Search results for "Phosphofructokinase-1"

showing 8 items of 8 documents

Effects of power training on mechanical efficiency in jumping.

2003

The present study investigates the effects of power training on mechanical efficiency (ME) in jumping. Twenty-three subjects, including ten controls, volunteered for the study. The experimental group trained twice a week for 15 weeks performing various jumping exercises such as drop jumps, hurdle jumps, hopping and bouncing. In the maximal jumping test, the take-off velocity increased from 2.56 (0.24) m.s(-1) to 2.77 (0.18) m.s(-1) ( P<0.05). In the submaximal jumping of 50% of the maximum, energy expenditure decreased from 660 (110) to 502 (68) J.kg(-1).min(-1) ( P<0.001) while, simultaneously, ME increased from 37.2 (8.4)% to 47.4 (8.2)% ( P<0.001). Some muscle enzyme activities of the ga…

AdultMalemedicine.medical_specialtyPhysiologyMovementPhysical ExertionElectromyographyCitrate (si)-Synthasemedicine.disease_causeGastrocnemius musclechemistry.chemical_compoundJumpingAnimal scienceOxygen ConsumptionPhosphofructokinase-1 Muscle TypePhysiology (medical)Lactate dehydrogenasemedicineCitrate synthaseHumansOrthopedics and Sports MedicineExercise physiologyMuscle SkeletalExerciseAerobic capacityCitrate (si)-SynthaseLegPhysical Education and Trainingmedicine.diagnostic_testbiologyChemistryElectromyographyPublic Health Environmental and Occupational Health3-Hydroxyacyl CoA DehydrogenasesGeneral MedicineAdaptation PhysiologicalEnergy TransferPhysical therapybiology.proteinEuropean journal of applied physiology
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A Genome-wide Association Study of Early-onset Breast Cancer Identifies PFKM as a Novel Breast Cancer Gene and Supports a Common Genetic Spectrum for…

2014

Abstract Early-onset breast cancer (EOBC) causes substantial loss of life and productivity, creating a major burden among women worldwide. We analyzed 1,265,548 Hapmap3 single-nucleotide polymorphisms (SNP) among a discovery set of 3,523 EOBC incident cases and 2,702 population control women ages ≤ 51 years. The SNPs with smallest P values were examined in a replication set of 3,470 EOBC cases and 5,475 control women. We also tested EOBC association with 19,684 genes by annotating each gene with putative functional SNPs, and then combining their P values to obtain a gene-based P value. We examined the gene with smallest P value for replication in 1,145 breast cancer cases and 1,142 control …

EpidemiologyPopulationGenome-wide association studySingle-nucleotide polymorphismBreast NeoplasmsBiologyPolymorphism Single NucleotideArticle03 medical and health sciences0302 clinical medicineBreast cancerSDG 3 - Good Health and Well-beingPhosphofructokinase-1 Muscle TypeGenetic predispositionmedicineBiomarkers TumorSNPHumansGenetic Predisposition to DiseaseeducationGene030304 developmental biologyGenetics0303 health scienceseducation.field_of_studyMiddle Agedmedicine.disease3. Good healthOncologyPFKM030220 oncology & carcinogenesisCase-Control StudiesFemaleGenome-Wide Association Study
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6-Phosphofructokinase from frog skeletal muscle: purification and properties

1990

HexosediphosphatesMusclesPhosphofructokinase-1Rana temporariaFrog skeletal muscleBiochemistryCitric AcidEnzyme ActivationKineticsEnzyme activatorchemistry.chemical_compoundAdenosine TriphosphatechemistryBiochemistryAnimalsCitratesPhosphofructokinase 1HexosediphosphatesCitric acidAdenosine triphosphatePhosphofructokinaseBiochemical Society Transactions
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Photoaffinity Labeling and Photoaffinity Cross-Linking of Phosphofructokinase-1 from Saccharomyces cerevisiae by 8-Azidoadeninenucleotides

2001

Phosphofructokinase-1 from Saccharomyces cerevisiae is composed of four alpha- and four beta-subunits, each of them carrying catalytic and regulatory bindings sites for MgATP. In this paper, various photoaffinity labels, such as 8-azidoadenosine 5'-triphosphate, 8-azido-1,N6-ethenoadenosine 5'-triphosphate, and 8-N3-3'(2')-O-biotinyl-8-azidoadenosine 5'-triphosphate have been used to study their interaction with the enzyme in the dark and during irradiation. All nucleotidetriphosphates function as phosphate donor forming fructose 1,6-bisphosphate from fructose 6-phosphate. However, the kinetic analysis revealed distinctly differences between them. Photolabeling causes a decrease in enzyme a…

LightPhosphofructokinase-1Blotting WesternSaccharomyces cerevisiaeBiophysicsPhotoaffinity LabelsSaccharomyces cerevisiaePhotoaffinity LabelsBiochemistryAdenosine TriphosphateFructosediphosphatesChymotrypsinMagnesiumPhosphofructokinase 1Molecular Biologychemistry.chemical_classificationGel electrophoresisBinding SitesAffinity labelingbiologyPhotoaffinity labelingFructosephosphatesDarknessbiology.organism_classificationEnzyme assayKineticsProtein SubunitsCross-Linking ReagentsEnzymechemistryBiochemistrybiology.proteinElectrophoresis Polyacrylamide GelArchives of Biochemistry and Biophysics
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Regulatory properties of 6-phosphofructokinase and control of glycolysis in boar spermatozoa.

