GLUTATHIONE S-TRANSFERASES - BIOMEDICAL APPLICATIONS

被引:248
作者
BECKETT, GJ
HAYES, JD
机构
[1] University Department of Clinical Biochemistry, Royal Infirmary
来源
ADVANCES IN CLINICAL CHEMISTRY, VOL 30 | 1993年 / 30卷
关键词
D O I
10.1016/S0065-2423(08)60198-5
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
This chapter focuses on the biomedical applications of ubiquitous and modest size enzymes, glutathione S-transferases (GST), found in bacteria, yeast, nematodes, insects, fish, birds, and mammals. They constitute a complex supergene family that collectively metabolizes chemotherapeutic drugs, carcinogens, environmental pollutants, and a broad spectrum of other harmful foreign compounds (xenobiotics). The fact that GST is present at high levels in the liver ensures that their concentration in plasma provides an exceptionally sensitive index of hepatocellular damage. Whereas the function of GST is considered primarily to be one of detoxifying foreign compounds, these enzymes possess activities other than catalyzing the formation of glutathione–xenobiotic conjugates. For example, GST exhibit peroxidase activity toward organic hydroperoxides and serve to combat oxidative stress. The conjugation between reduced glutathione (GSH) and xenobiotics represents the few subsequent steps that lead to the formation of mercapturic acids: the removal of the γ-glutamyl moiety from the glutathione conjugate by γ-glutamyltransferase, the enzymatic removal of glycine from the cysteinyl glycine conjugate, and the N-acetylation of the cysteine conjugate by an acetyl-CoA-linked acetylase. The final N-acetylcysteine thioethers, or mercapturic acids, produced by the enzymes that catalyze this pathway are water soluble and are readily excreted from the body. © 1993, Academic Press Inc.
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页码:281 / 380
页数:100
相关论文
共 402 条
[1]   CHARACTERIZATION AND LOCALIZATION OF GLUTATHIONE-S-TRANSFERASES IN RAT-BRAIN AND BINDING OF HORMONES, NEUROTRANSMITTERS, AND DRUGS [J].
ABRAMOVITZ, M ;
HOMMA, H ;
ISHIGAKI, S ;
TANSEY, F ;
CAMMER, W ;
LISTOWSKY, I .
JOURNAL OF NEUROCHEMISTRY, 1988, 50 (01) :50-57
[2]  
ABRAMOVITZ M, 1987, J BIOL CHEM, V262, P7770
[3]   GLUTATHIONE-RELATED ENZYME-ACTIVITIES IN TESTIS OF PATIENTS WITH MALIGNANT DISEASES [J].
ACETO, A ;
DIILIO, C ;
ANGELUCCI, S ;
TENAGLIA, R ;
ZEZZA, A ;
CACCURI, AM ;
FEDERICI, G .
CLINICA CHIMICA ACTA, 1989, 183 (01) :83-86
[4]  
ADACHI Y, 1980, CLIN CHIM ACTA, V106, P243
[5]  
ADAMS DJ, 1987, J BIOL CHEM, V262, P4888
[6]  
AGRUP G, 1977, ACTA DERM-VENEREOL, V57, P221
[7]   PRIMARY AND SECONDARY STRUCTURAL-ANALYSES OF GLUTATHIONE S-TRANSFERASE-PI FROM HUMAN PLACENTA [J].
AHMAD, H ;
WILSON, DE ;
FRITZ, RR ;
SINGH, SV ;
MEDH, RD ;
NAGLE, GT ;
AWASTHI, YC ;
KUROSKY, A .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1990, 278 (02) :398-408
[8]   FORMATION OF CYTOTOXIC ALDEHYDE ACROLEIN DURING IN-VITRO DEGRADATION OF CYCLOPHOSPHAMIDE [J].
ALARCON, RA ;
MEIENHOF.J .
NATURE-NEW BIOLOGY, 1971, 233 (42) :250-&
[9]   COMPOSITION OF HUMAN HEPATIC BILE [J].
ALBERS, CJEM ;
HUIZENGA, JR ;
KROM, RAF ;
VONK, RJ ;
GIPS, CH .
ANNALS OF CLINICAL BIOCHEMISTRY, 1985, 22 (MAR) :129-132
[10]   STRUCTURAL EVIDENCE FOR 3 DIFFERENT TYPES OF GLUTATHIONE TRANSFERASE IN HUMAN-TISSUES [J].
ALIN, P ;
MANNERVIK, B ;
JORNVALL, H .
FEBS LETTERS, 1985, 182 (02) :319-322