Search results for "PHOSPHATASE"

showing 10 items of 499 documents

High risk of bacterobilia in advanced experimental chronic fasciolosis

2006

Fasciolosis is recognized as an important human disease. Wistar rats experimentally infected with Fasciola hepatica were examined using data obtained in the advanced chronic state of the disease (200, 300 and 400 days post-infection, dpi). Pigment stones (PS) and bile specimens were collected. The same procedure was applied in control rats. Liver tests were determined using stored serum samples. Bacteriological bile culture revealed viable bacteria (Escherichia coli, 45% of cases, Enterococcus faecalis, 45% and Klebsiella pneumoniae, 10%). The presence of bacterobilia was associated with liver serum enzymes, including aspartate aminotransferase (AST or SGOT), alanine aminotransferase (ALT o…

Fascioliasismedicine.medical_specialtyKlebsiella pneumoniaeBiliary Tract DiseasesVeterinary (miscellaneous)HelminthiasisBiologyGastroenterologyEnterococcus faecalisSepsisInternal medicineEnterococcus faecalisEscherichia colimedicineAnimalsBileHumansFasciola hepaticaFasciolosisRats WistarBiliary TractBacterial InfectionsFasciola hepaticamedicine.diseasebiology.organism_classificationCulture MediaRatsDisease Models AnimalKlebsiella pneumoniaeInfectious DiseasesLiverInsect ScienceChronic DiseaseImmunologyAlkaline phosphataseParasitologyBacteriaActa Tropica
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Non-syndromic Mitral Valve Dysplasia Mutation Changes the Force Resilience and Interaction of Human Filamin A

2018

International audience; Filamin A (FLNa), expressed in endocardial endothelia during fetal valve morphogenesis, is key in cardiac development. Missense mutations in FLNa cause non-syndromic mitral valve dysplasia (FLNA-MVD). Here, we aimed to reveal the currently unknown underlying molecular mechanism behind FLNA-MVD caused by the FLNa P637Q mutation. The solved crystal structure of the FLNa3-5 P637Q revealed that this mutation causes only minor structural changes close to mutation site. These changes were observed to significantly affect FLNa's ability to transmit cellular force and to interact with its binding partner. The performed steered molecular dynamics simulations showed that signi…

Filamins[SDV]Life Sciences [q-bio]Protein Tyrosine Phosphatase Non-Receptor Type 12Heart Valve DiseasesMutation MissenseMorphogenesisProtein tyrosine phosphataseMolecular Dynamics SimulationBiologyFilaminta3111ArticleFLNA-MVD03 medical and health sciencessteered molecular dynamics simulationsStructural Biologymechanical forcesmedicineHumansMitral valve prolapseMissense mutationFLNAmolekyylidynamiikkasydäntauditCell adhesionMolecular Biology030304 developmental biologyX-ray crystallography0303 health sciencesBinding Sites030302 biochemistry & molecular biologyta1182filamiinitprotein tyrosine phosphatase 12medicine.disease3. Good healthCell biologyFilamin AMutation (genetic algorithm)cardiovascular systemMitral Valveproteiinitmitral valve prolapseröntgenkristallografiaProtein Binding
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Fructose-1,6-Bisphosphate Protects Hippocampal Rat Slices from NMDA Excitotoxicity

2019

Effects of fructose 1,6-bisphosphate (F-1,6-P2) towards N-methyl-d-aspartate NMDA excitotoxicity were evaluated in rat organotypic hippocampal brain slice cultures (OHSC) challenged for 3 h with 30 &mu

Fructose 16-bisphosphateExcitotoxicityFructose-bisphosphate aldolaseorganotypic hippocampal brainslice culturesmedicine.disease_causeHippocampuslcsh:Chemistrychemistry.chemical_compoundenergymetabolismFructose-Bisphosphate Aldolaseenergy metabolismfructose-16-bisphosphatelcsh:QH301-705.5Spectroscopy<i>N</i>-methyl-<span style="font-variant: small-caps">d</span>-aspartatebiologyChemistryorganotypic hippocampal brain slice culturesGlyceraldehyde-3-Phosphate DehydrogenasesGeneral MedicineComputer Science ApplicationsFructose-BisphosphataseNeuroprotective AgentsNMDA receptorexcitotoxicityPhosphofructokinaseN-methyl-d-aspartatemedicine.medical_specialtyN-MethylaspartateFructose 16-bisphosphataseCatalysisArticleInorganic ChemistryNecrosisInternal medicinemitochondrial dysfunctionmedicineAnimalsPhysical and Theoretical ChemistryRats WistarMolecular BiologySettore BIO/10 - BIOCHIMICAOrganic ChemistryAldolase AMetabolismPurine NucleosidesRatsEndocrinologylcsh:Biology (General)lcsh:QD1-999Phosphofructokinases6-bisphosphatebiology.proteinfructose-1; 6-bisphosphate; N-methyl-d-aspartate; excitotoxicity; energymetabolism; mitochondrial dysfunction; organotypic hippocampal brainslice culturesfructose-1
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A novel method for determination of inorganic polyphosphates using the fluorescent dye fura-2.

