Search results for "glutathione transferase"

showing 10 items of 84 documents

The depletion of nuclear glutathione impairs cell proliferation in 3t3 fibroblasts.

2009

BACKGROUND:Glutathione is considered essential for survival in mammalian cells and yeast but not in prokaryotic cells. The presence of a nuclear pool of glutathione has been demonstrated but its role in cellular proliferation and differentiation is still a matter of debate. PRINCIPAL FINDINGS:We have studied proliferation of 3T3 fibroblasts for a period of 5 days. Cells were treated with two well known depleting agents, diethyl maleate (DEM) and buthionine sulfoximine (BSO), and the cellular and nuclear glutathione levels were assessed by analytical and confocal microscopic techniques, respectively. Both agents decreased total cellular glutathione although depletion by BSO was more sustaine…

PhysiologyGlutathione reductaseCell Biology/Cell Growth and Divisionlcsh:MedicineBiology3T3 cellschemistry.chemical_compoundMicemedicineBiochemistry/Cell Signaling and Trafficking StructuresAnimalsButhionine sulfoximinelcsh:ScienceTranscription factorButhionine SulfoximineCell ProliferationGlutathione TransferaseCell NucleusMultidisciplinaryMicroscopy ConfocalCell growthlcsh:RMaleatesGlutathione3T3 CellsFibroblastsMolecular biologyGlutathioneCell biologyCell nucleusmedicine.anatomical_structureGlutathione ReductasechemistryCytoplasmlcsh:QResearch ArticlePloS one
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A multiplex polymerase chain reaction protocol for the simultaneous analysis of the glutathione S-transferase GSTM1 and GSTT1 polymorphisms.

1996

Polymorphism GeneticbiologyBase Sequencebusiness.industryMolecular Sequence DataBiophysicsCell BiologyBiochemistryMolecular biologyPolymerase Chain ReactionReverse transcription polymerase chain reactionGlutathione S-transferaseReal-time polymerase chain reactionMultiplex polymerase chain reactionbiology.proteinMedicineHumansbusinessMolecular BiologyNested polymerase chain reactionDNA PrimersGlutathione TransferaseAnalytical biochemistry
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Evolutionary and structural analyses of GDAP1, involved in Charcot-Marie-Tooth disease, characterize a novel class of glutathione transferase-related…

2003

Mutations in the Ganglioside-induced differentiation-associated protein-1 (GDAP1) gene cause autosomal recessive Charcot-Marie-Tooth disease type 4A. The protein encoded by GDAP1 shows clear similarity to glutathione transferases (also known as glutathione S-transferases or GSTs). The human genome contains a paralog of GDAP1 called GDAP1L1. Using comparative genomics, we show that orthologs of GDAP1 and GDAP1L1 are found in mammals, birds, amphibians, and fishes. Likely orthologs of those genes in invertebrates and a low but consistent similarity with some plant and eubacterial genes have also been found. We demonstrate that GDAP1 and GDAP1L1 do not belong to any of the known classes of GST…

Protein ConformationMolecular Sequence DataSequence alignmentNerve Tissue ProteinsBiologyEvolution MolecularProtein structurePhylogeneticsCharcot-Marie-Tooth DiseaseDatabases GeneticGeneticsCluster AnalysisHumansAmino Acid SequenceMolecular BiologyPeptide sequenceGeneEcology Evolution Behavior and SystematicsPhylogenyGlutathione TransferaseComparative genomicsGeneticsTransmembrane domainMultigene FamilyHuman genomeSequence AlignmentMolecular biology and evolution
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Two amino acid residues determine the low substrate affinity of human cationic amino acid transporter-2A.

