首页> 美国卫生研究院文献>Journal of Bacteriology >Evidence of Two Oxidative Reaction Steps Initiating Anaerobic Degradation of Resorcinol (13-Dihydroxybenzene) by the Denitrifying Bacterium Azoarcus anaerobius
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Evidence of Two Oxidative Reaction Steps Initiating Anaerobic Degradation of Resorcinol (13-Dihydroxybenzene) by the Denitrifying Bacterium Azoarcus anaerobius

机译:厌氧厌氧细菌脱氮细菌引发间苯二酚(13-二羟基苯)厌氧降解的两个氧化反应步骤的证据

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摘要

The denitrifying bacterium Azoarcus anaerobius LuFRes1 grows anaerobically with resorcinol (1,3-dihydroxybenzene) as the sole source of carbon and energy. The anaerobic degradation of this compound was investigated in cell extracts. Resorcinol reductase, the key enzyme for resorcinol catabolism in fermenting bacteria, was not present in this organism. Instead, resorcinol was hydroxylated to hydroxyhydroquinone (HHQ; 1,2,4-trihydroxybenzene) with nitrate or K3Fe(CN)6 as the electron acceptor. HHQ was further oxidized with nitrate to 2-hydroxy-1,4-benzoquinone as identified by high-pressure liquid chromatography, UV/visible light spectroscopy, and mass spectroscopy. Average specific activities were 60 mU mg of protein−1 for resorcinol hydroxylation and 150 mU mg of protein−1 for HHQ dehydrogenation. Both activities were found nearly exclusively in the membrane fraction and were only barely detectable in extracts of cells grown with benzoate, indicating that both reactions were specific for resorcinol degradation. These findings suggest a new strategy of anaerobic degradation of aromatic compounds involving oxidative steps for destabilization of the aromatic ring, different from the reductive dearomatization mechanisms described so far.
机译:反硝化细菌Azoarcus anaerobius LuFRes1以间苯二酚(1,3-二羟基苯)作为唯一的碳和能量来源,厌氧生长。在细胞提取物中研究了该化合物的厌氧降解。间苯二酚还原酶是发酵细菌中间苯二酚分解代谢的关键酶,在该生物中不存在。取而代之的是,间苯二酚用硝酸盐或K3Fe(CN)6作为电子受体被羟基化为羟基氢醌(HHQ; 1,2,4-三羟基苯)。通过高压液相色谱法,紫外/可见光光谱法和质谱法鉴定,HHQ进一步用硝酸盐氧化为2-羟基-1,4-苯醌。间苯二酚羟基化的平均比活为60 mU mg蛋白 -1 ,而HHQ脱氢的平均比活为150 mU mg蛋白 -1 。两种活性几乎全部在膜部分中发现,并且仅在用苯甲酸酯生长的细胞提取物中几乎检测不到,表明这两种反应都对间苯二酚降解具有特异性。这些发现提出了一种新的厌氧降解芳族化合物的策略,该方法涉及使芳环不稳定的氧化步骤,这与迄今为止描述的还原性脱芳构作用机理不同。

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