Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0019204 (hepatocellular carcinoma)
71,386 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The in vitro interaction of mercury, copper (II) and cadmium with human glutathione transferase (GST) pi was studied using reduced glutathione (GSH) and 1-chloro-2,4-dinitrobenzene as substrate. Tumor specific human GST pi was isolated from the human hepatoma derived PLC/PRF/5 cell line. The inhibition of the GST pi activity was dose dependent. Kinetic studies never revealed competitive inhibition. A parabolic inhibition was found with GSH as the variable substrate. The heavy metals are spontaneously conjugated with GSH and cysteine, but interact with GST pi by direct binding to this protein. This binding could have a protective function against heavy metals.
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PMID:In vitro interaction of mercury, copper (II) and cadmium with human glutathione transferase pi. 221 73

Glutathione S-transferases play a central role in drug detoxification and have been implicated in the sensitivity of tumour cells to anticancer drugs. In this study, glutathione S-transferase (GST) isozyme expression in normal and tumour tissue from human lung, colon, stomach, breast, kidney and liver tissue has been quantified using sensitive and subunit specific radioimmunoassays (RIA), together with Western blot analysis and measurement of substrate metabolism. Glutathione S-transferase pi was the predominant GST in the majority of the tumours examined. The concentration of this enzyme was increased significantly in tumour tissue relative to normal lung, colon, and stomach tissue. A strong correlation was observed (r = 0.77, P less than 0.01) between GST activity and GST pi levels in those tumour samples. The concentrations of the alpha class GST, the predominant isoenzymes in normal stomach, kidney and liver, decreased dramatically in tumour tissue from these organs. Western blot analysis revealed the presence of novel polypeptides that cross-reacted with antisera raised against alpha and mu class GST. Our data demonstrates that although GST pi is the predominant GST isoenzyme in many tumours, significant levels of the other GST subunits are also present and collectively can represent a significant proportion of the GST content. Therefore the properties of all the GST isoenzymes need consideration when assessing the role of these proteins in drug resistance. Selenium-dependent glutathione peroxidase, an enzyme activity also implicated in the mode of action of certain antitumour agents, was also studied and shown to be the predominant glutathione-dependent peroxidase in all tumours except the hepatoma.
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PMID:Glutathione S-transferase and glutathione peroxidase expression in normal and tumour human tissues. 231 Nov 89

The effects of hepatocarcinogens (ethionine, thioacetamide, phenobarbital), non-hepatocarcinogens [N-ethyl-N-(4-hydroxybutyl)nitrosamine (EHBN), N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)] and a hepatoinhibitor [(butylated hydroxyanisole (BHA)] were compared in medium- and long-term in vivo systems. In experiment I, 2 weeks after a single injection of diethylnitrosamine (DEN) groups of male F344 rats received chemical administration for 6 weeks, combined with partial hepatectomy at week 3 and were killed at the end of week 8. In experiment II, animals were treated in the same manner and then given basal diet and tap water (group 1) or chemical continuously (group 2) until the 2 year timepoint. Numbers and areas of glutathione S-transferase placental form (GST-P)-positive foci developing in the liver under medium-term bioassay conditions (experiment I) were found to closely correlate with eventual hepatocellular carcinoma incidences after continuation of test chemical administration (experiment II). Thus all of the hepatocarcinogens enhanced both the induction of GST-P-positive focal lesions and liver tumors. While non-hepatocarcinogens exerted no such effects, their influence being limited to inducing lesions in their own respective target organs such as urinary bladder cancers in the EHBN case and glandular stomach adenocarcinomas with MNNG, BHA demonstrated inhibition potential in both experiments. The observed correlation between long- and medium-term results strongly indicates the applicability of our medium-term bioassay system for detection of liver carcinogens.
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PMID:Correlation between medium-term liver bioassay system data and results of long-term testing in rats. 232 97

