GLUTATHIONE CONJUGATION AND CONVERSION TO MERCAPTURIC ACIDS CAN OCCUR AS AN INTRAHEPATIC PROCESS

被引:133
作者
HINCHMAN, CA [1 ]
BALLATORI, N [1 ]
机构
[1] UNIV ROCHESTER, SCH MED, DEPT ENVIRONM MED, ROCHESTER, NY 14642 USA
来源
JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH | 1994年 / 41卷 / 04期
关键词
D O I
10.1080/15287399409531852
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
By catalyzing the reaction of electrophilic compounds with the sulfhydryl group of glutathione, the glutathione S-transferases play physiologically important roles in the detoxication of potential alkylating agents. The glutathione S-conjugates thus formed are transported out of cells for further metabolism by gamma-glutamyltransferase and dipeptidases, ectoproteins that catalyze the sequential removal of the glutamyl and glycyl moieties, respectively. These ectoproteins are not found in all cells, but are localized predominantly to the apical surface of epithelial tissues. The resulting cysteine S-conjugates can be reabsorbed by specific cell types, and acetylated on the amino group of the cysteinyl residue by intracellular N-acetyltransferases, to form the corresponding mercapturic acids (N-acetylcysteine S-conjugates). Mercapturic acids are then released into the circulation and delivered to the kidney for excretion in urine, or they may undergo further metabolism. Mercapturic acid biosynthesis is generally considered to be an interorgan process, with the liver serving as the major site of glutathione conjugation, and the kidney as the primary site for conversion of glutathione conjugates to cysteine conjugates. Cysteine conjugates formed in the kidney appear to be transported back to the liver for acetylation. This interorgan model of mercapturic acid synthesis is based largely on the interorgan distribution of the enzymes involved in their formation, and in particular of the enzyme gamma-glutamyltransferase. Rats have relatively low hepatic and high renal activities of gamma-glutamyltransferase, the only protein known to initiate the breakdown of glutathione S-conjugates. The low gamma-glutamyltransferase activity in rat liver limits the hepatic degradation of glutathione S-conjugates, particularly after large doses of xenobiotic. In contrast, hepatic gamma-glutamyltransferase is significantly higher in species such as rabbit, guinea pig, and dog, and as a consequence, nearly all of the glutathione and glutathione S-conjugates released by liver cells of these species is degraded within the liver. Recent studies demonstrate that glutathione S-conjugates synthesized within hepatocytes are secreted preferentially across the canalicular membrane into bile, and are broken down within biliary spaces to form cysteine S-conjugates. The latter are then reabsorbed by the liver, N-acetylated to form mercapturic acids, and reexcreted into bile, completing an intrahepatic pathway for mercapturic acid biosynthesis. The contribution of this intrahepatic pathway to overall mercapturate formation is dependent on dose of the electrophile, route of exposure, and the physicochemical properties of the glutathione S-conjugate formed, as well as the tissue distribution and activity of gamma-glutamyltransferase. Intrahepatic mercapturic acid formation via the gamma-glutamyl cycle may provide an efficient mechanism of detoxification for a variety of electrophiles.
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页码:387 / 409
页数:23
相关论文
共 106 条
[1]   BILIARY TRANSPORT OF GLUTATHIONE DISULFIDE STUDIED WITH ISOLATED RAT-LIVER CANALICULAR-MEMBRANE VESICLES [J].
AKERBOOM, T ;
INOUE, M ;
SIES, H ;
KINNE, R ;
ARIAS, IM .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1984, 141 (01) :211-215
[2]  
AKERBOOM TPM, 1991, J BIOL CHEM, V266, P13147
[3]  
AKERBOOM TPM, 1982, J BIOL CHEM, V257, P4248
[4]   COMPETITION BETWEEN TRANSPORT OF GLUTATHIONE DISULFIDE (GSSG) AND GLUTATHIONE S-CONJUGATES FROM PERFUSED-RAT-LIVER INTO BILE [J].
AKERBOOM, TPM ;
BILZER, M ;
SIES, H .
FEBS LETTERS, 1982, 140 (01) :73-76
[5]  
AKERBOOM TPM, 1989, METHOD ENZYMOL, V173, P523
[6]   HISTOCHEMICAL DEMONSTRATION OF GAMMA-GLUTAMYL TRANSPEPTIDASE [J].
ALBERT, Z ;
ORLOWSKI, M ;
SZEWCZUK, A .
NATURE, 1961, 191 (479) :767-&
[7]   CELLULAR EFFECTS OF REACTIVE INTERMEDIATES - NEPHROTOXICITY OF S-CONJUGATES OF AMINO-ACIDS [J].
ANDERS, MW ;
ELFARRA, AA ;
LASH, LH .
ARCHIVES OF TOXICOLOGY, 1987, 60 (1-3) :103-108
[8]   PURIFICATION AND CHARACTERIZATION OF AN ATPASE FROM HUMAN LIVER WHICH CATALYZES ATP HYDROLYSIS IN THE PRESENCE OF THE CONJUGATES OF BILIRUBIN, BILE-ACIDS AND GLUTATHIONE [J].
AWASTHI, YC ;
SINGHAL, SS ;
GUPTA, S ;
AHMAD, H ;
ZIMNIAK, P ;
RADOMINSKA, A ;
LESTER, R ;
SHARMA, R .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1991, 175 (03) :1090-1096
[9]  
BAKKE JE, 1981, DRUG METAB DISPOS, V9, P525
[10]   METABOLISM OF 2,4',5-TRICHLOROBIPHENYL BY THE MERCAPTURIC ACID PATHWAY [J].
BAKKE, JE ;
BERGMAN, AL ;
LARSEN, GL .
SCIENCE, 1982, 217 (4560) :645-647