Vargas Walter A, Pontis Horacio G, Salerno Graciela L
Centro de Investigaciones Biológicas, Fundación para Investigaciones Biológicas Aplicadas, C.C. 1348, 7600 Mar del Plata, Argentina.
Planta. 2008 Mar;227(4):795-807. doi: 10.1007/s00425-007-0657-1. Epub 2007 Nov 22.
The presence of sucrose (Suc) in plastids was questioned for several decades. Although it was reported some decades ago, neither Suc transporters nor Suc metabolizing enzymes were demonstrated to be active in those organelles. By biochemical, immunological, molecular and genetic approaches we show that alkaline/neutral invertases (A/N-Invs) are also localized in chloroplasts of spinach and Arabidopsis. A/N-Inv activity and polypeptide content were shown in protein extracts from intact chloroplasts. Moreover, we functionally characterized the Arabidopsis At-A/N-InvE gene coding for a chloroplast-targeted A/N-Inv. The At-A/N-InvE knockout plants displayed a lower total A/N-Inv activity in comparison with wild-type plants. Furthermore, neither A/N-Inv activity nor A/N-Inv polypeptides were detected in protein extracts prepared from chloroplasts of mutant plants. Also, the measurement of carbohydrate content, in leaves harvested either at the end of the day or at the end of the night period, revealed that the knockout plants showed a decrease in starch accumulation but no alteration in Suc levels. These are the first results demonstrating the presence of a functional A/N-Inv inside chloroplasts and its relation with carbon storage in Arabidopsis leaves. Taken together our data and recent reports, we conclude that the participation of A/N-Invs in the carbon flux between the cytosol and the plastids may be a general phenomenon in plants.
几十年来,质体中蔗糖(Suc)的存在一直备受质疑。尽管几十年前就有相关报道,但当时并未证明蔗糖转运蛋白或蔗糖代谢酶在这些细胞器中具有活性。通过生化、免疫、分子和遗传学方法,我们发现碱性/中性转化酶(A/N-Invs)也定位于菠菜和拟南芥的叶绿体中。完整叶绿体的蛋白质提取物中显示出A/N-Inv活性和多肽含量。此外,我们对编码叶绿体靶向A/N-Inv的拟南芥At-A/N-InvE基因进行了功能表征。与野生型植物相比,At-A/N-InvE基因敲除植物的总A/N-Inv活性较低。此外,在突变植物叶绿体制备的蛋白质提取物中未检测到A/N-Inv活性或A/N-Inv多肽。同样,对白天结束时或夜间结束时收获的叶片中碳水化合物含量的测量表明,基因敲除植物的淀粉积累减少,但蔗糖水平没有变化。这些是首次证明叶绿体中存在功能性A/N-Inv及其与拟南芥叶片碳储存关系的结果。综合我们的数据和最近的报道,我们得出结论,A/N-Invs参与细胞质和质体之间的碳通量可能是植物中的普遍现象。