Search results for "Microbodies"

showing 10 items of 41 documents

Peroxisomal beta-oxidation activities and gamma-decalactone production by the yeast Yarrowia lipolytica.

1998

International audience; gamma-Decalactone is a peachy aroma compound resulting from the peroxisomal beta-oxidation of ricinoleic acid by yeasts. The expression levels of acyl-CoA oxidase (gene deletion) and 3-ketoacyl-CoA thiolase activities (gene amplification on replicative plasmids) were modified in the yeast Yarrowia lipolytica. The effects of these modifications on beta-oxidation were measured. Overexpression of thiolase activity did not have any effect on the overall beta-oxidation activity. The disruption of one of the acyl-CoA oxidase genes resulted in an enhanced activity. The enhancement led to an increase of overall beta-oxidation activity but reduced the gamma-decalactone produc…

MESH: Oxidation-ReductionRicinoleic acidMESH: MicrobodiesMicrobodiesApplied Microbiology and BiotechnologyAROME DE PECHELactoneschemistry.chemical_compoundMESH : BiotransformationYeastsMESH : Microbodies[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyAcyl-CoA oxidaseMESH: Blotting NorthernNorthern[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology[INFO.INFO-BT]Computer Science [cs]/Biotechnology[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyBiotransformationMESH : Oxidation-ReductionMESH: BiotransformationMESH : YeastsOxidase testbiologyBlottingCatabolismThiolaseMESH: YeastsMESH : Blotting NorthernYarrowiaGeneral MedicinePeroxisomeBlotting Northernbiology.organism_classificationYeastMESH : LactonesMESH: Ricinoleic Acids[SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitology[INFO.INFO-BT] Computer Science [cs]/BiotechnologyBiochemistrychemistryMESH : Ricinoleic AcidsACYL COA OXYDASERicinoleic AcidsOxidation-Reduction[ INFO.INFO-BT ] Computer Science [cs]/BiotechnologyMESH: LactonesBiotechnology
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Induction of the peroxisome proliferator activated receptor by fenofibrate in rat liver

1992

AbstractThe process of peroxisome proliferation in rodent liver by hypolipidemic compounds and related substances has recently been shown to be receptor-madiated. In the present study, we have examined the effect of oral administration of the strong peroxisome proliferator fenofibrate on the hepatic expression level of the peroxisome proliferator activated receptor (PPAR) in rats. Immunoblots of rat liver cytosols and nuclear extracs using antibodies raised against recombinant PPAR/β-galactosidase fusion proteins revealed a pronounced increase in the amount of PPAR protein in response to fenofibrate treatment. This induction could also be confirmed at the level or RNA by Northern blotting. …

Male1303 BiochemistryReceptors Cytoplasmic and Nuclear10050 Institute of Pharmacology and ToxicologyPeroxisome proliferator-activated receptorPPARMicrobodiesPolymerase Chain ReactionBiochemistryPPAR agonist1307 Cell BiologyMiceCytosol1315 Structural BiologyFenofibrateStructural Biologychemistry.chemical_classificationMice Inbred BALB CFenofibrateOligodeoxyribonucleotidesPeroxisome proliferator-activated receptor alphaFusion proteinmedicine.drugmedicine.medical_specialtyPeroxisome proliferator-activated receptor gammamRNAMolecular Sequence DataBiophysicsPeroxisome ProliferationReceptors Cell Surface610 Medicine & healthBiology1311 GeneticsInternal medicine1312 Molecular BiologyGeneticsmedicineAnimalsNorthern blotMolecular BiologyAntibodyHypolipidemic compoundCell NucleusMessenger RNABase SequenceImmune SeraCell BiologyBlotting NorthernRatsMice Inbred C57BLEndocrinologychemistry570 Life sciences; biologyTranscription Factors1304 BiophysicsFEBS Letters
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Induction of cytochrome P450 isoenzymes in cultured precision-cut rat and human liver slices

1996

1. The effect of some xenobiotics on levels of selected cytochrome P450 (CYP) isoenzymes determined by Western immunoblotting and associated enzyme activities has been studied in 72-h cultured rat and human precision-cut liver slices. 2. In cultured rat liver slices, 0.5 mM sodium phenobarbitone (PB), 25 microM beta-naphthoflavone (BNF), and 20 micrograms/ml Aroclor 1254 (ARO) induced mixed-function oxidase enzyme activities. Western immunoblotting of liver slice microsomes was performed with antibodies to rat CYP1A2, 2B1/2 and 3A. Compared with 72-h control (dimethyl sulphoxide only treated) rat liver slice microsomes, PB induced CYP2B1/2 and 3A, BNF induced CYP1A2, and ARO induced CYP1A2,…

