Huber S C, Huber J L, Liao P C, Gage D A, McMichael R W, Chourey P S, Hannah L C, Koch K
United States Department of Agriculture, Agricultural Research Service, North Carolina State University, Raleigh 27695-7609, USA.
Plant Physiol. 1996 Oct;112(2):793-802. doi: 10.1104/pp.112.2.793.
Experiments were conducted to determine whether sucrose synthase (SuSy) was phosphorylated in the elongation zone of maize (Zea mays L.) leaves. The approximately 90-kD subunit of SuSy was 32P-labeled on seryl residue(s) when excised shoots were fed [32P]orthophosphate. Both isoforms of SuSy (the SS1 and SS2 proteins) were phosphorylated in vivo, and tryptic peptide-mapping analysis suggested a single, similar phosphorylation site in both proteins. A combination of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry and automated Edman sequencing analysis unequivocally identified the phosphorylation site in the maize SS2 protein as serine-15. This site was phosphorylated in vitro by endogenous protein kinase(s) in a strictly Ca(2+)-dependent manner. A synthetic peptide, based on the phosphorylation site sequence, was used to identify and partially purify an endogenous Ca(2+)-dependent protein kinase(s) from the maize leaf elongation zone and expanding spinach leaves. Phosphorylation of SuSy in vitro selectively activates the cleavage reaction by increasing the apparent affinity of the enzyme for sucrose and UDP, suggesting that phosphorylation may be of regulatory significance. Conservation of the phosphorylation site, and the sequences surrounding it, among plant species suggests that phosphorylation of SuSy may be widespread, if not universal, in plants.
开展了实验以确定蔗糖合酶(SuSy)在玉米(Zea mays L.)叶片伸长区是否发生磷酸化。当给切除的芽饲喂[32P]正磷酸盐时,SuSy约90-kD的亚基在丝氨酸残基上被32P标记。SuSy的两种同工型(SS1和SS2蛋白)在体内均发生磷酸化,胰蛋白酶肽图分析表明这两种蛋白中存在单个相似的磷酸化位点。基质辅助激光解吸/电离飞行时间质谱和自动Edman测序分析相结合,明确鉴定出玉米SS2蛋白中的磷酸化位点为丝氨酸-15。该位点在体外被内源性蛋白激酶以严格依赖Ca(2+)的方式磷酸化。基于磷酸化位点序列的合成肽被用于从玉米叶片伸长区和正在扩展的菠菜叶片中鉴定和部分纯化内源性Ca(2+)依赖蛋白激酶。体外SuSy的磷酸化通过增加该酶对蔗糖和UDP的表观亲和力选择性激活裂解反应,表明磷酸化可能具有调节意义。植物物种间磷酸化位点及其周围序列的保守性表明,SuSy的磷酸化即便不是在所有植物中普遍存在,在植物中也可能广泛存在。