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Arabidopsis thaliana NADP-malic enzyme isoforms: high degree of identity but clearly distinct properties

机译:拟南芥NADP-苹果酸酶同工型:高度同一性但性质明显不同

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The Arabidopsis thaliana genome contains four NADP-malic enzymes genes (NADP-ME1-4). NADP-ME4 is localized to plastids whereas the other isoforms are cytosolic. NADP-ME2 and 4 are constitutively expressed, while NADP-ME1 is restricted to secondary roots and NADP-ME3 to trichomes and pollen. Although the four isoforms share remarkably high degree of identity (75-90%), recombinant NADP-ME1 through 4 show distinct kinetic properties, both in the forward (malate oxidative decarboxylation) and reverse (pyruvate reductive carboxylation) reactions. The four isoforms behave differently in terms of reversibility, with NADP-ME2 presenting the highest reverse catalytic efficiency. When analyzing the activity of each isoform in the presence of metabolic effectors, NADP-ME2 was the most highly regulated isoform, especially in its activation by certain effectors. Several metabolites modulate both the forward and reverse reactions, exhibiting dual effects in some cases. Therefore, pyruvate reductive carboxylation may be relevant in vivo, especially in some cellular compartments and conditions. In order to identify residues or segments of the NADP-ME primary structure that could be involved in the differences among the isoforms, NADP-ME2 mutants and deletions were analysed. The results obtained show that Arg115 is involved in fumarate activation, while the amino-terminal part is critical for aspartate and CoA activation, as well as for the reverse reaction. As a whole, these studies show that minimal changes in the primary structure are responsible for the different kinetic behaviour of each AtNADP-ME isoform. In this way, the co-expression of some isoforms in the same cellular compartment would not imply redundancy but represents specificity of function.
机译:拟南芥基因组包含四个NADP-苹果酸酶基因(NADP-ME1-4)。 NADP-ME4定位于质体,而其他同工型则是胞质的。 NADP-ME2和4组成型表达,而NADP-ME1仅限于次生根,而NADP-ME3仅限于毛状体和花粉。尽管四种同工型具有显着的同一性(75-90%),但重组NADP-ME1至4在正向(苹果酸氧化脱羧)和反向(丙酮酸还原羧化)反应中均显示出独特的动力学特性。四种同工型在可逆性方面表现不同,其中NADP-ME2表现出最高的逆催化效率。在代谢效应子存在下分析每种同工型的活性时,NADP-ME2是调节最严格的同工型,尤其是在某些效应子对其激活的情况下。几种代谢物调节正向和反向反应,在某些情况下表现出双重作用。因此,丙酮酸还原性羧化在体内可能是相关的,尤其是在某些细胞室和条件下。为了鉴定可能与同种型之间的差异有关的NADP-ME一级结构的残基或区段,分析了NADP-ME2突变体和缺失。获得的结果表明,Arg115参与富马酸酯的活化,而氨基末端部分对于天冬氨酸和CoA活化以及逆反应至关重要。总体而言,这些研究表明,一级结构的最小变化是每种AtNADP-ME同工型不同动力学行为的原因。这样,在同一个细胞室中某些同工型的共表达并不意味着冗余,而是代表功能的特异性。

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