MaleAroclorsmedicine.medical_specialtyHealth Toxicology and MutagenesisToxicologyMicrobodiesBiochemistryIsozymeRats Sprague-DawleyClofibric AcidCytochrome P-450 Enzyme Systembeta-NaphthoflavoneCulture TechniquesInternal medicinemedicineAnimalsHumansEnzyme inducerBenzoflavonesPharmacologychemistry.chemical_classificationOxidase testbiologyFibric AcidsCytochrome P450General MedicineChlorodiphenyl (54% Chlorine)In vitroRatsIsoenzymesPyrimidinesEndocrinologyEnzymeLiverchemistryEnzyme InductionPhenobarbitalClofenapatebiology.proteinMicrosomeCiprofibratemedicine.drugXenobiotica
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Time-dependence and differential induction of rat and guinea pig peroxisomal beta-oxidation, palmitoyl-CoA hydrolase, cytosolic and microsomal epoxid…

1988

Fischer-344 rats and Hartley guinea pigs received a diet containing 0.01% (w/w), 0.05% (w/w), or 0.25% (w/w) of the hypolipidemic drug fenofibrate. Rats were treated for 4, 7, 14, or 21 days, and a clear dose-dependent and weak time-dependent increase in liver/body weight ratio was observed. The specific activity of peroxisomal beta-oxidation increased linearly with time at all concentrations used. A dose-dependent increase in cEH was observed, but the activity remained constant after treatment for 7 days. Enhancement of palmitoyl-CoA hydrolase was dose-dependent, but was similar at all 4 time points investigated. In contrast to the other enzyme activities, mEH was not or only minimally (le…

MaleCancer Researchmedicine.medical_specialtyTime FactorsTiadenolGuinea PigsBiologyMicrobodiesGuinea pigCytosolInternal medicineMicrosomesHydrolasemedicineAnimalsHypolipidemic Agentschemistry.chemical_classificationEpoxide HydrolasesClofibrateFenofibrateGeneral MedicineRats Inbred F344RatsPalmitoyl-CoA hydrolaseEnzymeEndocrinologyOncologychemistryBiochemistryPalmitoyl-CoA HydrolaseMicrosomal epoxide hydrolaseEnzyme InductionThiolester Hydrolasesmedicine.drugJournal of cancer research and clinical oncology
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Differential regulation by a peroxisome proliferator of the different multifunctional proteins in guinea pig: cDNA cloning of the guinea pig D-specif…

1998

After our previous report on the cloning of two cDNA species in guinea pig, both encoding the same hepatic 79 kDa multifunctional protein 1 (MFP-1) [Caira, Cherkaoui-Malki, Hoefler and Latruffe (1996) FEBS Lett. 378, 57-60], here we report the cloning of a cDNA encoding a second multifunctional peroxisomal protein (MFP-2) in guinea-pig liver. This 2356 nt cDNA encodes a protein of 735 residues (79.7 kDa) whose sequence shows 83% identity with rat MFP-2 [Dieuaide-Noubhani, Novikov, Baumgart, Vanhooren, Fransen, Goethals, Vandekerckhove, Van Veldhoven and Mannaerts (1996) Eur. J. Biochem. 240, 660-666]. In parallel, we studied the effect of ciprofibrate, a hypolipaemic agent also known as per…

MaleDNA ComplementaryTranscription GeneticGuinea PigsMolecular Sequence DataBiologyMicrobodiesBiochemistryEstradiol DehydrogenasesRats Sprague-DawleyGuinea pigClofibric AcidComplementary DNAGene expressionmedicineAnimalsAmino Acid SequenceRNA MessengerNorthern blotCloning MolecularEnoyl-CoA HydrataseMolecular BiologyHypolipidemic AgentsMessenger RNABase SequenceThiolaseFibric AcidsCell BiologyPeroxisomeMolecular biologyRatsGene Expression RegulationLiverBiochemistryCiprofibrateOxidoreductasesResearch Articlemedicine.drugBiochemical Journal
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Erucic acid metabolism in rat liver. A combined biochemical and radioautographical study.

1992

Metabolism of erucic acid was studied in rat liver in comparison with oleic acid in relation with diet lipids. Rats were fed for 3 or 60 days a balanced diet containing 30% of the calories of either rapeseed oil rich in erucic acid or sunflower seed oil rich in linoleic acid. They were intravenously injected with tritiated erucic or oleic acid. After 1 or 15 min, the radioactivity recovered in liver lipids was 9 to 26% whatever the diet or the acid injected. One minute after injection of erucic acid a high part of radioactivity was recovered in the free fatty acid fraction and as untransformed erucic acid. After 15 min the major part of radioactivity was recovered in the triacylglycerol fra…

MaleErucic AcidsRapeseedLinoleic acidOleic AcidsBiologyMicrobodiesLinoleic Acidchemistry.chemical_compoundDietary Fats UnsaturatedAnimalsFood scienceRats Wistarchemistry.chemical_classificationFatty acidGeneral MedicineMetabolismPeroxisomeMitochondriaRatsOleic acidKineticsMicroscopy ElectronchemistryBiochemistryLinoleic AcidsLiverErucic acidAutoradiographylipids (amino acids peptides and proteins)Sunflower seedOleic AcidArchives internationales de physiologie, de biochimie et de biophysique
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Regio- and stereo-selectivity in the induction of peroxisome proliferation by substituted hexanoic acids

