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间苯二酚类化合物的细菌代谢:恶臭假单胞菌ORC中邻苯二酚羟化酶和间苯二酚羟化酶的纯化及特性

Bacterial metabolism of resorcinylic compounds: purification and properties of orcinol hydroxylase and resorcinol hydroxylase from Pseudomonas putida ORC.

作者信息

Ohta Y, Ribbons D W

出版信息

Eur J Biochem. 1976 Jan 2;61(1):259-69. doi: 10.1111/j.1432-1033.1976.tb10019.x.

Abstract

The hydroxylase activities observed in extracts of Pseudomonas putida ORC after growth on orcinol and resorcinol as sole source of carbon have been purified to homogeneity. Both enzymes were shown to be flavoproteins and to contain approximately 1 mol of FAD for each polypeptide chain, S20,W values for each enzyme are 4.1 +/- 0.1 and are independent of the presence of their aromatic substrates. Molecular weight determinations under native (approximately 68000) and denaturing (approximately 70000) conditions indicated that they are monomeric. The visible absorption spectra identical but the circular dichroic spectra of the two proteins can be distinguished. Although each protein catalyzes the NAD(P)H and O2-dependent hydroxylation of both orcinol and resorcinol, the efficiency of the transformations of the substrates by the two enzymes is radically different; furthermore resorcinol hydroxylase is much more versatile in the aromatic compounds it can utilize as substrates and effectors. Other properties of the enzymes which clearly establish their own identity include their serological characteristics and amino acid composition; the latter property is particularly evident when the quantities of valine and alanine residues are compared. The synthesis of each enzyme is also under different regulatory constraints, being controlled by the substrate used for growth.

摘要

恶臭假单胞菌ORC以苔黑酚和间苯二酚作为唯一碳源生长后,其提取物中观察到的羟化酶活性已被纯化至同质。两种酶均显示为黄素蛋白,每条多肽链含有约1摩尔的FAD,每种酶的S20,W值为4.1±0.1,且与它们的芳香族底物的存在无关。在天然(约68000)和变性(约70000)条件下的分子量测定表明它们是单体。两种蛋白质的可见吸收光谱相同,但圆二色光谱可以区分。虽然每种蛋白质都催化苔黑酚和间苯二酚的NAD(P)H和O2依赖性羟化反应,但两种酶对底物的转化效率截然不同;此外,间苯二酚羟化酶在可作为底物和效应物的芳香族化合物方面具有更强的通用性。能够明确确定它们各自特性的酶的其他特性包括它们的血清学特征和氨基酸组成;当比较缬氨酸和丙氨酸残基的数量时,后一种特性尤为明显。每种酶的合成也受到不同的调控限制,由用于生长的底物控制。

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