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Phosphorylcholine Phosphatase: A Peculiar Enzyme of Pseudomonas aeruginosa

机译:磷酸胆碱磷酸酶:铜绿假单胞菌的一种特殊酶

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摘要

Pseudomonas aeruginosa synthesizes phosphorylcholine phosphatase (PchP) when grown on choline, betaine, dimethylglycine or carnitine. In the presence of Mg2+ or Zn2+, PchP catalyzes the hydrolysis of p-nitrophenylphosphate (p-NPP) or phosphorylcholine (Pcho). The regulation of pchP gene expression is under the control of GbdR and NtrC; dimethylglycine is likely the metabolite directly involved in the induction of PchP. Therefore, the regulation of choline metabolism and consequently PchP synthesis may reflect an adaptive response of P. aeruginosa to environmental conditions. Bioinformatic and biochemistry studies shown that PchP contains two sites for alkylammonium compounds (AACs): one in the catalytic site near the metal ion-phosphoester pocket, and another in an inhibitory site responsible for the binding of the alkylammonium moiety. Both sites could be close to each other and interact through the residues 42E, 43E and 82YYY84. Zn2+ is better activator than Mg2+ at pH 5.0 and it is more effective at alleviating the inhibition produced by the entry of Pcho or different AACs in the inhibitory site. We postulate that Zn2+ induces at pH 5.0 a conformational change in the active center that is communicated to the inhibitory site, producing a compact or closed structure. However, at pH 7.4, this effect is not observed because to the hydrolysis of the [Zn2+L2−1L20(H2O)2] complex, which causes a change from octahedral to tetrahedral in the metal coordination geometry. This enzyme is also present in P. fluorescens, P. putida, P. syringae, and other organisms. We have recently crystallized PchP and solved its structure.
机译:铜绿假单胞菌在胆碱,甜菜碱,二甲基甘氨酸或肉碱上生长时,会合成磷酸胆碱磷酸酶(PchP)。在Mg2 +或Zn2 +的存在下,PchP催化对硝基苯基磷酸酯(p-NPP)或磷酰胆碱(Pcho)的水解。 pchP基因表达的调控在GbdR和NtrC的控制下。二甲基甘氨酸可能是直接参与PchP诱导的代谢产物。因此,胆碱代谢的调节以及因此PchP合成可能反映铜绿假单胞菌对环境条件的适应性反应。生物信息学和生物化学研究表明,PchP包含两个烷基铵化合物(AAC)的位点:一个位于金属离子-磷酸酯口袋附近的催化位点,另一个位于负责烷基铵部分结合的抑制位点。两个位点可以彼此靠近并通过残基42E,43E和82YYY84相互作用。在pH 5.0时,Zn2 +比Mg2 +更好的活化剂,并且在减轻Pcho或不同AAC进入抑制位点产生的抑制作用方面更有效。我们假设Zn2 +在pH 5.0诱导了活性中心的构象变化,该构象变化被传递到抑制位点,从而产生紧凑或封闭的结构。但是,在pH 7.4时,由于[Zn2 + L2-1L20(H2O)2]配合物的水解,导致金属配位几何形状从八面体变为四面体,因此未观察到这种作用。该酶也存在于荧光假单胞菌,恶臭假单胞菌,丁香假单胞菌和其他生物中。我们最近使PchP结晶并解决了其结构。

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