1997

A method for determining inorganic polyphosphate, which is based on the Mn2+-induced quenching of the fluorescence of the calcium indicator fura-2, is described. The effect of Mn2+ ions on fura-2 fluorescence is gradually abolished in the presence of increasing concentrations of polyphosphate; this allows the quantification both of synthetic polyphosphates and of the naturally occurring polymer isolated from tissues or cells. The described method has some advantages compared to conventional procedures for detection of polyphosphates based on the metachromatic effect on toluidine blue. It can be applied for the determination of pyrophosphate, tripolyphosphate and other short-chain polyphosph…

Fura-2Inorganic chemistryBiophysicsBiochemistryPyrophosphateFluorescencechemistry.chemical_compoundPolyphosphatesAnimalsHumansToluidineMolecular BiologyFluorescent DyesPyrophosphataseManganeseQuenching (fluorescence)ChromatographyPolyphosphateMetachromasiaCell BiologyFluorescenceRatsSpectrometry FluorescencechemistryFura-2HeLa CellsAnalytical biochemistry
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Analysis of Chemical and Biochemical Parameters of Petrol-Contaminated Soil after Biostimulation with an Enzyme Reagent

2020

This study aimed to assess the effect of petrol and the Fyre Zyme reagent on selected chemical and biochemical properties of loamy sand. The experiment was conducted under laboratory conditions. First, petrol was introduced into the soil at doses of 0 and 50 g k-1dry matter (DM). Next, 6% Fyre-Zyme enzyme reagent solution was added to the samples contaminated and uncontaminated with petrol, in the following combinations: 0 (control), once at 40 cm3 kg&ndash

Fyre-ZymeBioengineeringDehydrogenase010501 environmental scienceslcsh:Chemical technology01 natural scienceslcsh:ChemistryBiostimulationChemical Engineering (miscellaneous)lcsh:TP1-1185hydrocarbonsphosphatasesGasoline0105 earth and related environmental sciencesTotal organic carbonChemistryorganic carbonProcess Chemistry and Technologydehydrogenasessoil remediation04 agricultural and veterinary sciencesContaminationSoil contaminationnitrogen totallcsh:QD1-999ReagentEnvironmental chemistryLoam040103 agronomy & agriculture0401 agriculture forestry and fisheriesProcesses
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Binding and/or hydrolysis of purine‐based nucleotides is not required for IM30 ring formation

2021

IM30, the inner membrane-associated protein of 30 kDa, is conserved in cyanobacteria and chloroplasts. Although its exact physiological function is still mysterious, IM30 is clearly essential for thylakoid membrane biogenesis and/or dynamics. Recently, a cryptic IM30 GTPase activity has been reported, albeit thus far no physiological function has been attributed to this. Yet, it is still possible that GTP binding/hydrolysis affects formation of the prototypical large homo-oligomeric IM30 ring and rod structures. Here, we show that the Synechocystis sp. PCC 6803 IM30 protein in fact is an NTPase that hydrolyzes GTP and ATP, but not CTP or UTP, with about identical rates. While IM30 forms lar…

GTP'Genetic VectorsBiophysicsGene ExpressionGTPaseRing (chemistry)ThylakoidsBiochemistrySubstrate Specificity03 medical and health sciencesAdenosine TriphosphateBacterial ProteinsStructural BiologyEscherichia coliGeneticsNucleotideddc:610Cloning MolecularMolecular BiologyEnzyme Assays030304 developmental biologychemistry.chemical_classification0303 health sciencesbiologyChemistryHydrolysis030302 biochemistry & molecular biologySynechocystisSynechocystisMembrane ProteinsCell BiologyNucleoside-Triphosphatasebiology.organism_classificationRecombinant ProteinsKineticsMicroscopy ElectronThylakoidMembrane biogenesisBiophysicsGuanosine TriphosphateBiogenesisProtein BindingFEBS Letters
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Oxidative stress inhibits IFN-α-induced antiviral gene expression by blocking the JAK–STAT pathway

2006

Abstract BACKGROUND/AIMS: Unresponsiveness to IFN-alpha is common in chronic hepatitis C. Since conditions associated with an increased oxidative stress (advanced age, steatosis, fibrosis, iron overload, and alcohol consumption) reduce the likelihood of response, we hypothesized that oxidative stress may affect the antiviral actions of IFN-alpha. METHODS: We examined in a human hepatocellular carcinoma cell line (Huh-7) the effect of hydrogen peroxide (H2O2), as a generator of oxidative stress, on the IFN-alpha signaling pathway. RESULTS: Pretreatment of Huh-7 cells with 0.5-1 mM H2O2 resulted in the suppression of the IFN-alpha-induced antiviral protein MxA and of IRF-9 mRNA expression. Th…

