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Catalytic and regulatory roles of divalent metal cations on the phosphoryl-transfer mechanism of ADP-dependent sugar kinases from hyperthermophilic archaea

机译:二价金属阳离子对超嗜热古细菌ADP依赖性糖激酶磷酸基转移机理的催化和调控作用

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摘要

In some archaea, glucose degradation proceeds through a modified version of the Embden-Meyerhof pathway where glucose and fructose-6-P phosphorylation is carried out by kinases that use ADP as the phosphoryl donor. Unlike their ATP-dependent counterparts these enzymes have been reported as non-regulated. Based on the three dimensional structure determination of several ADP-dependent kinases they can be classified as members of the ribokinase superfamily. In this work, we have studied the role of divalent metal cations on the catalysis and regulation of ADP-dependent glucokinases and phosphofructokinase from hyperthermophilic archaea by means of initial velocity assays as well as molecular dynamics simulations. The results show that a divalent cation is strictly necessary for the activity of these enzymes and they strongly suggest that the true substrate is the metal-nucleotide complex. Also, these enzymes are promiscuous in relation to their metal usage where the only considerations for metal assisted catalysis seem to be related to the ionic radii and coordination geometry of the cations. Molecular dynamics simulations strongly suggest that this metal is bound to the highly conserved NXXE motif, which constitutes one of the signatures of the ribokinase superfamily. Although free ADP cannot act as a phosphoryl donor it still can bind to these enzymes with a reduced affinity, stressing the importance of the metal in the proper binding of the nucleotide at the active site. Also, data show that the binding of a second metal to these enzymes produces a complex with a reduced catalytic constant. On the basis of these findings and considering evolutionary information for the ribokinase superfamily, we propose that the regulatory metal acts by modulating the energy difference between the protein-substrates complex and the reaction transition state, which could constitute a general mechanism for the metal regulation of the enzymes that belong this superfamily.
机译:在某些古细菌中,葡萄糖降解会通过Embden-Meyerhof途径的修饰形式进行,在该途径中,葡萄糖和果糖6-P磷酸化作用是通过使用ADP作为磷酰基供体的激酶进行的。与它们的ATP依赖性对应物不同,据报道这些酶是非调节性的。基于几种ADP依赖性激酶的三维结构确定,它们可以归类为核糖激酶超家族成员。在这项工作中,我们通过初始速度测定以及分子动力学模拟研究了二价金属阳离子在催化和调节嗜热古细菌中ADP依赖性葡萄糖激酶和磷酸果糖激酶中的作用。结果表明,二价阳离子对于这些酶的活性是严格必需的,并且它们强烈暗示真正的底物是金属-核苷酸复合物。同样,这些酶相对于其金属用途是混杂的,其中金属辅助催化的唯一考虑因素似乎与离子半径和阳离子的配位几何形状有关。分子动力学模拟强烈表明,这种金属与高度保守的NXXE基序结合,后者构成核糖激酶超家族的特征之一。尽管游离的ADP不能充当磷酰基供体,但它仍可以降低的亲和力与这些酶结合,从而强调了金属在活性位点上核苷酸正确结合中的重要性。而且,数据显示第二种金属与这些酶的结合产生了具有降低的催化常数的复合物。在这些发现的基础上,并考虑到核糖激酶超家族的进化信息,我们建议调节金属通过调节蛋白质-底物复合物之间的能量差和反应过渡态起作用,这可能构成对金属进行调节的一般机制。属于这个超家族的酶。

著录项

  • 来源
    《Biochimie》 |2012年第2期|p.516-524|共9页
  • 作者单位

    Laboratorio de Bioquimica y Biologia Molecular, Departamento de Biologia, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Casilla 653, Santiago, Chile;

    Laboratorio de Bioquimica y Biologia Molecular, Departamento de Biologia, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Casilla 653, Santiago, Chile;

    Laboratorio de Bioquimica y Biologia Molecular, Departamento de Biologia, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Casilla 653, Santiago, Chile;

    Laboratorio de Bioquimica y Biologia Molecular, Departamento de Biologia, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Casilla 653, Santiago, Chile;

    Laboratorio de Bioquimica y Biologia Molecular, Departamento de Biologia, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Casilla 653, Santiago, Chile;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ADP-dependent kinase; embden-meyerhof pathway; divalent metal cation; enzyme inhibition;

    机译:ADP依赖性激酶;embden-meyerhof通路;二价金属阳离子酶抑制;
  • 入库时间 2022-08-18 01:23:52

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