ARYL HYDROXYLATION OF THE HERBICIDE DICLOFOP BY A WHEAT CYTOCHROME-P-450 MONOOXYGENASE - SUBSTRATE-SPECIFICITY AND PHYSIOLOGICAL-ACTIVITY

被引:70
作者
ZIMMERLIN, A
DURST, F
机构
[1] INST BIOL MOLEC PLANTES,DEPT ENZYMOL CELLULAIRE & MOLEC,CNRS,F-67083 STRASBOURG,FRANCE
[2] UNIV LONDON,ROYAL HOLLOWAY & BEDFORD NEW COLL,EGHAM TW20 0EX,SURREY,ENGLAND
关键词
D O I
10.1104/pp.100.2.874
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Wheat (Triticum aestivum L. cv Etoile de Choisy) microsomes catalyzed the cytochrome P-450-dependent oxidation of the herbicide diclofop to three hydroxy-diclofop isomers. Hydroxylation was predominant at carbon 4, with migration of chlorine to carbon 5 (67%) and carbon 3 (25%). The 2,4-dichloro-5-hydroxy isomer was identified as a minor reaction product (8%). Substrate-specificity studies showed that the activity was not inhibited or was weakly inhibited by a range of xenobiotic or physiological cytochrome P-450 substrates, with the exception of lauric acid. Wheat microsomes also catalyze the metabolism of the herbicides chlorsulfuron, chlortoluron, and 2,4-dichlorophenoxyacetic acid and of the model substrate ethoxycoumarin, as well as the hydroxylation of the endogenous substrates cinnamic and lauric acids. Treatments of wheat seedlings with phenobarbital or the safener naphthalic acid anhydride enhanced the cytochrome P-450 content of the microsomes and all related activities except that of cinnamic acid 4-hydroxylase, which was reduced. The stimulation patterns of diclofop aryl hydroxylase and lauric acid hydroxylase were similar, in contrast with the other activities tested. Lauric acid inhibited competitively (K(i) = 9 mum) the oxidation of diclofop and reciprocally. The similarity of diclofop aryl hydroxylase and lauric acid hydroxylase was further investigated by alternative substrate kinetics, autocatalytic inactivation, and computer-aided molecular modelisation studies, and the results suggest that both reactions are catalyzed by the same cytochrome P-450 isozyme.
引用
收藏
页码:874 / 881
页数:8
相关论文
共 26 条
[1]   WOUNDING-INDUCED CINNAMIC ACID HYDROXYLASE IN JERUSALEM ARTICHOKE TUBER [J].
BENVENISTE, I ;
SALAUN, JP ;
DURST, F .
PHYTOCHEMISTRY, 1977, 16 (01) :69-73
[2]  
CHA S, 1968, MOL PHARMACOL, V4, P621
[3]  
DEMONTELLANO PRO, 1986, CYTOCHROME P450 STRU, P217
[4]  
DURST F, 1991, FRONTIERS BIOTRANSFO, P191
[5]   HYDROXYLATION OF PRIMISULFURON BY AN INDUCIBLE CYTOCHROME-P450-DEPENDENT MONOOXYGENASE SYSTEM FROM MAIZE [J].
FONNEPFISTER, R ;
GAUDIN, J ;
KREUZ, K ;
RAMSTEINER, K ;
EBERT, E .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 1990, 37 (02) :165-173
[6]   RING-METHYL HYDROXYLATION OF CHLORTOLURON BY AN INDUCIBLE CYTOCHROME P450-DEPENDENT ENZYME FROM MAIZE [J].
FONNEPFISTER, R ;
KREUZ, K .
PHYTOCHEMISTRY, 1990, 29 (09) :2793-2796
[7]   EVOLUTION OF THE P450-GENE SUPERFAMILY - ANIMAL PLANT WARFARE, MOLECULAR DRIVE AND HUMAN GENETIC-DIFFERENCES IN DRUG OXIDATION [J].
GONZALEZ, FJ ;
NEBERT, DW .
TRENDS IN GENETICS, 1990, 6 (06) :182-186
[8]  
GRESSEL J, 1988, NEWS VIEWS OXFORD SU, V5, P195
[9]   HYDROXYLATION-INDUCED MIGRATION - NIH SHIFT [J].
GUROFF, G ;
DALY, JW ;
JERINA, DM ;
RENSON, J ;
WITKOP, B ;
UDENFRIE.S .
SCIENCE, 1967, 157 (3796) :1524-&
[10]  
JEFFERY EH, 1983, MOL PHARMACOL, V23, P748