首页> 外文期刊>The Journal of Biochemistry >High resolution X-ray crystal structures of L-phenylalanine oxidase (deaminating and decarboxylating) from Pseudomonas sp. P-501. Structures of the enzyme-ligand complex and catalytic mechanism.
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High resolution X-ray crystal structures of L-phenylalanine oxidase (deaminating and decarboxylating) from Pseudomonas sp. P-501. Structures of the enzyme-ligand complex and catalytic mechanism.

机译:假单胞菌属的L-苯丙氨酸氧化酶的高分辨率X射线晶体结构(脱氨基和脱羧)。 P-501。酶-配体配合物的结构和催化机理。

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摘要

The mature form of L-Phe oxidase of Pseudomonas sp. P-501 (PAOpt) catalyzes the oxygenative decarboxylation of L-Phe and the oxidative deamination of L-Met, and is highly specific for L-Phe. The crystal structures of PAOpt individually complexed with L-Phe and L-Met and the properties of the active site mutants were investigated to clarify the structural basis of the substrate and reaction specificities of the enzyme. The benzene ring of L-Phe is packed in six hydrophobic amino acid side chains versus the two hydrophobic side chains of L-amino acid oxidase (LAO, pdb code: 2jb2); the distance between the substrate Calpha atom and water is shorter in the PAOpt-L-Met complex than in the PAOpt-L-Phe complex; and the mutation of substrate carboxylate-binding residues (Arg143 and Tyr536) causes the enzyme to oxidize L-Phe and decreases the charge-transfer band with L-Phe. These results suggest that (i) the higher substrate specificity of PAOpt relative to LAO is derived from the compact hydrophobic nature of the PAOpt active site and (ii) the reactivity of the PAOpt charge-transfer complex with water or oxygen determines whether the enzyme catalyzes oxidation or oxygenation, respectively.
机译:假单胞菌L-Phe氧化酶的成熟形式。 P-501(PAOpt)催化L-Phe的氧化脱羧和L-Met的氧化脱氨基,并且对L-Phe具有高度特异性。研究了分别与L-Phe和L-Met复合的PAOpt的晶体结构以及活性位点突变体的性质,以阐明底物的结构基础和酶的反应特异性。 L-Phe的苯环堆积在六个疏水性氨基酸侧链中,而L-氨基酸氧化酶的两个疏水性侧链中却没有(LAO,pdb代码:2jb2); PAOpt-L-Met络合物中底物Calpha原子与水之间的距离比PAOpt-L-Phe络合物中的短。底物羧酸盐结合残基(Arg143和Tyr536)的突变会导致酶氧化L-Phe,并降低L-Phe的电荷转移带。这些结果表明:(i)PAOpt相对于LAO的更高的底物特异性源自PAOpt活性位点的紧密疏水性,并且(ii)PAOpt电荷转移复合物与水或氧气的反应性决定了酶是否催化氧化或氧化。

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