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The Biosynthesis of Nitrogen- Sulfur- and High-carbon Chain-containing Sugars

机译:糖含氮硫的生物合成和高碳含链条

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摘要

Carbohydrates serve many structural and functional roles in biology. While the majority of monosaccharides are characterized by the chemical composition: (CH2O)n, modifications including deoxygenation, C-alkylation, amination, O- and N-methylation, which are characteristic of many sugar appendages of secondary metabolites, are not uncommon. Interestingly, some sugar molecules are formed via modifications including amine oxidation, sulfur incorporation, and “high-carbon” chain attachment. Most of these unusual sugars have been identified over the past several decades as components of microbially produced natural products, although a few high-carbon sugars are also found in the lipooligosaccharides of the outer cell walls of Gram-negative bacteria. Despite their broad distribution in nature, these sugars are considered “rare” due to their relative scarcity. The biosynthetic steps that underlie their formation continue to perplex researchers to this day and many questions regarding key transformations remain unanswered. This review will focus on our current understanding of the biosynthesis of unusual sugars bearing oxidized amine substituents, thio-functional groups, and high-carbon chains.
机译:碳水化合物在生物学中起许多结构和功能的作用。尽管大多数单糖的化学组成为(CH2O)n,但修饰并不常见,包括脱氧,C-烷基化,胺化,O-和N-甲基化等修饰,这些修饰是次级代谢产物的许多糖附属物的特征。有趣的是,一些糖分子是通过修饰形成的,包括胺氧化,硫结合和“高碳”链连接。尽管在革兰氏阴性细菌外细胞壁的脂寡糖中也发现了一些高碳糖,但在过去的几十年中,大多数这些不寻常的糖已被鉴定为微生物生产的天然产物的组成部分。尽管它们在自然界中分布广泛,但由于其相对稀缺而被认为是“稀有”。直到今天,构成其基础的生物合成步骤仍困扰着研究人员,有关关键转化的许多问题仍未得到解答。这篇综述将集中于我们目前对具有氧化胺取代基,硫官能团和高碳链的不寻常糖的生物合成的理解。

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