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烟曲霉对4-乙基苯酚的代谢

4-Ethylphenol metabolism by Aspergillus fumigatus.

作者信息

Jones K H, Trudgill P W, Hopper D J

机构信息

Institute of Biological Sciences, University of Wales, Aberystwyth, Dyfed, United Kingdom.

出版信息

Appl Environ Microbiol. 1994 Jun;60(6):1978-83. doi: 10.1128/aem.60.6.1978-1983.1994.

Abstract

Aspergillus fumigatus ATCC 28282 was found to be capable of growth on 4-ethylphenol as its sole carbon and energy source. A pathway for the metabolism of this compound has been proposed. The initial step involves hydroxylation of the methylene group of 4-ethylphenol to form 1-(4'-hydroxyphenyl)ethanol, followed by oxidation to 4-hydroxyacetophenone. The hydroxylase was NADPH and oxygen dependent, which is a characteristic of a monooxygenase type of enzyme. The 1-(4'-hydroxyphenyl)ethanol isolated from growth medium was a racemic mixture of R-(+) and S-(-) enantiomers. 4-Hydroxyacetophenone undergoes an NADPH-dependent Baeyer-Villiger type of oxygenation to give 4-hydroxyphenyl acetate, which is hydrolyzed to form hydroquinone (1,4-dihydroxybenzene). Hydroxylation of hydroquinone by an NADPH-dependent enzyme produces 1,2,4-trihydroxybenzene, the ring fission substrate, which is cleaved by ortho fission to form maleylacetate. The pathway was elucidated by various kinds of investigations. Analysis of culture medium sampled during growth on 4-ethylphenol revealed the transient appearance of 1-(4'-hydroxyphenyl)ethanol, 4-hydroxyacetophenone, and hydroquinone. Cells grown on 4-ethylphenol were able to oxidize all of these compounds immediately, whereas oxidation by succinate-grown cells showed a lag period. Extracts prepared from cells grown on 4-ethylphenol contained enzyme activities for all of the proposed steps. Apart from a low level of esterase activity towards 4-hydroxyphenyl acetate, extracts prepared from cells grown on succinate did not contain any of these enzyme activities.

摘要

烟曲霉ATCC 28282被发现能够以4-乙基苯酚作为唯一碳源和能源进行生长。已提出了该化合物的代谢途径。第一步涉及4-乙基苯酚亚甲基的羟基化反应,形成1-(4'-羟基苯基)乙醇,随后氧化为4-羟基苯乙酮。该羟化酶依赖于NADPH和氧气,这是单加氧酶类型酶的一个特征。从生长培养基中分离出的1-(4'-羟基苯基)乙醇是R-(+)和S-(-)对映体的外消旋混合物。4-羟基苯乙酮经历依赖于NADPH的拜耳-维利格类型的氧化反应,生成4-羟基苯乙酸酯,后者水解形成对苯二酚(1,4-二羟基苯)。依赖于NADPH的酶将对苯二酚羟基化,生成1,2,4-三羟基苯,即环裂解底物,其通过邻位裂解形成马来酰乙酸。通过各种研究阐明了该途径。对在4-乙基苯酚上生长期间采集的培养基进行分析,发现1-(4'-羟基苯基)乙醇、4-羟基苯乙酮和对苯二酚短暂出现。在4-乙基苯酚上生长的细胞能够立即氧化所有这些化合物,而琥珀酸生长的细胞氧化这些化合物则有一个滞后期。从在4-乙基苯酚上生长的细胞制备的提取物含有所有上述步骤的酶活性。除了对4-羟基苯乙酸酯有低水平的酯酶活性外,从在琥珀酸上生长的细胞制备的提取物不含有任何这些酶活性。

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