首页> 外文期刊>The Journal of General and Applied Microbiology >Oxidation of chlorinated olefins by Escherichia coli transformed with dimethyl sulfide monooxygenase genes or cumene dioxygenase genes
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Oxidation of chlorinated olefins by Escherichia coli transformed with dimethyl sulfide monooxygenase genes or cumene dioxygenase genes

机译:用二甲基硫醚单加氧酶基因或枯烯双加氧酶基因转化的大肠杆菌氧化氯化烯烃

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摘要

In the present work, it was shown that the dimethyl sulfide (DMS) monooxygenase and the cumene dioxygenase catalyzed oxidation of various chlorinated ethenes, propenes, and butenes. The specific activities of these oxygenases were determined for C_2 to C_4 chlorinated olefins, and the oxidation rates ranged from 0.19 to 4.18 nmol centre dot min~(-1) centre dot mg~(-1) of dry cells by the DMS monooxygenase and from 0.19 to 1.29 nmol centre dot min~(-1) centre dot mg~(-1) of dry cells by the cumene dioxygenase. The oxidation products were identified by gas chromatography-mass spectrometry. Most chlorinated olefins were monooxygenated by the DMS monooxygenase to yield chlorinated epoxides. In the case of the cumene dioxygenase, the substrates lacking any chlorine atom on double-bond carbon atoms were dioxygenated, and those with chlorine atoms attaching to double-bond carbon atoms were monooxygenated to yield allyl alcohols.
机译:在目前的工作中,已表明二甲基硫醚(DMS)单加氧酶和枯烯双加氧酶催化了各种氯化乙烯,丙烯和丁烯的氧化。测定了这些加氧酶对C_2至C_4氯化烯烃的比活,其氧化速率由DMS单加氧酶从0.19至4.18 nmol的干细胞中心点min〜(-1)中心点mg〜(-1)和枯烯双加氧酶使干细胞的0.19-1.29 nmol中心点min〜(-1)中心点mg〜(-1)。通过气相色谱-质谱法鉴定氧化产物。大多数氯化烯烃通过DMS单加氧酶进行单加氧,生成氯化环氧化物。在枯烯双加氧酶的情况下,双键碳原子上没有任何氯原子的底物被双氧合,而氯原子连接到双键碳原子上的那些底物被单氧合以产生烯丙醇。

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