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首页> 外文期刊>Journal of Molecular Biology >Crystal structure of methyl parathion hydrolase from Pseudomonas sp. WBC-3.
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Crystal structure of methyl parathion hydrolase from Pseudomonas sp. WBC-3.

机译:假单胞菌属甲基对硫磷水解酶的晶体结构。 WBC-3。

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Methyl parathion hydrolase (MPH, E.C.3.1.8.1), isolated from the soil-dwelling bacterium Pseudomonas sp. WBC-3, is a Zn(II)-containing enzyme that catalyzes the degradation of the organophosphate pesticide methyl parathion. We have determined the structure of MPH from Pseudomonas sp. WBC-3 to 2.4 angstroms resolution. The enzyme is dimeric and each subunit contains a mixed hybrid binuclear zinc center, in which one of the zinc ions is replaced by cadmium. In both subunits, the more solvent-exposed beta-metal ion is substituted for Cd2+ due to high cadmium concentration in the crystallization condition. Both ions are surrounded by ligands in an octahedral arrangement. The ions are separated by 3.5 angstroms and are coordinated by the amino acid residues His147, His149, Asp151, His152, His234 and His302 and a water molecule. Asp255 and a water molecule serve to bridge the zinc ions together. MPH is homologous with other metallo-beta-lactamases but does not show any similarity to phosphotriesterase that can also catalyze the degradation of methyl parathion with lower rate, despite the lack of sequence homology. Trp179, Phe196 and Phe119 form an aromatic cluster at the entrance of the catalytic center. Replacement of these three amino acids by alanine resulted in a significant increase of K(m) and loss of catalytic activity, indicating that the aromatic cluster has an important role to facilitate affinity of enzyme to the methyl parathion substrates.
机译:甲基对硫磷水解酶(MPH,E.C.3.1.8.1),从土壤细菌Pseudomonas sp。 WBC-3是一种含锌(II)的酶,可催化有机磷酸酯农药甲基对硫磷的降解。我们已经确定了假单胞菌属的MPH的结构。 WBC-3为2.4埃分辨率。该酶是二聚体,每个亚基包含一个混合的混合双核锌中心,其中一个锌离子被镉取代。在两个亚基中,由于在结晶条件下高的镉浓度,更多溶剂暴露的β-金属离子代替了Cd2 +。两个离子都被八面体排列的配体包围。离子之间相距3.5埃,并与氨基酸残基His147,His149,Asp151,His152,His234和His302和水分子配位。 Asp255和水分子可将锌离子桥接在一起。 MPH与其他金属β-内酰胺酶同源,但是与磷酸三酯酶没有任何相似性,尽管缺乏序列同源性,但也可以较低的速率催化甲基对硫磷的降解。 Trp179,Phe196和Phe119在催化中心的入口形成芳族簇。用丙氨酸替代这三个氨基酸会导致K(m)显着增加,并失去催化活性,这表明芳香族簇在促进酶对甲基对硫磷底物亲和力方面具有重要作用。

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