Hou Bingkai, Lim Eng-Kiat, Higgins Gillian S, Bowles Dianna J
CNAP, Department of Biology, University of York, York YO10 5DD, United Kingdom.
J Biol Chem. 2004 Nov 12;279(46):47822-32. doi: 10.1074/jbc.M409569200. Epub 2004 Sep 1.
Cytokinins are plant hormones that can be glucosylated to form O-glucosides and N-glucosides. The glycoconjugates are inactive and are thought to play a role in homeostasis of the hormones. Although O-glucosyltransferases have been identified that recognize cytokinins, the enzymes involved in N-glucosylation have not been identified even though the process has been recognized for many years. This study utilizes a screening strategy in which 105 recombinant glycosyltransferases (UGTs) of Arabidopsis have been analyzed for catalytic activity toward the classical cytokinins: trans-zeatin, dihydrozeatin, N(6)-benzyladenine, N(6)-isopentenyladenine, and kinetin. Five UGTs were identified in the screen. UGT76C1 and UGT76C2 recognized all cytokinins and glucosylated the hormones at the N(7) and N(9) positions. UGT85A1, UGT73C5, and UGT73C1 recognized trans-zeatin and dihydrozeatin, which have an available hydroxyl group for glucosylation and formed the O-glucosides. The biochemical characteristics of the N-glucosyltransferases were analyzed, and highly effective inhibitors of their activities were identified. Constitutive overexpression of UGT76C1 in transgenic Arabidopsis confirmed that the recombinant enzyme functioned in vivo to glucosylate cytokinin applied to the plant. The role of the N-glucosyltransferases in cytokinin metabolism is discussed.
细胞分裂素是一类植物激素,可被糖基化形成O-糖苷和N-糖苷。这些糖缀合物没有活性,被认为在激素的稳态中发挥作用。尽管已经鉴定出能够识别细胞分裂素的O-糖基转移酶,但参与N-糖基化的酶尚未被鉴定出来,尽管这一过程已被认识多年。本研究采用一种筛选策略,分析了拟南芥的105种重组糖基转移酶(UGT)对经典细胞分裂素:反式玉米素、二氢玉米素、N⁶-苄基腺嘌呤、N⁶-异戊烯基腺嘌呤和激动素的催化活性。筛选中鉴定出了5种UGT。UGT76C1和UGT76C2识别所有细胞分裂素,并在N⁷和N⁹位置对激素进行糖基化。UGT85A1、UGT73C5和UGT73C1识别反式玉米素和二氢玉米素,它们具有可供糖基化的羟基,并形成O-糖苷。对N-糖基转移酶的生化特性进行了分析,并鉴定出了其活性的高效抑制剂。在转基因拟南芥中组成型过表达UGT76C1证实,重组酶在体内发挥功能,对施用于植物的细胞分裂素进行糖基化。讨论了N-糖基转移酶在细胞分裂素代谢中的作用。