Many structurally unrelated nonmutagenic peroxisome proliferators induce altered areas, neoplastic nodules, and hepatocellular carcinomas in rats. Unlike the lesions induced by genotoxic hepatocarcinogens, these lesions do not stain positively for the phenotypic markers gamma-glutamyl transpeptidase (GGT) and glutathione-S-transferase P (GST-P). To ascertain whether the absence of immunocytochemically detectable GST-P and GGT proteins in peroxisome proliferator-induced neoplastic lesions is due to the absence of specific mRNAs, we analyzed the total RNA isolated from hepatocellular carcinomas induced by three different peroxisome proliferators (ciprofibrate, Wy-14643, and BR-931) and the genotoxic carcinogens, 2-acetylaminofluorene and aflatoxin B1 (AFB), for the presence of GST-P, GGT, and alpha-fetoprotein (AFP) mRNAs. Northern and dot blot analysis of total RNA isolated from liver tumors induced by three different peroxisome proliferators revealed no detectable GST-P, GGT, and AFP mRNAs. GST-P mRNA was also not detected in a transplantable hepatocellular carcinoma established from a liver tumor induced by ciprofibrate. In contrast, GST-P mRNA levels were high in primary liver tumors induced by both 2-acetylaminofluorene and AFB and the two transplantable hepatocellular carcinomas established from such tumors. By immunoblot method, GST-P protein was found to be abundant in both primary and transplantable liver tumors induced by genotoxic carcinogens but not in those derived from peroxisome proliferator treatment. The GGT and AFP mRNAs were also not found in all 18 liver tumors induced by peroxisome proliferators that were analyzed and also in the ciprofibrate-derived transplantable liver tumor. The expression of GGT and AFP genes in liver tumors induced by 2-acetylaminofluorene and AFB was variable. These studies with peroxisome proliferators show that the GST-P and GGT gene derepression is not essential for the hepatocarcinogenesis or successful tumor transplantation. Further characterization of the molecular basis for the differential expression, particularly of the GST-P gene in liver tumors, may help identification of the critical event(s) in hepatocarcinogenesis by genotoxic carcinogens and nongenotoxic peroxisome proliferators.
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PMID:Lack of expression of glutathione-S-transferase P, gamma-glutamyl transpeptidase, and alpha-fetoprotein messenger RNAs in liver tumors induced by peroxisome proliferators. 245 33

Liver tissues of LEC rats, which develop fulminant hepatitis and hepatocellular carcinoma (hepatoma), were examined by Northern blot analysis using a cDNA probe of rat placental glutathione S-transferase (GST-P). GST-P gene expression was observed not only during hepatocarcinogenesis but also in fulminant hepatitis before development of chronic hepatitis and hepatoma in LEC rats. Cholangiofibrosis in LEC rats also showed high GST-P expression. A transplantable cell line derived from spontaneous LEC hepatoma exhibited a remarkably high expression. By contrast, very weak expression was observed in the livers of young LEC rats before development of hepatitis and control strain rats. Thus, spontaneous hepatic lesions in LEC rats may provide a new clue to elucidate the mechanism of GST-P gene expression.
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PMID:Gene expression of placental glutathione S-transferase in hereditary hepatitis and spontaneous hepatocarcinogenesis of LEC strain rats. 248 61

Hep G2 cells, an established cell line derived from a human hepatoma, were mass cultured in a cell factory for the isolation of glutathione transferase isoenzymes. These were enriched by affinity chromatography and separated in an anionic and a cationic fraction. They were partially characterized by different kinetic and inhibition parameters. Three different subunits were observed. The results were compared with human liver data. It is concluded that Hep G2 cells can be considered as a valuable alternative tool for in vitro research of human liver phenomena, especially when toxicological interactions are investigated.
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PMID:Partial purification and characterization of the soluble glutathione transferase isoenzymes from cultured Hep G2 cells. 255 10

The effect of clofibrate (CF) on proliferation of diethylnitrosamine (DEN)-initiated glutathione S-transferase placental form (GST-P)-positive preneoplastic and neoplastic lesions as studied in male F344 rats. Animals were given a single i.p. injection of 200 mg/kg body weight of DEN, and then from 2 weeks later were given a diet containing 0.3% CF (group 1), or no supplement (group 2) until week 64. Group 3 received an injection of 0.9% NaCl instead of DEN and then a diet containing 0.3% CF, like group 1. Animals in all groups were subjected to partial hepatectomy at week 3 and killed at weeks 8, 20, 32, 49 or 64. The results showed that development of GST-P-positive lesions was significantly less in group 1 than in group 2 from week 8 (P less than 0.05). However, in group 1, morphologically distinguishable GST-P-negative preneoplastic lesions increased from week 20 (P less than 0.05), and the total number of GST-P-positive and -negative lesions was significantly greater than that in group 2 from week 32 (P less than 0.05). The induction of hepatocellular carcinoma (HCC) was greater in group 1 than in group 2 from week 49. All the HCCs induced in group 2 were GST-P-positive, whereas 38.9% (7/18) of those in group 1 were GST-P-negative. In group 3, only a few GST-P-positive and/or -negative preneoplastic lesions developed by week 64. These results suggest that CF has tumor-promoting activity, and that GST-P-positive cells induced by DEN changed to GST-P-negative cells on subsequent treatment with CF.
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PMID:Modulation of diethylnitrosamine-initiated placental glutathione S-transferase positive preneoplastic and neoplastic lesions by clofibrate, a hepatic peroxisome proliferator. 268 52

