Identification of aldehyde oxidase as the neonicotinoid nitroreductase

被引:62
作者
Dick, RA [1 ]
Kanne, DB [1 ]
Casida, JE [1 ]
机构
[1] Univ Calif Berkeley, Dept Environm Sci Policy & Management, Environm Chem & Toxicol Lab, Berkeley, CA 94720 USA
关键词
D O I
10.1021/tx049737i
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Imidacloprid (IMI), the prototypical neonicotinoid insecticide, is used worldwide for crop protection and flea control on pets. It is both oxidatively metabolized by cytochrome P450 enzymes and reduced at the nitroguanidine moiety by a previously unidentified cytosolic "neonicotinoid nitroreductase", the subject of this investigation. Two major metabolites are detected on incubation of IMI with rabbit liver cytosol: the nitrosoguanidine (IMI-NO) and the aminoguanidine (IMI-NH2). Three lines of evidence identify the molybdo-flavoenzyme aldehyde oxidase (AOX, EC 1.2.3.1) as the neonicotinoid nitroreductase. First, classical AOX electron donor substrates (benzaldehyde, 2-hydroxypyrimidine, and N-methylnicotinamide) dramatically increase the rate of formation of IMI metabolites. Allopurinol and diquat are also effective electron donors, while NADPH and xanthine are not. Second, AOX inhibitors (potassium cyanide, menadione, and promethazine) inhibit metabolite formation when N-methylnicotinamide is utilized as an electron donor. Without the addition of an electron donor, rabbit liver cytosol reduces IMI only to IMI-NO at a slow rate. This reduction is also inhibited by potassium cyanide, menadione, and promethazine, as well as by additional AOX inhibitors, cimetidine and chlorpromazine. Finally, IMI nitroreduction by AOX is sensitive to an aerobic atmosphere, but to a much lesser extent than cytochrome P450 2D6. Large species differences are observed in the IMI nitroreductive activity of liver cytosol. While rabbit and monkey (Cynomolgus) give the highest levels of total metabolite formation, human, mouse, cow, and rat also metabolize IMI rapidly. In contrast, dog, cat, and chicken liver cytosols do not reduce IMI at appreciable rates. AOX, as a neonicotinoid nitroreductase, may limit the persistence of IMI, and possibly other neonicotinoids, in mammals.
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页码:317 / 323
页数:7
相关论文
共 33 条
[1]   SPECIES VARIATION IN HEPATIC ALDEHYDE OXIDASE ACTIVITY [J].
BEEDHAM, C ;
BRUCE, SE ;
CRITCHLEY, DJ ;
ALTAYIB, Y ;
RANCE, DJ .
EUROPEAN JOURNAL OF DRUG METABOLISM AND PHARMACOKINETICS, 1987, 12 (04) :307-310
[2]   SUBSTRATE-SPECIFICITY OF HUMAN LIVER ALDEHYDE OXIDASE TOWARD SUBSTITUTED QUINAZOLINES AND PHTHALAZINES - A COMPARISON WITH HEPATIC ENZYME FROM GUINEA-PIG, RABBIT, AND BABOON [J].
BEEDHAM, C ;
CRITCHLEY, DJP ;
RANCE, DJ .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1995, 319 (02) :481-490
[3]   IN-VITRO IN-VIVO CORRELATIONS OF HUMAN (S)-NICOTINE METABOLISM [J].
BERKMAN, CE ;
PARK, SB ;
WRIGHTON, SA ;
CASHMAN, JR .
BIOCHEMICAL PHARMACOLOGY, 1995, 50 (04) :565-570
[4]  
BRYANT C, 1991, CHEM BIOCH FLAVOENZY, V2, P291
[5]  
CALDERBANK A., 1976, HERBICIDES CHEM DEGR, V2, P501
[6]   Molecular characterization of the amplified aldehyde oxidase from insecticide resistant Culex quinquefasciatus [J].
Coleman, M ;
Vontas, JG ;
Hemingway, J .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 2002, 269 (03) :768-779
[7]   DDT resistance in Drosophila correlates with Cyp6g1 over-expression and confers cross-resistance to the neonicotinoid imidacloprid [J].
Daborn, P ;
Boundy, S ;
Yen, J ;
Pittendrigh, B ;
Ffrench-Constant, R .
MOLECULAR GENETICS AND GENOMICS, 2001, 266 (04) :556-563
[8]   Better ..., worse ... Achievement related comparison processes in elementary school [J].
Dickhäuser, O ;
Galfe, E .
ZEITSCHRIFT FUR ENTWICKLUNGSPSYCHOLOGIE UND PADAGOGISCHE PSYCHOLOGIE, 2004, 36 (01) :1-9
[9]  
*ENV PROT AG, 2003, FED REGISTER, V68, P35303
[10]  
FROSTLING H, 1984, J WORK ENV HLTH, V10, P163