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首页> 外文期刊>Biodegradation >Purification and characterization of a salicylate hydroxylase involved in1-hydroxy-2-naphthoic acid hydroxylation from the naphthalene andphenanthrene-degrading bacterial strain Pseudomonas putida BS202-P1
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Purification and characterization of a salicylate hydroxylase involved in1-hydroxy-2-naphthoic acid hydroxylation from the naphthalene andphenanthrene-degrading bacterial strain Pseudomonas putida BS202-P1

机译:从萘和菲降解细菌菌株假单胞菌BS202-P1中参与1-羟基-2-萘甲酸羟基化的水杨酸羟化酶的纯化和表征

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摘要

1-Hydroxy-2-naphthoate is formed as an intermediate in the bacterial degradation of phenanthrene. A monooxygenase which catalyzed the oxidation of 1-hydroxy-2-naphthoate to 1,2-dihydroxynaphthalene was purified from the phenanthrene- and naphthalene-degrading Pseudomonas putida strain BS202-P1. The purified protein had a molecular weight of 45 kDa and required NAD(P)H and FAD as cofactors. The purified enzyme also catalysed the oxidation of salicylate and various substituted salicylates. The comparison of the K-m and V-max values for 1-hydroxy-2-naphthoate and salicylate demonstrated a higher catalytic efficiency of the enzyme for salicylate as a substrate. A significant substrate-inhibition was detected with higher concentrations of 1-hydroxy-2-naphthoate. The aminoterminal amino acid sequence of the purified enzyme showed significant homologies to salicylate 1-monooxygenases from other Gram negative bacteria. It was therefore concluded that during the degradation of phenanthrene the conversion of 1-hydroxy-2-naphthoate to 1,2-dihydroxynaphthalene is catalysed by a salicylate 1-monooxygenase. Together with previous studies, this suggested that the enzymes of the naphthalene pathway are sufficient to catalyse also the mineralization of phenanthrene.
机译:1-羟基-2-萘甲酸形成为菲在细菌降解中的中间体。从降解菲和萘的恶臭假单胞菌BS202-P1中纯化出催化1-羟基-2-萘甲酸氧化成1,2-二羟基萘的单加氧酶。纯化的蛋白质的分子量为45 kDa,需要NAD(P)H和FAD作为辅助因子。纯化的酶还催化水杨酸盐和各种取代的水杨酸盐的氧化。对1-羟基-2-萘甲酸酯和水杨酸酯的K-m和V-max值的比较证明了该酶以水杨酸酯为底物的催化效率更高。用较高浓度的1-羟基-2-萘甲酸检测到显着的底物抑制作用。纯化的酶的氨基末端氨基酸序列显示出与其他革兰氏阴性细菌的水杨酸1-单加氧酶的显着同源性。因此得出结论,在菲的降解过程中,水杨酸酯1-单加氧酶催化了1-羟基-2-萘甲酸向1,2-二羟基萘的转化。与以前的研究一起,这表明萘途径的酶也足以催化菲的矿化。

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