Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI, 48824, USA.
Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI, 48824, USA.
Plant Sci. 2021 Jan;302:110687. doi: 10.1016/j.plantsci.2020.110687. Epub 2020 Oct 14.
In plants, the deoxy sugar l-rhamnose is widely present as rhamnose-containing polymers in cell walls and as part of the decoration of various specialized metabolites. Here, we review the current knowledge on the distribution of rhamnose, highlighting the differences between what is known in dicotyledoneuos compared to commelinid monocotyledoneous (grasses) plants. We discuss the biosynthesis and transport of UDP-rhamnose, as well as the transfer of rhamnose from UDP-rhamnose to various primary and specialized metabolites. This is carried out by rhamnosyltransferases, enzymes that can use a large variety of substrates. Some unique characteristics of rhamnose synthases, the multifunctional enzymes responsible for the conversion of UDP-glucose into UDP-rhamnose, are considered, particularly from the perspective of their ability to convert glucose present in flavonoids. Finally, we discuss how little is still known with regards to how plants rescue rhamnose from the many compounds to which it is linked, or how rhamnose is catabolized.
在植物中,脱氧糖 l-鼠李糖广泛存在于细胞壁中的鼠李糖聚合物和各种特殊代谢物的修饰部分。在这里,我们回顾了鼠李糖的分布的现有知识,强调了双子叶植物与单子叶植物(禾本科植物)之间的差异。我们讨论了 UDP-鼠李糖的生物合成和运输,以及鼠李糖从 UDP-鼠李糖向各种初级和特殊代谢物的转移。这是通过鼠李糖基转移酶完成的,这些酶可以使用多种底物。还考虑了负责将 UDP-葡萄糖转化为 UDP-鼠李糖的多功能酶 - 鼠李糖合酶的一些独特特征,特别是从其将存在于类黄酮中的葡萄糖转化的能力的角度来看。最后,我们讨论了植物从与鼠李糖相连的许多化合物中回收鼠李糖的方式,以及鼠李糖的分解代谢方式方面,仍然知之甚少。