Palomo J, Gallardo F, Suarez MF, Canovas FM
Laboratorio de Bioquimica y Biologia Molecular, Facultad de Ciencias, Universidad de Malaga and Instituto Andaluz de Biotecnologia, Campus de Teatinos, E-29071 Malaga, Spain.
Plant Physiol. 1998 Oct;118(2):617-26. doi: 10.1104/pp.118.2.617.
NADP+-isocitrate dehydrogenase (NADP+-IDH; EC 1.1.1.42) is involved in the supply of 2-oxoglutarate for ammonia assimilation and glutamate synthesis in higher plants through the glutamine synthetase/glutamate synthase (GS/GOGAT) cycle. Only one NADP+-IDH form of cytosolic localization was detected in green cotyledons of pine (Pinus spp.) seedlings. The pine enzyme was purified and exhibited molecular and kinetic properties similar to those described for NADP+-IDH from angiosperm, with a higher catalytic efficiency (10(5) M-1 s-1) than the deduced efficiencies for GS and GOGAT in higher plants. A polyclonal antiserum was raised against pine NADP+-IDH and used to assess protein expression in the seedlings. Steady-state levels of NADP+-IDH were coordinated with GS during seed germination and were associated with GS/GOGAT enzymes during chloroplast biogenesis, suggesting that NADP+-IDH is involved in the provision of carbon skeletons for the synthesis of nitrogen-containing molecules. However, a noncoordinated pattern of NADP+-IDH and GS/GOGAT was observed in advanced stages of cotyledon development and in the hypocotyl. A detailed analysis in hypocotyl sections revealed that NADP+-IDH abundance was inversely correlated with the presence of GS, GOGAT, and ribulose-1,5-bisphosphate carboxylase/oxygenase but was associated with the differentiation of the organ. These results cannot be explained by the accepted role of the enzyme in nitrogen assimilation and strongly suggest that NADP+-IDH may have other, as-yet-unknown, biological functions.
NADP⁺ - 异柠檬酸脱氢酶(NADP⁺ - IDH;EC 1.1.1.42)通过谷氨酰胺合成酶/谷氨酸合酶(GS/GOGAT)循环参与高等植物中氨同化和谷氨酸合成所需的2 - 酮戊二酸的供应。在松树(松属)幼苗的绿色子叶中仅检测到一种定位于胞质的NADP⁺ - IDH形式。该松树酶被纯化,其分子和动力学特性与被子植物中NADP⁺ - IDH的特性相似,催化效率(10⁵ M⁻¹ s⁻¹)高于高等植物中GS和GOGAT的推测效率。制备了针对松树NADP⁺ - IDH的多克隆抗血清,并用于评估幼苗中的蛋白质表达。在种子萌发过程中,NADP⁺ - IDH的稳态水平与GS协调,并且在叶绿体生物发生过程中与GS/GOGAT酶相关,这表明NADP⁺ - IDH参与为含氮分子的合成提供碳骨架。然而,在子叶发育后期和下胚轴中观察到NADP⁺ - IDH与GS/GOGAT的不协调模式。在下胚轴切片中的详细分析表明,NADP⁺ - IDH的丰度与GS、GOGAT和核酮糖 - 1,5 - 二磷酸羧化酶/加氧酶的存在呈负相关,但与器官的分化相关。这些结果无法用该酶在氮同化中的公认作用来解释,强烈表明NADP⁺ - IDH可能具有其他尚未知的生物学功能。