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Generation of nucleotide sugars for biomass formation in plants

机译:产生用于植物生物量形成的核苷酸糖

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摘要

Nucleotide sugars are activated forms of monosaccharides and serve as glycosyl donors for glycosyltransferases in the synthesis of cell wall polysaccharides. Since they affect the amounts and architecture of cell wall polysaccharides in plants, the levels of nucleotide sugars, as well as the levels of the glycosyltransferases, at least partially, regulate the production of plant cellulosic biomass. Nucleotide sugars are principally generated through de novo pathways, in which various UDP- and GDP-sugars are produced through sequential interconversions from starting substrates such as UDPglucose. The salvage pathway is an alternative route to synthesize nucleotide sugars. In the salvage pathway, free monosaccharides released during the metabolism of polysaccharides and glycoconjugates are first phosphorylated by monosaccharide kinases, and then converted to nucleotide sugars by nucleotide sugar pyrophosphorylases in the presence of the respective nucleotide triphosphates as co-substrates. In this review, we focus on the recent progress in our understanding of the mechanism for the generation of nucleotide sugars through the salvage pathway for free monosaccharides in higher plants.
机译:核苷酸糖是单糖的活化形式,并在细胞壁多糖合成中用作糖基转移酶的糖基供体。由于它们影响植物中细胞壁多糖的数量和结构,因此核苷酸糖的水平以及糖基转移酶的水平至少部分地调节了植物纤维素生物质的产生。核苷酸糖主要是通过从头产生的途径产生的,其中通过从起始底物(例如UDPglucose)进行连续的相互转化来产生各种UDP-和GDP-糖。挽救途径是合成核苷酸糖的另一种途径。在挽救途径中,在多糖和糖缀合物的代谢过程中释放的游离单糖首先被单糖激酶磷酸化,然后在各个核苷酸三磷酸作为共底物的存在下被核苷酸糖焦磷酸酯转化为核苷酸糖。在这篇综述中,我们集中于我们对高等植物中游离单糖的挽救途径产生核苷酸糖的机理的最新进展。

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