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Identification of Fluoropyrogallols as New Intermediates in Biotransformation of Monofluorophenols in Rhodococcus opacus 1cp

机译:鉴定氟邻苯三酚作为不透明红球菌1cp中单氟酚生物转化的新中间体

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摘要

The transformation of monofluorophenols by whole cells of Rhodococcus opacus 1cp was investigated, with special emphasis on the nature of hydroxylated intermediates formed. Thin-layer chromatography, mass spectrum analysis, and 19F nuclear magnetic resonance demonstrated the formation of fluorocatechol and trihydroxyfluorobenzene derivatives from each of three monofluorophenols. The 19F chemical shifts and proton-coupled splitting patterns of the fluorine resonances of the trihydroxyfluorobenzene products established that the trihydroxylated aromatic metabolites contained hydroxyl substituents on three adjacent carbon atoms. Thus, formation of 1,2,3-trihydroxy-4-fluorobenzene (4-fluoropyrogallol) from 2-fluorophenol and formation of 1,2,3-trihydroxy-5-fluorobenzene (5-fluoropyrogallol) from 3-fluorophenol and 4-fluorophenol were observed. These results indicate the involvement of fluoropyrogallols as previously unidentified metabolites in the biotransformation of monofluorophenols in R. opacus 1cp.
机译:研究了不透明红球菌1cp的整个细胞对单氟酚的转化,特别强调了形成的羟基化中间体的性质。薄层色谱法,质谱分析和19F核磁共振表明,由三种单氟酚分别形成了氟邻苯二酚和三羟基氟苯衍生物。三羟基氟苯产物的氟共振的19 F化学位移和质子耦合分裂模式确定三羟基化的芳族代谢物在三个相邻的碳原子上包含羟基取代基。因此,由2-氟酚形成1,2,3-三羟基-4-氟苯(4-氟邻苯三酚)和由3-氟酚和4-形成1,2,3-三羟基-5-氟苯(5-氟邻苯三酚)观察到氟苯酚。这些结果表明,氟吡咯烷酚作为先前未鉴定的代谢产物参与了R. opacus 1cp中单氟酚的生物转化。

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