Search results for "Isozyme"

showing 10 items of 102 documents

Separation by FPLC chromatofocusing of UDP-glucosyltransferases from three developmental stages of Drosophila melanogaster.

1997

Variation of UDP-glucosyltransferase activity, during Drosophila melanogaster development, was analyzed. The endogenous metabolite xanthurenic acid and the xenobiotic compounds 1-naphthol and 2-naphthol were used as substrates. Developmentally regulated differences were observed for the three substrates, suggesting the presence of UDP-glucosyltransferase isoenzymes. This was further confirmed by FPLC chromatofocusing on a Mono P column: seven peaks of UDP-glucosyltransferase activity (pHs: ≥6.3, 5.8, 5.5, 4.9, 4.5, 4.2, ≤4.0) with either single or overlapping substrate specificity were detected. A single xanthurenic acid:UDP-glucosyltransferase activity (pl 5.8) was found throughout develop…

PhysiologyMetaboliteOvipositionBiochemistryIsozymeGene Expression Regulation EnzymologicSubstrate Specificitychemistry.chemical_compoundGlucosyltransferasesAnimalsXanthurenic acidChromatography High Pressure LiquidbiologyChromatofocusingGene Expression Regulation DevelopmentalFast protein liquid chromatographyGeneral Medicinebiology.organism_classificationIsoenzymesDrosophila melanogasterchemistryBiochemistryGlucosyltransferasesInsect ScienceChromatography GelFemaleDrosophila melanogasterXenobioticArchives of insect biochemistry and physiology
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Esterase inhibition by synergists in the western flower thrips Frankliniella occidentalis.

2010

BACKGROUND: Western flower thrips (WFT), Frankliniella occidentalis (Pergande), is among the most important crop pests in the south-eastern region of Spain. Its increasing resistance to insecticides constitutes a serious problem, and understanding the mechanisms involved is therefore of great interest. Use of synergists to inhibit the enzymes involved in insecticide detoxification is widely used to determine their responsibility for insecticide resistance. However, they do not always act as intended or expected, and caution must be exercised when interpreting synergist results. RESULTS: Laboratory-selected strains of WFT were used to analyse the effects of the synergists piperonyl butoxide …

Piperonyl butoxideInsecticidesTime FactorsMethiocarbIsozymeEsteraseToxicologyInsecticide Resistancechemistry.chemical_compoundPyrethrinsAnimalsEnzyme InhibitorsIncubationEnzyme Assayschemistry.chemical_classificationbiologyOrganothiophosphatesThysanopteraEsterasesPesticide SynergistsGeneral Medicinebiology.organism_classificationEnzyme assayWestern flower thripsEnzyme ActivationIsoenzymesEnzymechemistryMethiocarbInsect Sciencebiology.proteinCarbamatesAgronomy and Crop SciencePest management science
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The formation of hybrid complexes between isoenzymes of glyceraldehyde‐3‐phosphate dehydrogenase regulates its aggregation state, the glycolytic acti…

2019

The glycolytic enzyme glyceraldehyde‐3‐phosphate dehydrogenase (GAPDH) has been traditionally considered a housekeeping protein involved in energy generation. However, evidence indicates that GAPDHs from different origins are tightly regulated and that this regulation may be on the basis of glycolysis‐related and glycolysis‐unrelated functions. In Saccharomyces cerevisiae, Tdh3 is the main GAPDH, although two other isoenzymes encoded by TDH1 and TDH2 have been identified. Like other GAPDHs, Tdh3 exists predominantly as a tetramer, although dimeric and monomeric forms have also been isolated. Mechanisms of Tdh3 regulation may thus imply changes in its oligomeric state or be based in its abil…

Saccharomyces cerevisiae Proteinslcsh:BiotechnologySaccharomyces cerevisiaeMicrobiologiaBioengineeringDehydrogenaseSaccharomyces cerevisiaeProtein aggregationApplied Microbiology and BiotechnologyBiochemistryIsozyme03 medical and health scienceslcsh:TP248.13-248.65Tdh2Tdh1Tdh3Ceramide synthaseResearch ArticlesGlyceraldehyde 3-phosphate dehydrogenase030304 developmental biologySphingolipids0303 health sciencesbiology030306 microbiologyChemistryGlyceraldehyde-3-Phosphate Dehydrogenasesbiology.organism_classificationLipidsSphingolipidYeastIsoenzymesMetabolismBiochemistrybiology.proteinGlyceraldehyde-3-Phosphate Dehydrogenase (Phosphorylating)Protein aggregationEnzimsGlycolysisFlux (metabolism)Research ArticleBiotechnologyMicrobial Biotechnology
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A study on 3‐deoxy‐D‐arabino‐heptulosonic Acid 7‐Phospate Synthase in Higher Plants. The existence of three isoenzymes in Pisum sativum

1976

SativumbiologyBiochemistryATP synthaseChemistryBotanybiology.proteinPlant Sciencebiology.organism_classificationIsozymeEcology Evolution Behavior and SystematicsPisumBerichte der Deutschen Botanischen Gesellschaft
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Comparative study of the isozyme variation of genus Centaurea in Sicily and South Italy

