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Microbial oxidation of amines. Partial purification of a trimethylamine mono-oxygenase from Pseudomonas aminovorans and its role in growth on trimethylamine

机译:胺类的微生物氧化。从氨基假单胞菌中部分纯化三甲胺单加氧酶及其在三甲胺上的生长作用

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摘要

1. A mono-oxygenase, which oxidizes trimethylamine and other tertiary amines bearing methyl or ethyl groups, was partially purified sixfold from Pseudomonas aminovorans grown on trimethylamine as sole carbon source. 2. The preferred electron donor was NADPH. The enzyme had a pH optimum of 8.0–9.4 for trimethylamine oxidation, and 8.8–9.2 for dimethylamine oxidation. 3. The oxidation product of trimethylamine was shown to be trimethylamine N-oxide. Other tertiary amines were probably also converted into N-oxides. 4. The enzyme also oxidized secondary amines. 5. The oxidation of trimethylamine was only slightly inhibited by CO and not at all by KCN or proadifen hydrochloride (SKF 525-A), but was inhibited by trimethylsulphonium chloride, tetramethylammonium chloride, 2,4-dichloro-6-phenylphenoxyethylamine (Lilly 53325) and its NN-diethyl derivative (Lilly 18947). 6. The oxidation of dimethylamine showed a similar response to inhibitors and a parallel loss in activity on heating at 35°C. 7. The activities of the trimethylamine mono-oxygenase, trimethylamine N-oxide demethylase and the secondary-amine mono-oxygenase increased severalfold during adaptation of succinate-grown bacteria to growth on trimethylamine, and the trimethylamine mono-oxygenase was the first enzyme to show an increase in activity. It is concluded that all three enzymes are involved in growth on trimethylamine by this organism.
机译:1.将三甲胺和其他带有甲基或乙基的叔胺氧化的单加氧酶从三甲胺作为唯一碳源生长的氨基假单胞菌的六倍纯化。 2.优选的电子给体是NADPH。对于三甲胺氧化,该酶的最适pH为8.0-9.4,对于二甲胺氧化,其最适pH为8.8-9.2。 3.三甲胺的氧化产物显示为三甲胺N-氧化物。其他叔胺也可能被转化为N-氧化物。 4.该酶还氧化仲胺。 5.三甲基胺的氧化仅受CO轻微抑制,而完全不受KCN或盐酸丙二芬(SKF 525-A)的抑制,但被三甲基氯化chloride,四甲基氯化铵,2,4-二氯-6-苯基苯氧基乙胺抑制(Lilly 53325 )及其NN-二乙基衍生物(Lilly 18947)。 6.二甲胺的氧化显示出对抑制剂的类似反应,并且在35℃加热时活性平行降低。 7.在琥珀酸盐生长的细菌适应三甲胺生长的过程中,三甲胺单加氧酶,三甲胺N-氧化脱甲基酶和仲胺单加氧酶的活性增加了几倍,三甲胺单加氧酶是第一个显示出的酶活动增加。结论是,这三种酶均参与该生物体在三甲胺上的生长。

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