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Metabolism of 2-Chloro-4-Nitroaniline via Novel Aerobic Degradation Pathway by Rhodococcus sp. Strain MB-P1

机译:红球菌通过新型有氧降解途径代谢2-氯-4-硝基苯胺。 MB-P1株

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摘要

2-chloro-4-nitroaniline (2-C-4-NA) is used as an intermediate in the manufacture of dyes, pharmaceuticals, corrosion inhibitor and also used in the synthesis of niclosamide, a molluscicide. It is marked as a black-listed substance due to its poor biodegradability. We report biodegradation of 2-C-4-NA and its pathway characterization by Rhodococcus sp. strain MB-P1 under aerobic conditions. The strain MB-P1 utilizes 2-C-4-NA as the sole carbon, nitrogen, and energy source. In the growth medium, the degradation of 2-C-4-NA occurs with the release of nitrite ions, chloride ions, and ammonia. During the resting cell studies, the 2-C-4-NA-induced cells of strain MB-P1 transformed 2-C-4-NA stoichiometrically to 4-amino-3-chlorophenol (4-A-3-CP), which subsequently gets transformed to 6-chlorohydroxyquinol (6-CHQ) metabolite. Enzyme assays by cell-free lysates prepared from 2-C-4-NA-induced MB-P1 cells, demonstrated that the first enzyme in the 2-C-4-NA degradation pathway is a flavin-dependent monooxygenase that catalyzes the stoichiometric removal of nitro group and production of 4-A-3-CP. Oxygen uptake studies on 4-A-3-CP and related anilines by 2-C-4-NA-induced MB-P1 cells demonstrated the involvement of aniline dioxygenase in the second step of 2-C-4-NA degradation. This is the first report showing 2-C-4-NA degradation and elucidation of corresponding metabolic pathway by an aerobic bacterium.
机译:2-氯-4-硝基苯胺(2-C-4-NA)在染料,药物,缓蚀剂的生产中用作中间体,也在杀虫剂尼克洛酰胺的合成中使用。由于其生物降解性差,被标记为黑名单物质。我们报告了2-C-4-NA的生物降解及其红球菌属sp的途径表征。有氧条件下的MB-P1菌株。 MB-P1菌株利用2-C-4-NA作为唯一的碳,氮和能源。在生长培养基中,2-C-4-NA的降解随着亚硝酸根离子,氯离子和氨的释放而发生。在静止细胞研究中,MB-P1菌株的2-C-4-NA诱导细胞化学计量地将2-C-4-NA转化为4-氨基-3-氯苯酚(4-A-3-CP),随后转化为6-氯羟基喹啉(6-CHQ)代谢产物。由2-C-4-NA诱导的MB-P1细胞制备的无细胞裂解物的酶分析表明,2-C-4-NA降解途径中的第一个酶是黄素依赖性单加氧酶,催化化学计量去除硝基和4-A-3-CP的生产。 2-C-4-NA诱导的MB-P1细胞对4-A-3-CP和相关苯胺的吸氧研究表明,苯胺双加氧酶参与了2-C-4-NA降解的第二步。这是第一个报告表明有氧细菌降解2-C-4-NA并阐明了相应的代谢途径。

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