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19F核磁共振作为一种工具,用于研究微生物将氟酚降解为氟儿茶酚和氟粘康酸酯的过程。

19F nuclear magnetic resonance as a tool to investigate microbial degradation of fluorophenols to fluorocatechols and fluoromuconates.

作者信息

Boersma M G, Dinarieva T Y, Middelhoven W J, van Berkel W J, Doran J, Vervoort J, Rietjens I M

机构信息

Laboratory of Biochemistry, Wageningen Agricultural University, The Netherlands.

出版信息

Appl Environ Microbiol. 1998 Apr;64(4):1256-63. doi: 10.1128/AEM.64.4.1256-1263.1998.

Abstract

A method was developed to study the biodegradation and oxidative biodehalogenation of fluorinated phenols by 19F nuclear magnetic resonance (NMR). Characterization of the 19F NMR spectra of metabolite profiles of a series of fluorophenols, converted by purified phenol hydroxylase, catechol 1,2-dioxygenase, and/or by the yeast-like fungus Exophiala jeanselmei, provided possibilities for identification of the 19F NMR chemical shift values of fluorinated catechol and muconate metabolites. As an example, the 19F NMR method thus defined was used to characterize the time-dependent metabolite profiles of various halophenols in either cell extracts or in incubations with whole cells of E. jeanselmei. The results obtained for these two systems are similar, except for the level of muconates observed. Altogether, the results of the present study describe a 19F NMR method which provides an efficient tool for elucidating the metabolic pathways for conversion of fluorine-containing phenols by microorganisms, with special emphasis on possibilities for biodehalogenation and detection of the type of fluorocatechols and fluoromuconates involved. In addition, the method provides possibilities for studying metabolic pathways in vivo in whole cells.

摘要

开发了一种通过19F核磁共振(NMR)研究氟代酚生物降解和氧化生物脱卤的方法。对一系列经纯化的苯酚羟化酶、邻苯二酚1,2-双加氧酶和/或类酵母真菌埃克菲拉菌转化的氟代酚代谢产物谱的19F NMR谱进行表征,为鉴定氟代邻苯二酚和粘康酸代谢产物的19F NMR化学位移值提供了可能。例如,如此定义的19F NMR方法用于表征在细胞提取物中或与埃克菲拉菌全细胞孵育时各种卤代酚随时间变化的代谢产物谱。除了观察到的粘康酸水平外,这两个系统获得的结果相似。总之,本研究结果描述了一种19F NMR方法,该方法为阐明微生物转化含氟酚的代谢途径提供了一种有效工具,特别强调了生物脱卤的可能性以及所涉及的氟代邻苯二酚和氟代粘康酸类型的检测。此外,该方法为在全细胞中体内研究代谢途径提供了可能。

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