素的技术进行了评估,包括设计具有更精确结合特性的重组凝集素的潜力、将基于凝集素的研究与其他技术相结合以回答糖生物学中的基本问题,以及更详细地探索凝集素与其结合伴侣相互作用的方法。