2010

Settore BIO/01 - Botanica GeneraleGenetic diversity Centaurea IsozymesSettore BIO/02 - Botanica Sistematica
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Isozyme investigation on some taxa of Mediterranean Centaurea (Compositae)

2009

Settore BIO/01 - Botanica GeneraleSettore BIO/02 - Botanica SistematicaCentaurea genetic diversity isozyme analysis weeds
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Genetic variation patterns in some groups of Centaurea (Asteraceae) in Italy

2012

In the current work the data of the isozyme analysis of all the twenty studied Italian Centaurea taxa were compared. They belong to Centaurea parlatoris, C. cineraria, C. tenorei and C. jacea groups. The following parameters of the genetic variability were considered: the total number of the alleles, the mean number of alleles per locus (A), the mean percentage of polymorphic loci (P95), the expected heterozygosity (He) that is a measure of the intra-population diversity, the Wright’s fixation index (F) and inbreeding coefficient (FIS) that are measures for the deviation from the Hardy-Weinberg equilibrium. The present study contributes to insight some aspects of the genetic diversity relat…

Settore BIO/01 - Botanica GeneraleSettore BIO/02 - Botanica SistematicaCentaurea isozyme analysis genetic diversity
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Intracellular compartmentation and regulation of two shikimate dehydrogenase isoenzymes in Pisum sativum

1974

Summary Pea seeds as well as sprouts and roots contain two isoenzymes of shikimate dehydrogenase. Both isoenzymes can be separated by Polyacrylamide gel electrophoresis as well as through ammonium sulfate fractionation. The molecular weight of both isoenzymes are the same although the net electric charge is different. The Km value for isoenzyme 1 is 3,5 × 10 −4 and the Km value for isoenzyme 2 is 1,67 × 10 −4 M. 3,4-dihydroxybenzoic acid, 3,5-dihydroxybenzoic acid, gallic acid, anthranilic acid and p-methoxycinnamic acid inhibited both isoenzymes competitively. Anthranlic acid showed the largest affinity to both isoenzymes. M-methoxycinnamic acid and m-nitrocinnamic acid inhibited both isoe…

Shikimate dehydrogenaseGeneral MedicineBiologybiology.organism_classificationMolecular biologyIsozymePisumchemistry.chemical_compoundCytosolchemistryBiochemistryAnthranilic acidMicrobodyGallic acidPolyacrylamide gel electrophoresisZeitschrift für Pflanzenphysiologie
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Ribonuclease H levels in herpes simplex virus-infected cells.

1980

Two forms of ribonuclease H (RNase H) have been identified both in uninfected and Herpes Simplex virus (HSV-)infected BHK cells. Identical RNase H species were detected in control- as well as in infected cells. RNase H I and II have not been found to be associated both with host cell DNA polymerase alpha and beta and HSV-induced DNA polymerase. Infection of BHK cells with HSV type 1 does not lead to a pronounced alteration of RNase H II activity but to an increase (3-fold) of the extractable RNase H I activity. RNase H I activity increases to a maximum between 8-10 hours p.i.; the bulk of HSV-DNA synthesis occurs between 6-8 hours p.i. From these experiments we draw the preliminary conclusi…

Simplexvirusfood.ingredientDNA polymerasevirusesPolynucleotidesmedicine.disease_causeKidneyIsozymeCell LineSubstrate SpecificityfoodRibonucleasesVirologyCricetinaeBaby hamster kidney cellmedicineAnimalsSimplexvirusRNase HbiologyGeneral MedicineVirologyMolecular biologyIsoenzymesMolecular WeightHerpes simplex virusCell culturePolynucleotideEthylmaleimideDNA Viralbiology.proteinArchives of virology
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Differential Enantioselectivity of Murine GlutathioneS-Transferase Isoenzymes in the Glutathione Conjugation ofTrans-3,4-dihydroxy-1,2-oxy- 1,2,3,4-t…

1998

Abstract The kinetics of the glutathione (GSH) conjugation of (+)- and (−)-enantiomers ofanti- as well assyn-3,4-dihydroxy-1,2-oxy-1,2,3,4-tetrahydrobenzo[c]phenanthrene (B[c]PDE) catalyzed by murine GSHS-transferase (GST) isoenzymes has been investigated. Murine GSTs exhibited significant differences in their enantioselectivity toward B[c]PDE stereoisomers. For example, while pi class isoenzyme mGSTP1-1 was virtually inactive toward stereoisomers with 1Sconfiguration [(−)-syn-and (+)-anti-B[c]PDE], these stereoisomers were good substrates for alpha class isoenzyme mGSTA1-2. When GST activity was measured as a function of varying B[c]PDE concentration (10–320 μM) at a fixed saturating conce…

StereochemistryKineticsBiophysicsAlpha (ethology)BiochemistryIsozymeCatalysisSubstrate SpecificityMicechemistry.chemical_compoundPiAnimalsheterocyclic compoundsMolecular BiologyCarcinogenGlutathione TransferaseStereoisomerismGlutathionePhenanthrenesPhenanthrenemusculoskeletal systemGlutathioneCarcinogens EnvironmentalIsoenzymesKineticschemistrysense organsEnantiomerArchives of Biochemistry and Biophysics
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