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首页> 外文期刊>The biochemical journal >Purification and characterization of a Baeyer–Villiger mono-oxygenase from Rhodococcus erythropolis DCL14 involved in three different monocyclic monoterpene degradation pathways
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Purification and characterization of a Baeyer–Villiger mono-oxygenase from Rhodococcus erythropolis DCL14 involved in three different monocyclic monoterpene degradation pathways

机译:红球红球菌DCL14的Baeyer-Villiger单加氧酶的纯化和表征,涉及三种不同的单环单萜降解途径

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pA Baeyer-Villiger mono-oxygenase (BVMO), catalysing the NADPH- and oxygen-dependent oxidation of the monocyclic monoterpene ketones 1-hydroxy-2-oxolimonene, dihydrocarvone and menthone, was purified to homogeneity from iRhodococcus erythropolis/i DCL14. Monocyclic monoterpene ketone mono-oxygenase (MMKMO) is a monomeric enzyme of molecular mass 60 kDa. It contains 1 mol of FAD/monomer as the prosthetic group. The N-terminal amino acid sequence showed homology with many other NADPH-dependent and FAD-containing (Type 1) BVMOs. Maximal enzyme activity was measured at pH 9 and 35 °C. MMKMO has a broad substrate specificity, catalysing the lactonization of a large number of monocyclic monoterpene ketones and substituted cyclohexanones. The natural substrates 1-hydroxy-2-oxolimonene, dihydrocarvone and menthone were converted stoichiometrically into 3-isopropenyl-6-oxoheptanoate (the spontaneous rearrangement product of the lactone formed by MMKMO), 4-isopropenyl-7-methyl-2-oxo-oxepanone and 7-isopropyl-4-methyl-2-oxo-oxepanone respectively. The MMKMO-catalysed conversion of iso-dihydrocarvone showed an opposite regioselectivity to that of dihydrocarvone; in this case, 6-isopropenyl-3-methyl-2-oxo-oxepanone was formed as the product. MMKMO converted all enantiomers of the natural substrates with almost equal efficiency. MMKMO is involved in the conversion of the monocyclic monoterpene ketone intermediates formed in the degradation pathways of all stereoisomers of three different monocyclic monoterpenes, i.e. limonene, (dihydro)carveol and menthol./p
机译:> Baeyer-Villiger单加氧酶(BVMO)催化单环单萜酮1-羟基-2-氧杂环丁烯酮,二氢香芹酮和薄荷酮的NADPH和氧依赖性氧化,从红球菌(Rhodococcus erythropolis)纯化至均一 DCL14。单环单萜酮单加氧酶(MMKMO)是分子量为60 kDa的单体酶。它包含1摩尔FAD /单体作为修复基团。 N末端氨基酸序列显示出与许多其他NADPH依赖性和含FAD(1型)BVMO同源。在pH 9和35°C下测量最大酶活性。 MMKMO具有广泛的底物特异性,可催化大量单环单萜酮和取代的环己酮的内酯化。将天然底物1-羟基-2-氧杂环丁烯,二氢香芹酮和薄荷酮化学计量转换为3-异丙烯基-6-氧庚酸(MMKMO形成的内酯的自发重排产物),4-异丙烯基-7-甲基-2-氧-氧杂戊酮和7-异丙基-4-甲基-2-氧杂-氧杂戊酮。 MMKMO催化的异二氢香芹酮的转化显示出与二氢香芹酮相反的区域选择性。在这种情况下,形成6-异丙烯基-3-甲基-2-氧代-氧杂戊酮作为产物。 MMKMO以几乎相等的效率转化了天然底物的所有对映异构体。 MMKMO参与了在三个不同的单环单萜,即柠檬烯,(二氢)甲酚和薄荷醇的所有立体异构体的降解途径中形成的单环单萜酮中间体的转化。

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