Hur Y, Vasconcelos A C
Department of Biology, Chungnam National University, Taejeon, Korea.
Mol Cells. 1998 Apr 30;8(2):138-47.
Spinach (Spinacia oleracea) cytosolic fructose-1,6-bisphosphatase (FBPase) was purified and the final preparation of protein has a specific activity of about 45 units/mg protein and a single band of molecular mass of 39 kDa. Polyclonal antibody against the protein did not cross-react with chloroplast FBPase, but showed strong cross-reactivity with all plant cytosolic FBPases tested. Studies of the FBPase expression characteristics at early stages of development demonstrated that it was controlled at both the transcriptional and translational levels, and its mRNA was detected even in etiolated cotyledons. This suggests that the expression is not light-inducible. A single transcript was detected in all spinach tissues tested. Western blot analysis revealed two protein bands in the etiolated cotyledons: one was the same size as that present in the mature leaf, and the other slightly smaller. A high enzyme activity was detected in etiolated cotyledons, especially compared to protein levels in Western blots. Expression of the cytosolic FBPase gene during leaf development showed no change in the steady-state level of mRNA, but the protein level and enzyme activity were higher in mature leaves than in young ones, suggesting that the increase in FBPase activity during development is due to an increase in protein synthesis. Young roots showed low enzyme activity, but an unexpectedly high activity was detected in old fiber roots.
菠菜(Spinacia oleracea)胞质果糖-1,6-二磷酸酶(FBPase)被纯化,最终制备的蛋白质比活性约为45单位/毫克蛋白质,且有一条分子量为39 kDa的单条带。针对该蛋白质的多克隆抗体与叶绿体FBPase无交叉反应,但与所有测试的植物胞质FBPase表现出强烈的交叉反应。对发育早期FBPase表达特征的研究表明,其在转录和翻译水平均受到调控,甚至在黄化子叶中也能检测到其mRNA。这表明该表达不是光诱导的。在所有测试的菠菜组织中均检测到单一转录本。蛋白质印迹分析显示黄化子叶中有两条蛋白带:一条与成熟叶片中的大小相同,另一条略小。在黄化子叶中检测到较高的酶活性,尤其是与蛋白质印迹中的蛋白质水平相比。叶片发育过程中胞质FBPase基因的表达显示mRNA的稳态水平没有变化,但成熟叶片中的蛋白质水平和酶活性高于幼叶,这表明发育过程中FBPase活性的增加是由于蛋白质合成增加。幼根显示出较低的酶活性,但在老纤维根中检测到意外高的活性。