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紫色细菌球形红杆菌OU5介导的光依赖性苯胺向吲哚酯的转化

Light-dependent transformation of aniline to indole esters by the purple bacterium Rhodobacter sphaeroides OU5.

作者信息

Shanker Vijay, Rayabandla Sunayana Mandala, Kumavath Ranjith Nayak, Chintalapati Sasikala, Chintalapati Ramana

机构信息

Department of Plant Sciences, School of Life Sciences, University of Hyderabad P.O. Central University, Hyderabad, 500 046, India.

出版信息

Curr Microbiol. 2006 Jun;52(6):413-7. doi: 10.1007/s00284-005-0057-3. Epub 2006 Apr 25.

Abstract

In an attempt to understand the aromatic hydrocarbon metabolism by purple bacteria that do not grow at their expense, we earlier reported 2-aminobenzoate transformation by a purple non-sulfur bacterium, Rhodobacter sphaeroides OU5 (Sunayana et al., 2005, J Ind Microbiol Biotech 32:41-45), which is extended in the present study with aniline, a major environmental pollutant. Aniline did not support photo (light anaerobic) or chemo (dark aerobic) heterotrophic growth of Rhodobacter sphaeroides OU5 either as a sole source of carbon or nitrogen. However, light-dependent aniline transformation was observed in the culture supernatants and the products were identified as indole derivatives. The transformation was dependent on a tricarboxylate intermediate, fumarate. Five intermediates of the aniline biotransformation pathway were isolated and identified as indole esters having a mass of 443, 441, 279, 189, and 167 with unstoichiometric total indole yields of 0.16 mM: from 5 mM: of aniline consumed. The pathway proposed based on these intermediates suggest a novel xenobiotic detoxification process in bacteria.

摘要

为了了解不以芳烃为生长底物的紫色细菌的芳烃代谢情况,我们之前报道了紫色非硫细菌球形红杆菌OU5对2-氨基苯甲酸的转化(Sunayana等人,2005年,《工业微生物学与生物技术杂志》32:41-45),本研究将其扩展至对主要环境污染物苯胺的研究。苯胺既不能作为唯一碳源也不能作为唯一氮源支持球形红杆菌OU5的光(光厌氧)或化能(黑暗需氧)异养生长。然而,在培养上清液中观察到了光依赖型苯胺转化,产物被鉴定为吲哚衍生物。该转化依赖于三羧酸中间体富马酸。分离并鉴定了苯胺生物转化途径的五种中间体,它们为质量数分别为443、441、279、189和167的吲哚酯,从消耗的5 mM苯胺中获得的总吲哚产量为0.16 mM,未达到化学计量比。基于这些中间体提出的途径表明细菌中存在一种新的外源物解毒过程。

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