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产甲烷球菌目中具有双功能 ADP 依赖性磷酸果糖激酶/葡萄糖激酶活性——嗜中温酶的生化特性研究。

Bifunctional ADP-dependent phosphofructokinase/glucokinase activity in the order Methanococcales--biochemical characterization of the mesophilic enzyme from Methanococcus maripaludis.

出版信息

FEBS J. 2014 Apr;281(8):2017-29. doi: 10.1111/febs.12757.

Abstract

In some archaea, the phosphorylation of glucose and fructose 6-phosphate (fructose 6P) is carried out by enzymes that are specific for either substrate and that use ADP as phosphoryl donor. In the hyperthermophilic archaeon Methanocaldococcus jannaschii, a bifunctional enzyme able to phosphorylate glucose and fructose 6P has been described. To determine whether the ability to phosphorylate both glucose and fructose 6P is a common feature for all enzymes of the order Methanococcales, we expressed, purified and characterized the unique homologous protein of the mesophilic archaea Methanococcus maripaludis. Assay of the enzyme activity with different sugars, metals and nucleotides allows us to conclude that the enzyme is able to phosphorylate both fructose 6P and glucose in the presence of ADP and a divalent metal cation. Kinetic characterization of the enzyme revealed complex regulation by the free Mg(2+) concentration and AMP, with the latter appearing to be a key metabolite. To determine whether this enzyme could have a role in gluconeogenesis, we evaluated the reversibility of both reactions and found that glucokinase activity is reversible, whereas phosphofructokinase activity is not. To determine the important residues for glucose and fructose 6P binding, we modeled the bifunctional phosphofructokinase/glucokinase enzyme from M. maripaludis and its interactions with both sugar substrates using protein–ligand docking. Comparison of the active site of the phosphofructokinase/glucokinase enzyme from M. maripaludis with the structural models constructed for all the homology sequences present in the order Methanococcales shows that all of the ADP-dependent kinases from this order would be able to phosphorylate glucose and fructose 6P, which rules out the current annotation of these enzymes as specific phosphofructokinases.

摘要

在一些古菌中,葡萄糖和果糖 6-磷酸(果糖 6P)的磷酸化是由专门作用于任一底物的酶完成的,这些酶使用 ADP 作为磷酸供体。在嗜热古菌 Methanocaldococcus jannaschii 中,已经描述了一种能够磷酸化葡萄糖和果糖 6P 的双功能酶。为了确定磷酸化葡萄糖和果糖 6P 的能力是否是 Methanococcales 目中所有酶的共同特征,我们表达、纯化并表征了中温古菌 Methanococcus maripaludis 的独特同源蛋白。用不同的糖、金属和核苷酸进行酶活性测定,使我们能够得出结论,该酶在 ADP 和二价金属阳离子存在的情况下能够磷酸化果糖 6P 和葡萄糖。酶的动力学特征表明,游离 Mg(2+)浓度和 AMP 对其具有复杂的调节作用,后者似乎是一种关键代谢物。为了确定该酶是否在糖异生中起作用,我们评估了两个反应的可逆性,发现葡萄糖激酶活性是可逆的,而磷酸果糖激酶活性则不可逆。为了确定与葡萄糖和果糖 6P 结合有关的重要残基,我们对来自 M. maripaludis 的双功能磷酸果糖激酶/葡萄糖激酶酶进行建模,并使用蛋白-配体对接来研究其与两种糖底物的相互作用。将 M. maripaludis 的磷酸果糖激酶/葡萄糖激酶酶的活性位点与 Methanococcales 目中存在的所有同源序列的结构模型进行比较,表明该目中的所有 ADP 依赖性激酶都能够磷酸化葡萄糖和果糖 6P,这排除了目前对这些酶作为特异性磷酸果糖激酶的注释。

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