Search results for "Glutathione transferase activity"

showing 3 items of 3 documents

Influence of the level of cytosolic epoxide hydrolase on the induction of sister chromatid exchanges by trans-beta-ethylstyrene 7,8-oxide in human ly…

1991

Abstract trans -β-Ethylstyrene 7,8-oxide, a substrate of cytosolic epoxide hydrolase, and 4-fluorochalcone oxide, an inhibitor of this enzyme, were investigated on induction of sister chromatid exchanges (SCE) in human lymphocytes. Both epoxides enhanced the frequency of SCE. 4-Fluorochalcone oxide at low concentration (2.5μM) inhibited cytosolic epoxide hydrolase activity towards trans -β-ethylstyrene 7,8-oxide in lymphocytes by 74% and had no effect on glutathione transferase activity using this substrate. At this concentration it did not induce SCE itself, but it potentiated the effect of trans -β-ethylstyrene 7,8-oxide several fold. In lymphocytes from different subjects, the number of …

EpoxideSister chromatid exchangeBiologyBiochemistryStyreneschemistry.chemical_compoundChalconeChalconesCytosolHumansLymphocytesGlutathione transferase activityEpoxide hydrolaseCarcinogenCells CulturedPharmacologychemistry.chemical_classificationEpoxide HydrolasesGenetic VariationMetabolismGlutathioneCytosolKineticsEnzymechemistryBiochemistryInactivation MetabolicSister Chromatid ExchangeBiochemical pharmacology
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Properties of the microsomal and cytosolic glutathione transferases involved in hexachloro-1:3-butadiene conjugation

1989

Hexachloro-1,3-butadiene (HCBD) is a substrate for the hepatic microsomal glutathione transferases and is metabolised at higher rates by these enzymes than their cytosolic counterparts. Conjugation reactions catalysed by the microsomal and cytosolic transferases have been studied and characterized using this substrate and 1-chloro-2,4-dinitrobenzene (CDNB). In rat liver microsomes the Km values for HCBD and CDNB were 0.91 and 0.012 mM and in cytosol 0.51 and 0.10 mM respectively. Vmax values for HCBD were 1.39 and 0.35 nmol conjugate formed/min/mg protein for microsomes and cytosol respectively. In microsomal systems HCBD was a potent competitive inhibitor of the metabolism of CDNB with a K…

MaleDetergentsGuinea PigsCholic AcidBiochemistrySulfobromophthaleinchemistry.chemical_compoundCytochrome P-450 Enzyme SystemCricetinaeButadienesDinitrochlorobenzeneAnimalsHumansGlutathione transferase activityGlutathione TransferasePharmacologychemistry.chemical_classificationbiologyEndoplasmic reticulumBilirubinCholic AcidsGlutathioneMetabolismbiology.organism_classificationRatsKineticsCytosolEnzymeSolubilitychemistryBiochemistryMicrosomaMicrosomes LiverMicrosomeRabbitsBiochemical Pharmacology
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Dependency of the in vitro stabilization of differentiated functions in liver parenchymal cells on the type of cell line used for co-culture.

1992

The differentiation status in cultures of primary rat liver parenchymal cells was determined by measuring the activities of various xenobiotic metabolizing enzymes. Most enzyme activities dropped rather rapidly in monocultures of parenchymal cells. The protein content and the activities of cytosolic epoxide hydrolase, glutathione S-transferase, and alpha-naphthol UDP-glucuronosyl transferase were, however, well stabilized in 7-day-old co-cultures of parenchymal cells with two different lines of rat liver nonparenchymal epithelial cells (NEC1 and NEC2). Phenol sulfotransferase and microsomal epoxide hydrolase activity were reduced in this coculture system after 7 days to about 30 and 20% of …

SulfotransferaseClinical BiochemistryBiologyCell LineXenobioticschemistry.chemical_compoundmedicineAnimalsGlutathione transferase activityGlucuronosyltransferaseEpoxide hydrolaseCells CulturedGlutathione TransferaseEpoxide HydrolasesProteinsCell DifferentiationCell BiologyGeneral MedicineGlutathioneArylsulfotransferaseRatsmedicine.anatomical_structurechemistryBiochemistryLiverCell cultureMicrosomal epoxide hydrolaseHepatocyteStem cellDevelopmental BiologyIn vitro cellulardevelopmental biology : journal of the Tissue Culture Association
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