Habe H, Chung J S, Lee J H, Kasuga K, Yoshida T, Nojiri H, Omori T
Biotechnology Research Center, The University of Tokyo, Bunkyo-ku, Tokyo 113-8657, Japan.
Appl Environ Microbiol. 2001 Aug;67(8):3610-7. doi: 10.1128/AEM.67.8.3610-3617.2001.
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.
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。