2003

Mammalian cationic amino acid transporters (CAT) differ in their substrate affinity and sensitivity to trans-stimulation. The apparent Km values for cationic amino acids and the sensitivity to trans-stimulation of CAT-1, -2B, and -3 are characteristic of system y+. In contrast, CAT-2A exhibits a 10-fold lower substrate affinity and is largely independent of substrate at the trans-side of the membrane. CAT-2A and -2B demonstrate such divergent transport properties, even though their amino acid sequences differ only in a stretch of 42 amino acids. Here, we identify two amino acid residues within this 42-amino acid domain of the human CAT-2A protein that are responsible for the apparent low af…

Protein ConformationRecombinant Fusion ProteinsBlotting WesternGreen Fluorescent ProteinsMolecular Sequence DataGene ExpressionArginineTransfectionBiochemistryStructure-Activity RelationshipXenopus laevisExtracellularAnimalsHumansBiotinylationAmino acid transporterAmino Acid SequenceAmino AcidsCationic Amino Acid Transporter 2Molecular BiologyGlutathione Transferasechemistry.chemical_classificationBinding SitesSubstrate (chemistry)Biological TransportCell BiologyPhoto-reactive amino acid analogAmino acidTransmembrane domainLuminescent ProteinsS-tagchemistryBiochemistryMutagenesis Site-DirectedOocytesElectrophoresis Polyacrylamide GelFemaleIntracellularThe Journal of biological chemistry
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Requirement of Retinoic Acid Receptor Isotypes α, β, and γ during the Initial Steps of Neural Differentiation of PCC7 Cells

2005

Retinoic acid (RA) is indispensable for morphogenesis and differentiation of several tissues, including the nervous system. The requirement of the RA receptor (RAR) isotypes alpha, beta, and gamma and the putative role of retinoid X receptor-(RXR) signaling in RA-induced neural differentiation, was analyzed. For this compound-selective retinoids and the murine embryonal carcinoma cell line PCC7, a model system for RA-dependent neural differentiation was used. The present paper shows that proliferating PCC7 cells primarily express RXRalpha and RARalpha, lower levels of RXRbeta, and barely detectable amounts of RARbeta, RARgamma, and RXRgamma. At receptor-selective concentrations, only a RARa…

Receptors Retinoic AcidRetinoic acidReceptors Cytoplasmic and NuclearApoptosisLigandsMicechemistry.chemical_compoundEndocrinologyGenes ReporterNuclear Receptor Subfamily 6 Group A Member 1Protein IsoformsRetinoidReceptorGlutathione TransferaseNeuronsCell DeathReverse Transcriptase Polymerase Chain ReactionCell DifferentiationGeneral MedicineImmunohistochemistryUp-RegulationCell biologyDNA-Binding ProteinsBiochemistrySignal transductionPlasmidsProtein BindingSignal Transductionmedicine.drugTranscriptional ActivationDNA Complementarymedicine.drug_classRecombinant Fusion ProteinsBlotting WesternDown-RegulationTretinoinRetinoid X receptorBiologyTransfectionCell LineTretinoinCell Line TumormedicineAnimalsHumansMolecular BiologyCell ProliferationKineticsRetinoic acid receptorRetinoid X ReceptorschemistryNuclear receptorRNAOctamer Transcription Factor-3Transcription FactorsMolecular Endocrinology
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Hamster Bcl-2 Protein Is Cleaved in Vitro and in Cells by Caspase-9 and Caspase-3

2001

Full-length cDNA of hamster bcl-2 (771 nt) was cloned by RT-PCR and inserted into pGEX-4T-1 to produce the recombinant hamster Bcl-2 protein. The purified recombinant Bcl-2 protein (26.4 kDa) was used as a substrate for the active human caspase-3 and caspase-9 in vitro. It is shown here that Bcl-2 is efficiently cleaved by caspase-3 to a 23 kDa fragment. Although not possessing a putative caspase-9 cleavage site in its sequence, hamster Bcl-2 was also cleaved by caspase-9 into exactly the same 23 kDa cleavage product, indicating that cleavage occurred at the same site. Caspase-3- and caspase-9-mediated cleavage of Bcl-2 was efficiently blocked by caspase-3 (zDEVD) and caspase-9 (zLEHD) inhi…

