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探索岩藻糖基化寡糖的多种生物学意义和作用。

Exploring the diverse biological significance and roles of fucosylated oligosaccharides.

作者信息

Pekdemir Burcu, Karav Sercan

机构信息

Department of Molecular Biology and Genetics, Çanakkale Onsekiz Mart University, Çanakkale, Türkiye.

出版信息

Front Mol Biosci. 2024 May 28;11:1403727. doi: 10.3389/fmolb.2024.1403727. eCollection 2024.

Abstract

Long since, carbohydrates were thought to be used just as an energy source and structural material. However, in recent years, with the emergence of the field of glycobiology and advances in glycomics, much has been learned about the biological role of oligosaccharides, a carbohydrate polymer containing a small number of monosaccharides, in cell-cell interaction, signal transduction, immune response, pathogen adhesion processes, early embryogenesis, and apoptosis. The function of oligosaccharides in these processes is diversified by fucosylation, also known as modification of oligosaccharides. Fucosylation has allowed the identification of more than 100 different oligosaccharide structures that provide functional diversity. ABO blood group and Lewis antigens are among the best known fucosyl-linked oligosaccharides. In addition, the antigens in the ABO system are composed of various sugar molecules, including fucosylated oligosaccharides, and Lewis antigens are structurally similar to ABO antigens but differ in the linkage of sugars. Variation in blood group antigen expression affects the host's susceptibility to many infections. However, altered expression of ABO and Lewis antigens is related with prognosis in carcinoma types. In addition, many pathogens recognize and bind to human tissues using a protein receptor with high affinity for the fucose molecule in glycoconjugates, such as lectin. Fucosylated oligosaccharides also play vital roles during fertilization and early embryogenesis. Learning and memory-related processes such as neurite growth, neurite migration, and synapse formation seen during the development of the brain, which is among the first organs to develop in embryogenesis, are regulated by fucosylated oligosaccharides. In conclusion, this review mentions the vital roles of fucosylated oligosaccharides in biology, drawing attention to their importance in the development of chemical tools to be used in function analysis and the investigation of various therapeutic targets.

摘要

长期以来,碳水化合物被认为仅用作能量来源和结构材料。然而,近年来,随着糖生物学领域的出现和糖组学的进展,人们对寡糖(一种含有少量单糖的碳水化合物聚合物)在细胞间相互作用、信号转导、免疫反应、病原体黏附过程、早期胚胎发育和细胞凋亡中的生物学作用有了更多了解。寡糖在这些过程中的功能通过岩藻糖基化(也称为寡糖修饰)而多样化。岩藻糖基化已鉴定出100多种不同的寡糖结构,这些结构提供了功能多样性。ABO血型和Lewis抗原是最著名的岩藻糖基连接寡糖。此外,ABO系统中的抗原由各种糖分子组成,包括岩藻糖基化寡糖,而Lewis抗原在结构上与ABO抗原相似,但糖的连接方式不同。血型抗原表达的变化会影响宿主对许多感染的易感性。然而,ABO和Lewis抗原表达的改变与癌症类型的预后有关。此外,许多病原体使用对糖缀合物中的岩藻糖分子具有高亲和力的蛋白质受体(如凝集素)来识别并结合人体组织。岩藻糖基化寡糖在受精和早期胚胎发育过程中也起着至关重要的作用。在胚胎发育中最早发育的器官之一大脑的发育过程中出现的与学习和记忆相关的过程,如神经突生长、神经突迁移和突触形成,受岩藻糖基化寡糖的调节。总之,本综述提到了岩藻糖基化寡糖在生物学中的重要作用,提请注意它们在用于功能分析的化学工具开发和各种治疗靶点研究中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abf7/11165149/2ded255e3b91/fmolb-11-1403727-g001.jpg

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