Gene Expression Regulation ViralMyxovirus Resistance ProteinsCarcinoma HepatocellularBlotting WesternAntiviral proteinProtein tyrosine phosphataseInterferon alpha-2Biologymedicine.disease_causechemistry.chemical_compoundGTP-Binding ProteinsCell Line TumormedicineHumansRNA NeoplasmHepatologyTyk-2Reverse Transcriptase Polymerase Chain ReactionSTATLiver NeoplasmsInterferon-alphaJAK-STAT signaling pathwayTyrosine phosphorylationHydrogen PeroxideJanus Kinase 1Flow CytometryInterferon-Stimulated Gene Factor 3 gamma SubunitRecombinant ProteinsIFN-aJAK-1Oxidative StressSTAT Transcription FactorsHydrogen peroxide; IFN-a; STAT; JAK-1; Tyk-2chemistryImmunologySTAT proteinCancer researchSignal transductionTyrosine kinaseOxidative stressSignal TransductionJournal of Hepatology
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Interaction mechanism of endogenous PP2A inhibitor protein ENSA with PP2A

2022

The vast diversity of protein phosphatase 2A (PP2A) holoenzyme composition ensures its multifaceted role in the regulation of cellular growth and signal transduction. In several pathological conditions, such as cancer, PP2A is inhibited by endogenous inhibitor proteins. Several PP2A inhibitor proteins have been identified, one of which is α-endosulfine (ENSA). ENSA inhibits PP2A activity when it is phosphorylated at Ser67 by Greatwall (Gwl) kinase. The role of ENSA in PP2A inhibition is rather well characterized, but knowledge of the mechanism of inhibition is scarce. In this study, we have performed comprehensive structural characterization of ENSA, and its interaction with PP2A A- and var…

Gene isoformMitosisEndogenymacromolecular substancesProtein Serine-Threonine KinasesPP2A inhibitor protein010402 general chemistry01 natural sciencesBiochemistryenvironment and public health03 medical and health sciencesX-Ray DiffractionNeoplasmsScattering Small AngleHumansProtein Phosphatase 2DPsPhosphorylationNMR-spektroskopiaMolecular BiologyNuclear Magnetic Resonance Biomolecular030304 developmental biologyinhibiittoritsoluviestintä0303 health sciencesChemistryKinaseCell growthCell CycleCell BiologyProtein phosphatase 2Inhibitor proteinSAXSPhosphoproteinsNMR3. Good health0104 chemical sciencesCell biologyPP2Aenzymes and coenzymes (carbohydrates)ENSAPhosphorylationIntercellular Signaling Peptides and ProteinsproteiinitSignal transductionMicrotubule-Associated ProteinsProtein Processing Post-TranslationalSignal TransductionFEBS Journal
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A bio-imitating approach to fabricate an artificial matrix for cartilage tissue engineering using magnesium-polyphosphate and hyaluronic acid

2016

Here we describe an artificial cartilage-like material based on a hyaluronic acid-Mg/Ca-polyphosphate paste (HA-aMg/Ca-polyP-p) that is fabricated from a water-soluble Na-salt of energy-rich inorganic polyphosphate (polyP) and soluble hyaluronic acid in the presence of water-insoluble CaCO3. The resulting material, after conversion of Na-polyP into the less soluble Mg/Ca-salt consisting of amorphous Mg/Ca-polyP microparticles, was found to mimic the physiological cartilage tissue and to bind Ca2+ ions present in the synovial fluid. After the Mg2+/Ca2+ exchange and water extrusion, the polyP becomes more stable, but is still susceptible to hydrolytic cleavage by the alkaline phosphatase (ALP…

General Chemical EngineeringPolyphosphateCartilage0206 medical engineering02 engineering and technologyGeneral ChemistryOsteoarthritisMatrix (biology)021001 nanoscience & nanotechnologymedicine.disease020601 biomedical engineeringchemistry.chemical_compoundmedicine.anatomical_structurechemistryHyaluronic acidmedicineBiophysicsSynovial fluidAlkaline phosphatase0210 nano-technologyAggrecanRSC Advances
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Heterometallic Titanium-Organic Frameworks as Dual Metal Catalysts for Synergistic Non-Buffered Hydrolysis of Nerve Agent Simulants

2020

Heterometallic metal-organic frameworks (MOFs) can offer important advantages over their homometallic counterparts to enable targeted modification of their adsorption, structural response, electronic structure, or chemical reactivity. However, controlling metal distribution in these solids still remains a challenge. The family of mesoporous titanium-organic frameworks, MUV-101(M), displays heterometallic TiM2 nodes assembled from direct reaction of Ti(IV) and M(II) salts. We use the degradation of nerve agent simulants to demonstrate that only TiFe2 nodes are capable of catalytic degradation in non-buffered conditions. By using an integrative experimental-computational approach, we rational…

General Chemical Engineeringchemistry.chemical_element02 engineering and technology010402 general chemistryHeterogeneous catalysis01 natural sciencesBiochemistryCatalysisMetalchemistry.chemical_compoundHydrolysisMaterials ChemistryEnvironmental ChemistrySynergistic catalysisLewis acids and basesBimetallic stripBiochemistry (medical)General ChemistryPurple acid phosphatases021001 nanoscience & nanotechnologyCombinatorial chemistry0104 chemical scienceschemistryvisual_artvisual_art.visual_art_mediumChemical stabilityTrimesic acid0210 nano-technologyBrønsted–Lowry acid–base theoryTitanium
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