Some reports link human hepatic porphyria with a risk of hepatocellular carcinoma. Hepatic protoporphyria and uroporphyria were induced in mice by feeding griseofulvin and hexachlorobenzene (HCB), respectively. These chemicals also cause liver cancer. Hepatic immunoreactive cytosolic levels of heme-binding Z protein (HBP) were reduced by 81% (griseofulvin) and 55% (HCB). In contrast, both treatments caused a greater than 4-fold increase in the immunoreactive levels of glutathione S-transferase isozymes (GST) which like HBP also bind heme. Unlike in vitro studies in the presence of porphyrins, no cross-linking of HBP was observed in vivo.
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PMID:Modulation of hepatic heme-binding Z protein in mice by the porphyrogenic carcinogens griseofulvin and hexachlorobenzene. 273 Nov 54

Nonoxidative alcohol metabolism to form fatty acid ethyl esters contributes to alcohol-related end-organ damage, and these products are formed by two synthase enzymes. We recently purified the major (pI 4.9) synthase from human myocardium. The N-terminal sequence (A P Y T V V Y F P V R G R X K A L R M L X A D) is greater than 73% identical with that of a neutral (pI 6.7) detoxification enzyme, glutathione transferase P from rat hepatocellular carcinoma (P P Y T I V Y F P V R G R C E A T R M L L A D). Moreover, both the major human fatty acid ethyl ester synthase and bovine liver glutathione transferase catalyze the formation of fatty acid ethyl esters (Vmax 105 and 98 nmol per hr per mg, respectively). In addition, both enzymes catalyze the formation of glutathione-xenobiotic conjugates (Vmax 67 and 335 mol per hr per mol of enzyme, respectively). Physiological concentrations of glutathione increase the rate of formation of fatty acid ethyl esters up to 5-fold, and the glutathione transferase substrate 1-chloro-2,4-dinitrobenzene is a potent inhibitor of human myocardial fatty acid ethyl ester synthase. Thus, the identification of the major form of human myocardial fatty acid ethyl ester synthase as an acidic glutathione transferase links alcohol and xenobiotic metabolism and may relate the enhancement of tumorigenesis by alcohol abuse with carcinogen-conjugation reactions.
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PMID:Metabolism of ethanol and carcinogens by glutathione transferases. 273 99

This study deals with the role of glutathione transferase (GST)-mediated conjugation of (+)-7 beta,8 alpha-dihydroxy-9 alpha,10 alpha-oxy-7,8,9,10- tetrahydrobenzo[a]pyrene (BPDE) in two mammalian cell lines, human mammary carcinoma cells (MCF-7) and rat hepatoma cells (H4IIE), in relation to their capacity to metabolize (-)-trans-7,8-dihydroxy-7,8-dihydrobenzo[a]pyrene [(-)-BP-7,8-diol] to products that induce mutations in co-cultivated V79 cells. Both MCF-7 and H4IIE cells metabolized (-)-BP-7,8-diol to BPDE, but mutations in co-cultivated V79 cells were only detected with MCF-7 cells. However, depletion of glutathione (GSH) in H4IIE cells increased the mutagenicity of (-)-BP-7,8-diol to a similar level to that found with MCF-7 cells. Measurements of GST activity using GSH and post-microsomal supernatants from H4IIE, V79 and MCF-7 cells indicated a substantial difference in conjugation capacity. Although preparations from all three cell-lines showed GST activity with 1-chloro-2,4-dinitrobenzene as the substrate, GST activity towards BPDE could only be detected in supernatants from H4IIE cells. This is consistent with the presence of GST 7-7 an isoenzyme highly efficient in catalysing BPDE-GSH conjugation. The difference in GSH-conjugation activity towards BPDE was confirmed using intact H4IIE and MCF-7 cells in culture. These results indicate that GSH-conjugation plays a pivotal role in mutagenesis induced by polycyclic aromatic hydrocarbons (PAH). Accordingly, a deficiency in GSH-conjugation capacity may be regarded as one important factor in defining a target cell population with an increased risk for tumour initiation following exposure to PAH.
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PMID:Effects of glutathione transferase activity on benzo[a]pyrene 7,8-dihydrodiol metabolism and mutagenesis studied in a mammalian cell co-cultivation assay. 276 61


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