BROMOBENZENE 3,4-OXIDE ALKYLATES HISTIDINE AND LYSINE SIDE-CHAINS OF RAT-LIVER PROTEINS IN-VIVO

被引:35
作者
BAMBAL, RB [1 ]
HANZLIK, RP [1 ]
机构
[1] UNIV KANSAS,DEPT MED CHEM,LAWRENCE,KS 66045
关键词
D O I
10.1021/tx00047a013
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The hepatotoxic effects of bromobenzene (BB) are correlated with and generally ascribed to the covalent modification of cellular proteins by chemically reactive metabolites, particularly BB-3,4-oxide. Previous studies revealed that quinone as well as epoxide metabolites of BB form adducts to protein sulfur nucleophiles, that the quinone-derived adducts are more abundant by a factor of ca. 7, and that collectively these sulfur adducts account for only about 10% of the total protein covalent binding [Slaughter, D. E., and Hanzlik, R. P. (1991) Chem. Res. Toxicol. 4, 349-359]. To examine the possibility that metabolically-formed BB-3,4-oxide alkylates nitrogen nucleophiles on proteins under toxicologically relevant conditions in vivo, we synthesized standards of N-tau-(p-bromophenyl)histidine (7) and N-epsilon-(p-bromophenyl)lysine (8) as anticipated adduct structures and used them to guide a chromatographic search for their presence in hydrolysates of liver protein from BB-treated rats. While radio-LC chromatography and GC/MS provide unequivocal evidence for their presence, the amounts of 7 and 8 observed are very low (<1% of total covalent binding). The apparently small net contribution of epoxide metabolites to covalent binding of BB in vivo suggests the majority of binding may arise via quinone metabolites, but this should not be construed to imply that quinone adducts are necessarily more important toxicologically than epoxide adducts; in this context the identity of the protein targets is probably at least as important as the type of electrophilic metabolite involved.
引用
收藏
页码:729 / 735
页数:7
相关论文
共 41 条
[21]   DETECTION AND HALF-LIFE OF BROMOBENZENE-3,4-OXIDE IN BLOOD [J].
LAU, SS ;
MONKS, TJ ;
GREENE, KE ;
GILLETTE, JR .
XENOBIOTICA, 1984, 14 (07) :539-543
[22]   STEREOSELECTIVE FORMATION OF BROMOBENZENE GLUTATHIONE CONJUGATES [J].
MONKS, TJ ;
POHL, LR ;
GILLETTE, JR ;
HONG, M ;
HIGHET, RJ ;
FERRETTI, JA ;
HINSON, JA .
CHEMICO-BIOLOGICAL INTERACTIONS, 1982, 41 (02) :203-216
[23]  
MONKS TJ, 1984, DRUG METAB DISPOS, V12, P432
[24]  
MONKS TJ, 1990, MOL PHARMACOL, V38, P121
[25]  
MONKS TJ, 1983, LIFE SCI, V30, P841
[26]   MICROSOMAL METABOLISM AND COVALENT BINDING OF [H-3/C-14] BROMOBENZENE - EVIDENCE FOR QUINONES AS REACTIVE METABOLITES [J].
NARASIMHAN, N ;
WELLER, PE ;
BUBEN, JA ;
WILEY, RA ;
HANZLIK, RP .
XENOBIOTICA, 1988, 18 (05) :491-499
[27]  
REID WD, 1973, EXP MOL PATHOL, V18, P80, DOI 10.1016/0014-4800(73)90009-9
[28]   MECHANISM OF RENAL NECROSIS INDUCED BY BROMOBENZENE OR CHLOROBENZENE [J].
REID, WD .
EXPERIMENTAL AND MOLECULAR PATHOLOGY, 1973, 19 (02) :197-214
[29]   METABOLISM AND BINDING OF AROMATIC-HYDROCARBONS IN LUNG - RELATIONSHIP TO EXPERIMENTAL BRONCHIOLAR NECROSIS [J].
REID, WD ;
ILETT, KF ;
GLICK, JM ;
KRISHNA, G .
AMERICAN REVIEW OF RESPIRATORY DISEASE, 1973, 107 (04) :539-551
[30]   BROMOBENZENE METABOLISM AND HEPATIC NECROSIS [J].
REID, WD ;
CHRISTIE, B ;
KRISHNA, G ;
MITCHELL, JR ;
MOSKOWITZ, J ;
BRODIE, BB .
PHARMACOLOGY, 1971, 6 (01) :41-+