Department of Chemistry, University of Turku, 20014 Turku, Finland.
Molecules. 2020 Dec 6;25(23):5755. doi: 10.3390/molecules25235755.
Nucleotide sugars have essential roles in every living creature. They are the building blocks of the biosynthesis of carbohydrates and their conjugates. They are involved in processes that are targets for drug development, and their analogs are potential inhibitors of these processes. Drug development requires efficient methods for the synthesis of oligosaccharides and nucleotide sugar building blocks as well as of modified structures as potential inhibitors. It requires also understanding the details of biological and chemical processes as well as the reactivity and reactions under different conditions. This article addresses all these issues by giving a broad overview on nucleotide sugars in biological and chemical reactions. As the background for the topic, glycosylation reactions in mammalian and bacterial cells are briefly discussed. In the following sections, structures and biosynthetic routes for nucleotide sugars, as well as the mechanisms of action of nucleotide sugar-utilizing enzymes, are discussed. Chemical topics include the reactivity and chemical synthesis methods. Finally, the enzymatic in vitro synthesis of nucleotide sugars and the utilization of enzyme cascades in the synthesis of nucleotide sugars and oligosaccharides are briefly discussed.
核苷酸糖在所有生物中都具有重要作用。它们是碳水化合物及其缀合物生物合成的构建块。它们参与了药物开发的目标过程,其类似物是这些过程的潜在抑制剂。药物开发需要高效的方法来合成寡糖和核苷酸糖构建块,以及作为潜在抑制剂的修饰结构。它还需要了解生物和化学反应的细节,以及不同条件下的反应性和反应。本文通过广泛概述生物和化学反应中的核苷酸糖来解决所有这些问题。作为主题的背景,简要讨论了哺乳动物和细菌细胞中的糖基化反应。在以下各节中,讨论了核苷酸糖的结构和生物合成途径,以及核苷酸糖利用酶的作用机制。化学主题包括反应性和化学合成方法。最后,简要讨论了核苷酸糖的酶促体外合成以及酶级联在核苷酸糖和寡糖合成中的利用。