2007

Glycolysis is crucial for sperm functions (motility and fertilization), but how this pathway is regulated in spermatozoa is not clear. This prompted to study the location and the regulatory properties of 6-phosphofructokinase (PFK, EC 2.7.1.11), the most important element for control of glycolytic flux. Unlike some other glycolytic enzymes, PFK showed no tight binding to sperm structures. It could readily be extracted from ejaculated boar spermatozoa by sonication and was then chromatographically purified. At physiological pH, the enzyme was allosterically inhibited by near-physiological concentrations of its co-substrate ATP, which induced co-operativity, i.e. reduced the affinity for the …

MaleEmbryologySwinePhosphofructokinase-1Allosteric regulationImmunoblottingMotilityBiologychemistry.chemical_compoundEndocrinologyAdenosine TriphosphateAllosteric RegulationFructosediphosphatesAnimalsGlycolysisCitrateschemistry.chemical_classificationObstetrics and GynecologyFructoseCell BiologyHydrogen-Ion ConcentrationSpermImmunohistochemistrySpermatozoaAdenosine MonophosphateEnzymeReproductive MedicinechemistryBiochemistryFlagellaElectrophoresis Polyacrylamide GelFlux (metabolism)AcrosomeGlycolysisPhosphofructokinaseReproduction (Cambridge, England)
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Antagonistic effects of hypertrehalosemic neuropeptide on the activities of 6-phosphofructo-1-kinase and fructose-1,6-bisphosphatase in cockroach fat…

2001

Hypertrehalosemic neuropeptides from the corpora cardiaca such as the decapeptide Bld HrTH bring about a profound switch in the metabolic activity of cockroach fat body during which production of the blood sugar trehalose is stimulated while the catabolism of carbohydrate (glycolysis) is inhibited. The mechanisms of the metabolic switch are not fully understood. Incubation of isolated fat body from the cockroach Blaptica dubia with 10(-8) M Bld HrTH, for 10-60 min, stimulated glycogen breakdown and increased the content of the substrates of both the glycolytic enzyme 6-phosphofructo-1-kinase (PFK, EC 2.7.1.11) and the gluconeogenic enzyme fructose-1,6-bisphosphatase (FBPase, EC 3.1.3.11) in…

Malemedicine.medical_specialtyBlaptica dubiaPhosphofructokinase-1Fat BodyFructose 16-bisphosphataseCockroachesIn Vitro TechniquesBiologyBiochemistryGene Expression Regulation Enzymologicchemistry.chemical_compoundInternal medicineFructosediphosphatesmedicineAnimalsGlycolysisPhosphofructokinase 1Molecular BiologyCatabolismNeuropeptidesTrehaloseFructosebiology.organism_classificationAdenosine MonophosphateFructose-BisphosphataseKineticsEndocrinologyFructose 26-bisphosphatechemistryBiochemistryInsect HormonesInsect Sciencebiology.proteinGlycogenPhosphofructokinaseInsect Biochemistry and Molecular Biology
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Control of glycolysis in vertebrate skeletal muscle during exercise

1996

The gastrocnemius muscle of the frog (Rana temporaria) has a high capacity for anaerobic glycolysis from glycogen. Glycolytic metabolites and effectors of phosphofructokinase, particularly the hexose bisphosphates, were followed in muscle during exercise (swimming between 5 s and 5 min), recovery (rest for up to 2 h after 5 min of swimming), and repeated exercise (swimming for up to 60 s after 2 h of recovery). Glycogen phosphorylase and phosphofructokinase were swiftly activated with exercise. The hexose bisphosphates followed markedly different time courses. Fructose 1,6-bisphosphate was transiently increased in both exercise and repeated exercise. This appears to be an effect rather tha…

Malemedicine.medical_specialtyPhysiologyPhosphofructokinase-1Physical ExertionRana temporariaBiologychemistry.chemical_compoundGlycogen phosphorylasePhysiology (medical)Internal medicinemedicineAnimalsGlycolysisHexosephosphatesExercise physiologyMuscle SkeletalGlycogenSkeletal muscleHindlimbEnzyme Activationmedicine.anatomical_structureEndocrinologychemistryBiochemistryAnaerobic glycolysisGlycolysisAnaerobic exerciseGlycogenPhosphofructokinaseAmerican Journal of Physiology-Regulatory, Integrative and Comparative Physiology
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Fructose 2,6-bisphosphate and glycolytic flux in skeletal muscle of swimming frog

1990

AbstractGlycolytic flux in skeletal muscle is controlled by 6-phosphofructokinase but how this is achieved is controversial. Brief exercise (swimming) in frogs caused a dramatic increase in the phosphofructokinase activator, fructose 2,6-bisphosphate, in working muscle. The kinetics of phosphofructokinase suggest that in resting muscle, the enzyme is inhibited by ATP plus citrate and that the increase in fructose 2,6-bisphosphate is part of the mechanism to activate phosphofructokinase when exercise begins. When exercise was sustained, fructose 2,6-bisphosphate in muscle was decreased as was the rate of lactate accumulation. Glycolytic flux and the content of fructose 2,6-bisphosphate appea…

medicine.medical_specialtyPhosphofructokinase-1Rana temporariaBiophysicsSkeletal musclePhysical exerciseMotor ActivityBiologyBiochemistrychemistry.chemical_compoundStructural BiologyInternal medicineFructosediphosphatesGeneticsmedicineAnimalsGlycolysisLactic AcidExerciseMolecular BiologySwimmingchemistry.chemical_classificationMusclesSkeletal muscleFructoseCell BiologyEnzyme ActivationKineticsFructose 26-bisphosphateEndocrinologymedicine.anatomical_structureEnzymeBiochemistrychemistryFructose 26-bisphosphateLactates6-PhosphofructokinaseAnuraHexosediphosphatesGlycolysisFlux (metabolism)PhosphofructokinaseFEBS Letters
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