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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The unique serine/threonine phosphatase from the minimal bacterium Mycoplasma synoviae: biochemical characterization and metal dependence
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The unique serine/threonine phosphatase from the minimal bacterium Mycoplasma synoviae: biochemical characterization and metal dependence

机译:来自最小细菌滑膜支原体的独特丝氨酸/苏氨酸磷酸酶:生化特性和金属依赖性

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Serine/threonine protein phosphatases have been described in many pathogenic bacteria as essential enzymes involved in phosphorylation-dependent signal transduction pathways and frequently associated with the virulence of these organisms. An inspection of Mycoplasma synoviae genome revealed the presence of a gene (prpC) encoding a putative protein phosphatase of the protein phosphatase 2C (PP2C) subfamily. Here, we report a complete biochemical characterization of M. synoviae phosphatase (PrpC) and the particular role of metal ions in the structure-function relationship of this enzyme. PrpC amino acid sequence analysis revealed that all the residues involved in the dinuclear metal center and the putative third metal ion-coordinating residues, conserved in PP2C phosphatases, are present in PrpC. PrpC is a monomeric protein able to dephosphorylate phospho-substrates with Mn2+ ions' dependence. Thermal stability analysis demonstrated the enzyme stability at mild temperatures and the influence of Mn2+ ions in this property. Mass spectrometry analysis suggested that three metal ions bind to PrpC, two of which with an apparent high-affinity constant. Mutational analysis of the putative third metal-coordinating residues, Asp122 and Arg164, revealed that these variants exhibited a weaker binding of manganese ions, and that both mutations affected PrpC phosphatase activity. According to these results, PrpC is a metal-dependent protein phosphatase member with an improved stability in the holo form and with Asp122, possibly implicated in the third metal-binding site, essential to catalytic activity.
机译:丝氨酸/苏氨酸蛋白磷酸酶已在许多致病细菌中被描述为参与磷酸化依赖性信号转导途径的必需酶,并经常与这些生物的毒性相关。对滑膜支原体基因组的检查发现存在一个基因(prpC),该基因编码蛋白质磷酸酶2C(PP2C)亚家族的假定蛋白质磷酸酶。在这里,我们报告了滑膜分支杆菌磷酸酶(PrpC)的完整生化特征以及该酶的结构-功能关系中金属离子的特殊作用。 PrpC氨基酸序列分析显示,PP2C磷酸酶中保守的双核金属中心所涉及的所有残基和推定的第三金属离子配位残基均存在于PrpC中。 PrpC是一种单体蛋白,能够使具有Mn2 +离子依赖性的磷酸底物脱磷酸。热稳定性分析证明了在温和温度下酶的稳定性以及Mn2 +离子对该特性的影响。质谱分析表明,三个金属离子与PrpC结合,其中两个具有明显的高亲和常数。推定的第三种金属配位残基Asp122和Arg164的突变分析表明,这些变体显示出较弱的锰离子结合,并且这两个突变均影响PrpC磷酸酶的活性。根据这些结果,PrpC是一种金属依赖性蛋白磷酸酶成员,具有完整的整体稳定性,并且具有Asp122,可能与催化活性必不可少的第三金属结合位点有关。

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