1993

Summary Quantitative structure-activity relationship is an effective tool in order to predict drug potency. A similar approach is actually developed for peroxisome proliferation induced by substituted carboxylic acids issued from plasticizer metabolism in rats. The study is focused on acids found in rat urine after adipic diester dosings. Size, location of the substituted group and length of the chain have been studied. 3-D structure has also been taken in account for 2-ethyl hexanoic acids. The results obtained so far demonstrate that peroxisome proliferation potencies of the considered acids are modified according structure changes. At this time location of the group along the chain appea…

MaleHexanoic acidStereochemistryMolecular ConformationRegioselectivityPeroxisome ProliferationCell BiologyGeneral MedicineMetabolismBiologyMicrobodiesIn vitroRatsStructure-Activity Relationshipchemistry.chemical_compoundLiverBiochemistrychemistryIn vivoAnimalsStereoselectivityRats WistarSelectivityCaproatesCells CulturedBiology of the Cell
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Expression of liver peroxisomal proteins as compared to other organelle marker enzymes in rats treated with hypolipidemic agents.

1990

Abstract Peroxisome proliferation induced by 2 hypolipidemic agents (clofibrate and ciprofibrate) was studied in rats by complementary approaches, ie cell fractionation, electron microscopy, marker enzyme activities, immunoblotting and nucleic acid hybridization techniques. Administration of clofibrates for 2 and 52 weeks in doses of 500 ppm and 50 ppm respectively, or ciprofibrate for 2,28 and 52 weeks in doses of 250, 25 and 25 ppm respectively, did not alter the behavior of the peroxisomes after induction as shown by ultracentrifugation profiles. The peroxisome mass was increased as shown by the purification procedure. Specific enzymes (catalase and mostly cyanide insensitive palmitoyl C…

MaleImmunoblottingMolecular Sequence DataPeroxisome ProliferationMitochondrionCell FractionationMicrobodiesClofibric AcidOrganellemedicineAnimalsClofibrateRNA MessengerHypolipidemic AgentsOrganellesClofibratebiologyBase SequenceEndoplasmic reticulumFibric AcidsRats Inbred StrainsCell BiologyGeneral MedicinePeroxisomeMolecular biologyRats Inbred F344RatsBiochemistryLiverCatalasebiology.proteinCiprofibrateDNA Probesmedicine.drugBiology of the cell
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Copurification of dihydroxyacetone-phosphate acyl-transferase and other peroxisomal proteins from liver of fenofibrate-treated rats.

1997

Dihydroxyacetone-phosphate acyl-transferase (DHAP-AT), a peroxisomal membrane-bound enzyme that catalyzes the first step of ether-glycerolipid synthesis, was purified from liver of rats treated with fenofibrate, a peroxisome proliferator. The protocol first included isolation of peroxisomes, their purification through a discontinuous gradient and solubilization of membranes in CHAPS. DHAP-AT was further purified by four chromatographic steps, namely low-pressure size-exclusion, cation-exchange, hydroxylapatite and chromatofocusing. The chromatofocusing step led to a 4000-fold increase in the specific activity of DHAP-AT with respect to the liver homogenate with a yield of about 0.2%. Trypsi…

MaleMolecular Sequence DataBiochemistryMicrobodiesCopurificationchemistry.chemical_compoundFenofibrateProtein purificationAnimalsAmino Acid SequenceRats WistarPeptide sequenceDihydroxyacetone phosphatechemistry.chemical_classificationOxidase testChromatofocusingMembrane ProteinsGeneral MedicinePeroxisomeMolecular biologyRatsEnzymechemistryBiochemistryLiverSolubilitySequence AnalysisAcyltransferasesBiochimie
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An impaired peroxisomal targeting sequence leading to an unusual bicompartmental distribution of cytosolic epoxide hydrolase

1991

AbstractTo gain an understanding of the mechanism by which the subcellular distribution of cytosolic epoxide hydrolase (cEH) is directed, we have analyzed the carboxy terminal region of rat liver cEH by means of cDNA cloning to define the structure of its possible peroxisomal targeting sequence (PTS). Purified cEH was subjected to peptide analysis following endoproteinase Glu-C digestion and HPLC-separation of the fragments. The obtained sequence information was used to perform PCR experiments resulting in the isolation of a 680 bp cDNA clone encoding the carboxy terminus of cEH. The deduced amino acid sequence displays a terminal tripeptide Ser-Lys-Ile which is highly homologous to the PTS…

MaleSignal peptidePTSanimal structures1303 BiochemistryMolecular Sequence DataBiophysics10050 Institute of Pharmacology and Toxicology610 Medicine & healthTripeptideProtein Sorting SignalsBiologyMicrobodiesBiochemistryAmino acid sequence1307 Cell BiologyCytosol1315 Structural Biology1311 GeneticsStructural BiologyComplementary DNAGenetics1312 Molecular BiologyAnimalsCloning MolecularEpoxide hydrolaseMolecular BiologyPeptide sequenceEpoxide Hydrolaseschemistry.chemical_classificationBase SequencecDNA sequenceDNACell BiologyPeroxisomeMolecular biologyRatsIsoenzymesCytosolPCREnzymeLiverchemistryBiochemistrycEH570 Life sciences; biologyPeptide analysis1304 Biophysics
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