Recombinant Fusion ProteinsBlotting WesternBiophysicsHamsterCaspase 3CHO CellsCysteine Proteinase InhibitorsCleavage (embryo)Biochemistrylaw.inventionlawCricetinaeComplementary DNAAnimalsHumansMolecular BiologyCaspaseGlutathione TransferaseCleavage stimulation factorbiologyCaspase 3Chinese hamster ovary cellThrombinCell BiologyCaspase InhibitorsMolecular biologyCaspase 9Proto-Oncogene Proteins c-bcl-2Caspasesbiology.proteinRecombinant DNAOligopeptidesBiochemical and Biophysical Research Communications
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Purification of a biologically active recombinant glyceraldehyde 3-phosphate dehydrogenase fromCandida albicans

1999

We report here the purification of a functionally active recombinant glyceraldehyde 3-phosphate dehydrogenase (GAPDH) from Candida albicans. The GAPDH protein encoded by the TDH1 gene was obtained as a glutathione S-transferase fusion protein by expression in the vector pGEX-4T-3, and purified by affinity chromatography and thrombin digestion. The purified protein displays GAPDH enzymatic activity (42 micromol NADH min(-1) mg(-1)) as well as the laminin and fibronectin binding activities previously described. In addition, the recombinant GAPDH is covalently modified by NAD linkage; this modification is stimulated by nitric oxide and probably involves a sulfhydryl group (cysteine) residue si…

Recombinant Fusion ProteinsDehydrogenaseBiologyMicrobiologyChromatography Affinitylaw.inventionchemistry.chemical_compoundstomatognathic systemAffinity chromatographylawGlyceraldehydeCandida albicansEscherichia coliGeneticsCloning MolecularMolecular BiologyGlyceraldehyde 3-phosphate dehydrogenaseGlutathione TransferaseThrombinGlyceraldehyde-3-Phosphate DehydrogenasesMolecular biologyRecombinant ProteinsKineticschemistryBiochemistryFibronectin bindingbiology.proteinRecombinant DNAGlyceraldehyde 3-phosphateCysteineFEMS Microbiology Letters
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Development of type-specific and cross-reactive serological probes for the minor capsid protein of human papillomavirus type 33.

1993

Human papillomavirus type 33 (HPV33) is associated with malignant tumors of the cervix. In an attempt to develop immunological probes for HPV33 infections, antisera against various bacterial fusion proteins carrying sequences of the minor capsid protein encoded by L2 were raised in animals. Antigenic determinants on the HPV33 L2 protein were identified by using truncated fusion proteins and were classified as type specific or cross-reactive with respect to HPV1, -8, -11, -16, and -18. Cross-reactive epitopes map to amino acids 98 to 107 or to amino acids 102 to 112 and 107 to 117, respectively, depending on the fusion protein used for immunization. Antibodies directed toward these epitopes …

Recombinant Fusion ProteinsImmunologyGuinea PigsMolecular Sequence DataPeptideBiologyMicrobiologyEpitopeStructure-Activity RelationshipCapsidAntigenSpecies SpecificityVirologyAnimalsAmino Acid SequenceStaphylococcal Protein APeptide sequenceAntigens ViralPapillomaviridaeGlutathione TransferaseSequence Deletionchemistry.chemical_classificationBase SequenceOncogene Proteins Viralbeta-GalactosidaseMolecular biologyFusion proteinAmino acidchemistryCapsidOligodeoxyribonucleotidesInsect Sciencebiology.proteinCapsid ProteinsRabbitsAntibodySequence AlignmentResearch ArticleJournal of virology
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Differential expression and interaction with the visual G-protein transducin of centrin isoforms in mammalian photoreceptor cells.

