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八面体到四面体几何结构的转变导致 Znf2+ 对铜绿假单胞菌磷酸胆碱磷酸酶的激活或抑制。

Transition from octahedral to tetrahedral geometry causes the activation or inhibition by Znf2+ of Pseudomonas aeruginosa phosphorylcholine phosphatase.

机构信息

Departamento de Biología Molecular, Universidad Nacional de Río Cuarto, 5800 Río Cuarto, Córdoba, Argentina.

出版信息

Biometals. 2010 Apr;23(2):307-14. doi: 10.1007/s10534-010-9289-1. Epub 2010 Feb 5.

Abstract

Pseudomonas aeruginosa phosphorylcholine phosphatase (PchP) catalyzes the hydrolysis of phosphorylcholine, which is produced by the action of hemolytic phospholipase C on phosphatidylcholine or sphyngomielin, to generate choline and inorganic phosphate. Among divalent cations, its activity is dependent on Mg(2+) or Zn(2+). Mg(2+) produced identical activation at pH 5.0 and 7.4, but Zn(2+) was an activator at pH 5.0 and became an inhibitor at pH 7.4. At this higher pH, very low concentrations of Zn(2+) inhibited enzymatic activity even in the presence of saturating Mg(2+) concentrations. Considering experimental and theoretical physicochemical calculations performed by different authors, we conclude that at pH 5.0, Mg(2+) and Zn(2+) are hexacoordinated in an octahedral arrangement in the PchP active site. At pH 7.4, Mg(2+) conserves the octahedral coordination maintaining enzymatic activity. The inhibition produced by Zn(2+) at 7.4 is interpreted as a change from octahedral to tetrahedral coordination geometry which is produced by hydrolysis of the [Zn(2+)L(2)(-1)L(2)(0) (H(2)O)(2)] complex.

摘要

铜绿假单胞菌磷酸胆碱磷酸酶(PchP)催化磷酸胆碱的水解,该反应由溶血磷脂酶 C 对磷脂酰胆碱或鞘磷脂作用产生,生成胆碱和无机磷酸盐。在二价阳离子中,其活性依赖于 Mg(2+)或 Zn(2+)。Mg(2+)在 pH 5.0 和 7.4 时产生相同的激活作用,但 Zn(2+)在 pH 5.0 时是激活剂,在 pH 7.4 时成为抑制剂。在较高 pH 下,即使存在饱和浓度的 Mg(2+),也只需非常低浓度的 Zn(2+)就能抑制酶活性。考虑到不同作者进行的实验和理论物理化学计算,我们得出结论,在 pH 5.0 时,Mg(2+)和 Zn(2+)在 PchP 活性位点中以八面体形式六配位。在 pH 7.4 时,Mg(2+)保持八面体配位,维持酶活性。在 7.4 时 Zn(2+)产生的抑制作用被解释为从八面体到四面体配位几何形状的变化,这是由[Zn(2+)L(2)(-1)L(2)(0)(H(2)O)(2)]配合物的水解产生的。

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