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Bacterial degradation of styrene involving a novel flavin adenine dinucleotide-dependent styrene monooxygenase.

机译:苯乙烯的细菌降解涉及一种新的黄素腺嘌呤二核苷酸依赖性苯乙烯单加氧酶。

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摘要

By using styrene as the sole source of carbon and energy in concentrations of 10 to 500 microM, 14 strains of aerobic bacteria and two strains of fungi were isolated from various soil and water samples. In cell extracts of 11 of the bacterial isolates, a novel flavin adenine dinucleotide-requiring styrene monooxygenase activity that oxidized styrene to styrene oxide (phenyl oxirane) was detected. In one bacterial strain (S5), styrene metabolism was studied in more detail. In addition to styrene monooxygenase, cell extracts from strain S5 contained styrene oxide isomerase and phenylacetaldehyde dehydrogenase activities. A pathway for styrene degradation via styrene oxide and phenylacetaldehyde to phenylacetic acid is proposed.
机译:通过使用苯乙烯作为碳和能量的唯一来源,其浓度为10到500 microM,从各种土壤和水样中分离出14株需氧细菌和2株真菌。在11种细菌分离物中的细胞提取物中,检测到一种新的需要黄素腺嘌呤二核苷酸的苯乙烯单加氧酶活性,该活性将苯乙烯氧化为氧化苯乙烯(苯基环氧乙烷)。在一种细菌菌株(S5)中,对苯乙烯代谢进行了更详细的研究。除苯乙烯单加氧酶外,菌株S5的细胞提取物还含有氧化苯乙烯异构酶和苯乙醛脱氢酶活性。提出了一种通过氧化苯乙烯和苯乙醛将苯乙烯降解为苯乙酸的途径。

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