2004

Photoisomerization of rhodopsin activates a heterotrimeric G-protein cascade leading to closure of cGMP-gated channels and hyperpolarization of photoreceptor cells. Massive translocation of the visual G-protein transducin, Gt, between subcellular compartments contributes to long term adaptation of photoreceptor cells. Ca(2+)-triggered assembly of a centrin-transducin complex in the connecting cilium of photoreceptor cells may regulate these transducin translocations. Here we demonstrate expression of all four known, closely related centrin isoforms in the mammalian retina. Interaction assays revealed binding potential of the four centrin isoforms to Gtbetagamma heterodimers. High affinity b…

Rhodopsingenetic structuresLightBlotting WesternBiologyBiochemistryRetinaRats Sprague-DawleyMiceCalcium-binding proteinHeterotrimeric G proteinmedicineAnimalsProtein IsoformsScattering RadiationCiliaTransducinMicroscopy ImmunoelectronMolecular BiologyCyclic GMPGlutathione TransferaseCentrosomeRetinaChromatographyDose-Response Relationship DrugReverse Transcriptase Polymerase Chain ReactionCiliumCalcium-Binding ProteinsCell BiologySequence Analysis DNARod Cell Outer SegmentRecombinant ProteinsCell biologyRatsMice Inbred C57BLKineticsProtein Transportmedicine.anatomical_structureMicroscopy FluorescenceRhodopsinCentrosomeCentrinbiology.proteinCalciumCattleElectrophoresis Polyacrylamide Gelsense organsTransducinProtein BindingThe Journal of biological chemistry
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Effects of garlic powders with varying alliin contents on hepatic drug metabolizing enzymes in rats

2003

International audience; The anticarcinogenic effect of garlic has been demonstrated in both epidemiologic and experimental studies. In this study, possible mechanisms involved in the anticarcinogenic effect of garlic consumption were assessed by determining its capacity to alter drug metabolizing enzymes, in relation with its alliin content. Rats were fed a diet for 2 weeks containing 5% garlic powders produced from bulbs grown on soils with different levels of sulfate fertilization and therefore containing differing amounts of alliin. Activities of several hepatic enzymes, which are important in carcinogen metabolism such cytochromes P450 (CYP) and phase II enzymes, were determined. Garlic…

S01 - Nutrition humaine - Considérations généralesMaleDiallyl disulfideAlliinPharmacognosyhttp://aims.fao.org/aos/agrovoc/c_11091chemistry.chemical_compound0302 clinical medicinehttp://aims.fao.org/aos/agrovoc/c_4395[SDV.IDA]Life Sciences [q-bio]/Food engineeringGlucuronosyltransferaseComputingMilieux_MISCELLANEOUSAilGlutathione Transferasechemistry.chemical_classification0303 health sciencesbiologyDiallyl disulfidehttp://aims.fao.org/aos/agrovoc/c_2603food and beveragesBiological activityCytochrome P-450 CYP2E1[SDV.IDA] Life Sciences [q-bio]/Food engineering3. Good healthBiochemistryLiver030220 oncology & carcinogenesisGeneral Agricultural and Biological SciencesAllium sativumDrug-metabolizing enzymesFoiehttp://aims.fao.org/aos/agrovoc/c_290Médicamenthttp://aims.fao.org/aos/agrovoc/c_25197Alliin03 medical and health scienceshttp://aims.fao.org/aos/agrovoc/c_2395Cytochrome P-450 CYP1A2Cytochrome P-450 CYP1A1AnimalsAnticarcinogenic AgentsCysteineRats WistarQ04 - Composition des produits alimentairesGarlic030304 developmental biologySantéCytochrome P450General ChemistryGlutathioneAllium sativumPropriété pharmacologiqueDietRatsEnzymechemistryEnzymebiology.proteinRAThttp://aims.fao.org/aos/agrovoc/c_3511http://aims.fao.org/aos/agrovoc/c_6464
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