Molecular cloning, overexpression, purification, and characterization of an aerobic FMN-dependent azoreductase from Enterococcus faecalis

被引:136
作者
Chen, HZ [1 ]
Wang, RF [1 ]
Cerniglia, CE [1 ]
机构
[1] US FDA, Natl Ctr Toxicol Res, Div Microbiol, Jefferson, AR 72079 USA
关键词
Enterococcus faecalis; aerobic azoreductase; azo dye; human intestinal microflora;
D O I
10.1016/j.pep.2003.12.016
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Azo dyes represent a major class of synthetic colorants that are ubiquitous in foods and consumer products. Enterococcus faecalis is a predominant member of the human gastrointestinal microflora. Strain ATCC 19433 grew in the presence of azo dyes and metabolized them to colorless products. A gene encoding a putative FMN-dependent aerobic azoreductase that shares 34% identity with azoreductase (AcpD) of Escherichia coli has been identified in this strain. The gene in E faecalis, designated as azoA, encoded a protein of 208 amino acids with a calculated isoelectric point of 4.8. AzoA was heterologously overexpressed in E. coli with a strong band of 23 kDa on SDS-PAGE. The purified recombinant enzyme was a homodimer with a molecular weight of 43 kDa, probably containing one molecule of FMN per dimer. AzoA required FMN and NADH, but not NADPH, as a preferred electron donor for its activity. The apparent K-m values for both NADH and 2-[4-(dimethylamino)phenylazo]benzoic acid (Methyl red) substrates were 0.14 and 0.024 mM, respectively. The apparent V-max was 86.2 muM/min/mg protein. The enzyme was not only able to decolorize Methyl red, but was also able to convert sulfonated azo dyes Orange II, Amaranth, Ponceau BS, and Ponceau S. AzoA is the first aerobic azoreductase to be identified and characterized from human intestinal gram-positive bacteria. (C) 2004 Elsevier Inc. All rights reserved.
引用
收藏
页码:302 / 310
页数:9
相关论文
共 36 条
[21]  
Leclerc H, 1996, J APPL BACTERIOL, V81, P459
[22]   METABOLISM OF THE BENZIDINE-BASED AZO DYE DIRECT BLACK-38 BY HUMAN INTESTINAL MICROBIOTA [J].
MANNING, BW ;
CERNIGLIA, CE ;
FEDERLE, TW .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1985, 50 (01) :10-15
[23]   ENTEROCOCCAL ENDOCARDITIS [J].
MEGRAN, DW .
CLINICAL INFECTIOUS DISEASES, 1992, 15 (01) :63-71
[24]   Purification and partial characterization of azoreductase from Enterobacter agglomerans [J].
Moutaouakkil, A ;
Zeroual, Y ;
Dzayri, FZ ;
Talbi, M ;
Lee, K ;
Blaghen, M .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2003, 413 (01) :139-146
[25]   Drug therapy: Vancomycin-resistant enterococcal infections. [J].
Murray, BE .
NEW ENGLAND JOURNAL OF MEDICINE, 2000, 342 (10) :710-721
[26]   Putative ACP phosphodiesterase gene (acpD) encodes an azoreductase [J].
Nakanishi, M ;
Yatome, C ;
Ishida, N ;
Kitade, Y .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (49) :46394-46399
[27]   Formation of a carcinogenic aromatic amine from an azo dye by human skin bacteria in vitro [J].
Platzek, T ;
Lang, C ;
Grohmann, G ;
Gi, US ;
Baltes, W .
HUMAN & EXPERIMENTAL TOXICOLOGY, 1999, 18 (09) :552-559
[28]   The function of cytoplasmic flavin reductases in the reduction of azo dyes by bacteria [J].
Russ, R ;
Rau, J ;
Stolz, A .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2000, 66 (04) :1429-1434
[29]   Basic and applied aspects in the microbial degradation of azo dyes [J].
Stolz, A .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2001, 56 (1-2) :69-80
[30]   Molecular cloning and characterization of the gene coding for azoreductase from Bacillus sp OY1-2 isolated from soil [J].
Suzuki, Y ;
Yoda, T ;
Ruhul, A ;
Sugiura, W .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (12) :9059-9065