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Ligand-Dependent Dynamics of the Active-Site Lid in Bacterial Dimethylarginine Dimethylaminohydrolase

机译:细菌二甲基碱的活性部位盖的配体依赖性动力学二甲基氨基酰氯酶

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摘要

The dimethylarginine dimethylaminohydrolase (DDAH) enzyme family has been the subject of substantial investigation as a potential therapeutic target for the regulation of vascular tension. DDAH enzymes catalyze the conversion of asymmetric N~η,N~η-dimethylarginine (ADMA) to L-citrulline. Here the influence of substrate and product binding on the dynamic flexibility of DDAH from Pseudomonas aeruginosa (PaDDAH) has been assessed. A combination of heteronuclear NMR spectroscopy, static and time-resolved fluorescence measurements, and atomistic molecular dynamics simulations was employed. A monodisperse monomeric variant of the wild-type enzyme binds the reaction product L-citrulline with a low millimolar dissociation constant. A second variant, engineered to be catalytically inactive by substitution of the nucleophilic Cys249 residue with serine, can still convert the substrate ADMA to products very slowly. This PaDDAH variant also binds L-citrulline, but with a low micromolar dissociation constant. NMR and molecular dynamics simulations indicate that the active site “lid”, formed by residues Gly17-Asp27, exhibits a high degree of internal motion on the picosecond-to-nanosecond time scale. This suggests that the lid is open in the apo state and allows substrate access to the active site that is otherwise buried. L-Citrulline binding to both protein variants is accompanied by an ordering of the lid. Modification of PaDDAH with a coumarin fluorescence reporter allowed measurement of the kinetic mechanism of the PaDDAH reaction. A combination of NMR and kinetic data shows that the catalytic turnover of the enzyme is not limited by release of the L-citrulline product. The potential to develop the coumarin?PaDDAH adduct as an L-citrulline sensor is discussed.
机译:二甲基甘氨酸二甲基氨基酰氯酶(DDAH)酶家族是主要调查的主题,作为调控血管张力的潜在治疗目标。 DDAH酶催化不对称Nη,N〜η-二甲基碱(ADMA)的转化为L-瓜氨酸。这里已经评估了基材和产品结合对铜绿假单胞菌(PADDAH)的DDAH的动态柔韧性的影响。使用异核NMR光谱,静态和时间分辨荧光测量和原子分子动力学模拟的组合。野生型酶的单体分散单体变体与低毫摩尔解离常数结合反应产物L-瓜氨酸。通过用丝氨酸取代亲核Cys249残基的亲核Cys249残基来催化失活的第二种变体,仍然可以非常缓慢地将基材ADMA转化为产品。该PADDAH变体也结合L-瓜氨酸,但具有低微摩尔解离常数。 NMR和分子动力学模拟表明,由残基GLY17-ASP27形成的有源部位“盖子”,在PICOSECOND-in-NONOSECOND时间尺度上表现出高度的内部运动。这表明盖子在APO状态下打开,并允许基板访问被掩埋的活动位点。 L-瓜氨酸与蛋白质变体的结合伴随着盖子的排序。用香豆素荧光报告的修改帕达,允许测量PADDAH反应的动力学机理。 NMR和动力学数据的组合表明,酶的催化换档不受L-瓜氨酸产物的释放的限制。讨论了开发香豆素的潜力?帕德达加合物作为L-瓜氨水管传感器。

著录项

  • 来源
    《Biochemistry》 |2014年第6期|共13页
  • 作者单位

    Division of Molecular Structure;

    Division of Molecular Structure;

    Division of Physical Biochemistry MRC National Institute for Medical Research The Ridgeway Mill Hill London NW7 1AA United Kingdom;

    Institute of Structural and Molecular Biology Division of Biosciences University College London Gower Street London WC1E 6BT United Kingdom;

    Protein Dynamics and Flexibility Institut de Biologie Structurale CEA CNRS UJF-Grenoble 1 41 Rue Jules Horowitz F-38027 Grenoble France;

    Division of Physical Biochemistry MRC National Institute for Medical Research The Ridgeway Mill Hill London NW7 1AA United Kingdom;

    Division of Molecular Structure;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Ligand-Dependent; Active-Site; Bacterial;

    机译:依赖配体;活性位点;细菌;

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