Henrissat B, Coutinho P M, Davies G J
Architecture et Fonction des Macromolécules Biologiques, UMR 6098, CNRS and Universités d'Aix-Marseille I and II, France.
Plant Mol Biol. 2001 Sep;47(1-2):55-72.
The synthesis, modification, and breakdown of carbohydrates is one of the most fundamentally important reactions in nature. The structural and functional diversity of glycosides is mirrored by a vast array of enzymes involved in their synthesis (glycosyltransferases), modification (carbohydrate esterases) and breakdown (glycoside hydrolases and polysaccharide lyases). The importance of these processes is reflected in the dedication of 1-2% of an organism's genes to glycoside hydrolases and glycosyltransferases alone. In plants, these processes are of particular importance for cell-wall synthesis and expansion. starch metabolism, defence against pathogens, symbiosis and signalling. Here we present an analysis of over 730 open reading frames representing the two main classes of carbohydrate-active enzymes, glycoside hydrolases and glycosyltransferases, in the genome of Arabidopsis thaliana. The vast importance of these enzymes in cell-wall formation and degradation is revealed along with the unexpected dominance of pectin degradation in Arabidopsis, with at least 170 open-reading frames dedicated solely to this task.
碳水化合物的合成、修饰和分解是自然界中最根本的重要反应之一。糖苷的结构和功能多样性反映在参与其合成(糖基转移酶)、修饰(碳水化合物酯酶)和分解(糖苷水解酶和多糖裂解酶)的大量酶中。这些过程的重要性体现在生物体中仅糖苷水解酶和糖基转移酶就占其基因的1-2%。在植物中,这些过程对于细胞壁的合成与扩张、淀粉代谢、抵御病原体、共生和信号传导尤为重要。在此,我们对拟南芥基因组中代表碳水化合物活性酶的两大类——糖苷水解酶和糖基转移酶的730多个开放阅读框进行了分析。这些酶在细胞壁形成和降解中的巨大重要性得以揭示,同时还发现拟南芥中果胶降解出人意料地占主导地位,至少有170个开放阅读框专门负责此项任务。