Wakao Setsuko, Andre Carl, Benning Christoph
Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI 48824, USA.
Plant Physiol. 2008 Jan;146(1):277-88. doi: 10.1104/pp.107.108423. Epub 2007 Nov 9.
Glucose-6-phosphate dehydrogenase (G6PDH) has been implicated in the supply of reduced nicotine amide cofactors for biochemical reactions and in modulating the redox state of cells. In plants, identification of its role is complicated due to the presence of several isoforms in the cytosol and plastids. Here we focus on G6PDHs in the cytosol of Arabidopsis (Arabidopsis thaliana) using single and double mutants disrupted in the two cytosolic G6PDHs. Only a single G6PDH isoform remained in the double mutant and was present in chloroplasts, consistent with a loss of cytosolic G6PDH activity. The activities of the cytosolic isoforms G6PD5 and G6PD6 were reciprocally increased in single mutants with no increase of their respective transcript levels. We hypothesized that G6PDH plays a role in supplying NADPH for oil accumulation in developing seeds in which photosynthesis may be light limited. G6PDH activity in seeds derived from G6PD6 and a plastid G6PDH isoform and showed a similar temporal activity pattern as oil accumulation. Seeds of the double mutant but not of the single mutants had higher oil content and increased weight compared to those of the wild type, with no alteration in the carbon to nitrogen ratio or fatty acid composition. A decrease in total G6PDH activity was observed only in the double mutant. These results suggest that loss of cytosolic G6PDH activity affects the metabolism of developing seeds by increasing carbon substrates for synthesis of storage compounds rather than by decreasing the NADPH supply specifically for fatty acid synthesis.
葡萄糖-6-磷酸脱氢酶(G6PDH)与为生化反应提供还原型烟酰胺辅因子以及调节细胞的氧化还原状态有关。在植物中,由于细胞质和质体中存在多种同工型,其作用的鉴定较为复杂。在这里,我们利用在两种细胞质G6PDH中被破坏的单突变体和双突变体,聚焦于拟南芥细胞质中的G6PDH。双突变体中仅保留了一种G6PDH同工型,且存在于叶绿体中,这与细胞质G6PDH活性的丧失一致。在各自转录水平未增加的单突变体中,细胞质同工型G6PD5和G6PD6的活性相互增加。我们推测,G6PDH在为发育中的种子中的油脂积累提供NADPH方面发挥作用,在这些种子中光合作用可能受光照限制。来自G6PD6和一种质体G6PDH同工型的种子中的G6PDH活性呈现出与油脂积累相似的时间活性模式。与野生型相比,双突变体的种子而非单突变体的种子具有更高的油脂含量和增加的重量,碳氮比或脂肪酸组成没有改变。仅在双突变体中观察到总G6PDH活性的降低。这些结果表明,细胞质G6PDH活性的丧失通过增加用于合成储存化合物的碳底物而非通过特异性降低脂肪酸合成的NADPH供应来影响发育中种子的代谢。