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首页> 外文期刊>Applied and Environmental Microbiology >Degradation of nitrobenzene by a Pseudomonas pseudoalcaligenes.
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Degradation of nitrobenzene by a Pseudomonas pseudoalcaligenes.

机译:假单胞菌拟链霉菌降解硝基苯。

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A Pseudomonas pseudoalcaligenes able to use nitrobenzene as the sole source of carbon, nitrogen, and energy was isolated from soil and groundwater contaminated with nitrobenzene. The range of aromatic substrates able to support growth was limited to nitrobenzene, hydroxylaminobenzene, and 2-aminophenol. Washed suspensions of nitrobenzene-grown cells removed nitrobenzene from culture fluids with the concomitant release of ammonia. Nitrobenzene, nitrosobenzene, hydroxylaminobenzene, and 2-aminophenol stimulated oxygen uptake in resting cells and in extracts of nitrobenzene-grown cells. Under aerobic and anaerobic conditions, crude extracts converted nitrobenzene to 2-aminophenol with oxidation of 2 mol of NADPH. Ring cleavage, which required ferrous iron, produced a transient yellow product with a maximum A380. In the presence of NAD, the product disappeared and NADH was produced. In the absence of NAD, the ring fission product was spontaneously converted to picolinic acid, which was not further metabolized. These results indicate that the catabolic pathway involves the reduction of nitrobenzene to nitrosobenzene and then to hydroxylaminobenzene; each of these steps requires 1 mol of NADPH. An enzyme-mediated Bamberger-like rearrangement converts hydroxylaminobenzene to 2-aminophenol, which then undergoes meta ring cleavage to 2-aminomuconic semialdehyde. The mechanism for release of ammonia and subsequent metabolism are under investigation.
机译:从硝基苯污染的土壤和地下水中分离出了能够利用硝基苯作为碳,氮和能量唯一来源的假单胞菌拟碱菌。能够支持生长的芳香族底物的范围仅限于硝基苯,羟氨基苯和2-氨基苯酚。洗涤过的硝基苯生长细胞的悬浮液从培养液中除去了硝基苯,并伴随着氨的释放。硝基苯,亚硝基苯,羟氨基苯和2-氨基苯酚刺激了静息细胞和硝基苯生长的细胞提取物中的氧吸收。在好氧和厌氧条件下,粗提取物在2摩尔NADPH的氧化作用下将硝基苯转化为2-氨基苯酚。需要亚铁的开环裂解产生的瞬时黄色产物的最大A380。在NAD存在下,产物消失并且产生NADH。在不存在NAD的情况下,环裂变产物自发地转化为吡啶甲酸,其不再被代谢。这些结果表明分解代谢途径涉及将硝基苯还原为亚硝基苯,然后还原为羟氨基苯。每个步骤都需要1摩尔的NADPH。酶介导的Bamberger样重排将羟氨基苯转化为2-氨基苯酚,然后将其间环裂解为2-氨基粘康半醛。氨释放和后续代谢的机制正在研究中。

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