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具有不同特性的角型双加氧酶的两种细菌对氯代二苯并呋喃和二苯并对二噁英的降解作用

Degradation of chlorinated dibenzofurans and dibenzo-p-dioxins by two types of bacteria having angular dioxygenases with different features.

作者信息

Habe H, Chung J S, Lee J H, Kasuga K, Yoshida T, Nojiri H, Omori T

机构信息

Biotechnology Research Center, The University of Tokyo, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Appl Environ Microbiol. 2001 Aug;67(8):3610-7. doi: 10.1128/AEM.67.8.3610-3617.2001.

Abstract

Two kinds of bacteria having different-structured angular dioxygenases-a dibenzofuran (DF)-utilizing bacterium, Terrabacter sp. strain DBF63, and a carbazole (CAR)-utilizing bacterium, Pseudomonas sp. strain CA10-were investigated for their ability to degrade some chlorinated dibenzofurans (CDFs) and chlorinated dibenzo-p-dioxins (CDDs) (or, together, CDF/Ds) using either wild-type strains or recombinant Escherichia coli strains. First, it was shown that CAR 1,9a-dioxygenase (CARDO) catalyzed angular dioxygenation of all mono- to triCDF/Ds investigated in this study, but DF 4,4a-dioxygenase (DFDO) did not degrade 2,7-diCDD. Secondly, degradation of CDF/Ds by the sets of three enzymes (angular dioxygenase, extradiol dioxygenase, and meta-cleavage compound hydrolase) was examined, showing that these enzymes in both strains were able to convert 2-CDF to 5-chlorosalicylic acid but not other tested substrates to the corresponding chlorosalicylic acid (CSA) or chlorocatechol (CC). Finally, we tested the potential of both wild-type strains for cooxidation of CDF/Ds and demonstrated that both strains degraded 2-CDF, 2-CDD, and 2,3-diCDD to the corresponding CSA and CC. We investigated the sites for the attack of angular dioxygenases in each CDF/D congener, suggesting the possibility that the angular dioxygenation of 2-CDF, 2-CDD, 2,3-diCDD, and 1,2,3-triCDD (10 ppm each) by both DFDO and CARDO occurred mainly on the nonsubstituted aromatic nuclei.

摘要

研究了两种具有不同结构角双加氧酶的细菌——一种利用二苯并呋喃(DF)的土壤杆菌属菌株DBF63和一种利用咔唑(CAR)的假单胞菌属菌株CA10——使用野生型菌株或重组大肠杆菌菌株降解某些氯代二苯并呋喃(CDF)和氯代二苯并 - p - 二恶英(CDD)(或统称为CDF/Ds)的能力。首先,研究表明CAR 1,9a - 双加氧酶(CARDO)催化了本研究中所研究的所有单至三CDF/Ds的角双加氧反应,但DF 4,4a - 双加氧酶(DFDO)不能降解2,7 - 二氯二苯并二恶英。其次,研究了三组酶(角双加氧酶、双加氧酶和间位裂解化合物水解酶)对CDF/Ds的降解情况,结果表明两种菌株中的这些酶都能够将2 - CDF转化为5 - 氯水杨酸,但不能将其他测试底物转化为相应的氯水杨酸(CSA)或氯邻苯二酚(CC)。最后,我们测试了两种野生型菌株对CDF/Ds共氧化的潜力,结果表明两种菌株都能将2 - CDF、2 - CDD和2,3 - 二氯二苯并二恶英降解为相应的CSA和CC。我们研究了每种CDF/D同系物中角双加氧酶的攻击位点,这表明DFDO和CARDO对2 - CDF、2 - CDD、2,3 - 二氯二苯并二恶英和1,2,3 - 三氯二苯并二恶英(各10 ppm)的角双加氧反应主要发生在未取代的芳环上。

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