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Control of the Synthesis and Subcellular Targeting of the Two GDH Genes Products in Leaves and Stems of Nicotiana plumbaginifolia and Arabidopsis thaliana

机译:烟草和拟南芥叶片和茎中两个GDH基因产物的合成和亚细胞靶向控制

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Although the physiological role of the enzyme glutamate dehydrogenase which catalyses in vitro the reversible amination of 2-oxoglutarate to glutamate remains to be elucidated, it is now well established that in higher plants the enzyme preferentially occurs in the mitochondria of phloem companion cells. The Nicotiana plumbaginifolia and Arabidopis thaliana enzyme is encoded by two distinct genes encoding either an α- or a β-subunit. Using antisense plants and mutants impaired in the expression of either of the two genes, we showed that in leaves and stems both the α- and β-subunits are targeted to the mitochondria of the companion cells. In addition, we found in both species that there is a compensatory mechanism up-regulating the expression of the α-subunit in the stems when the expression of the β-subunit is impaired in the leaves, and of the β-subunit in the leaves when the expression of the α-subunit is impaired in the stems. When one of the two genes encoding glutamate dehydrogenase is ectopically expressed, the corresponding protein is targeted to the mitochondria of both leaf and stem parenchyma cells and its production is increased in the companion cells. These results are discussed in relation to the possible signalling and/or physiological function of the enzyme which appears to be coordinated in leaves and stems.
机译:尽管仍然需要阐明在体外催化2-氧代戊二酸酯向谷氨酸的可逆胺化的谷氨酸脱氢酶的生理作用,但现在已经很好地证明,在高等植物中,该酶优先出现在韧皮部伴侣细胞的线粒体中。烟草(Nicotiana plumbaginifolia)和拟南芥(Arabidopis thaliana)酶由编码α-或β-亚基的两个不同基因编码。使用反义植物和两个基因中任一表达均受损的突变体,我们发现在叶和茎中,α-和β-亚基均靶向陪伴细胞的线粒体。另外,我们发现在这两个物种中,当叶片中的β-亚基表达受损而叶片中的β-亚基表达受损时,存在一种补偿机制,可以上调茎中α-亚基的表达。当茎中α-亚基的表达受损时。当编码谷氨酸脱氢酶的两个基因之一异位表达时,相应的蛋白质靶向叶片和茎实质细胞的线粒体,并且其伴随细胞的产量增加。这些结果是关于可能在叶片和茎中协调的酶的可能信号传导和/或生理功能进行讨论的。

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