Search results for "Deoxyribonucleases"

showing 10 items of 72 documents

C4 DNA RFLP reference typing report.

1990

One hundred and three individual DNA samples (including 23 families) were studied at the gene level during the reference typing of the fourth component of human complement at the VIth Complement Genetics Workshop in Mainz (1989). All samples were analyzed with the restriction enzyme Taq I and with two DNA probes recognizing the 5' ends of both C4 genes and the two adjacent 21-hydroxylase genes. This RFLP is informative for the number of C4 genes as well as for their respective gene size. We found a high degree of variation regarding the number of C4 genes, i.e. haplotypes with 1-3 structural C4 genes of 16 or 22 kb size. By correlating these haplotypes to the complotypes obtained by protein…

ImmunologyBiologyMajor Histocompatibility Complexchemistry.chemical_compoundHumansTypingDeoxyribonucleases Type II Site-SpecificGeneAllelesGeneticsModels GeneticHybridization probeHaplotypeGenetic VariationComplement C4HematologyDNARestriction enzymeBlotting SouthernchemistryHaplotypesMultilocus sequence typingSteroid 21-HydroxylaseRestriction fragment length polymorphismDNAPolymorphism Restriction Fragment LengthComplement and inflammation
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Bgl II restriction fragment length polymorphism of human complement C4A gene coincides with BF*F allele of factor B.

1988

ImmunologyImmunogeneticsBiologyComplement factor Bchemistry.chemical_compoundRestriction mapBacterial ProteinsGeneticsHumansAlleleDeoxyribonucleases Type II Site-SpecificGeneAllelesSouthern blotGeneticsRecombination GeneticEnzyme PrecursorsPolymorphism GeneticComplement C4aNucleic Acid HybridizationComplement C4DNA Restriction EnzymesMolecular biologychemistryHaplotypesRestriction fragment length polymorphismDNAPolymorphism Restriction Fragment LengthComplement Factor BImmunogenetics
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The elemental role of iron in DNA synthesis and repair

2017

Iron is an essential redox element that functions as a cofactor in many metabolic pathways. Critical enzymes in DNA metabolism, including multiple DNA repair enzymes (helicases, nucleases, glycosylases, demethylases) and ribonucleotide reductase, use iron as an indispensable cofactor to function. Recent striking results have revealed that the catalytic subunit of DNA polymerases also contains conserved cysteine-rich motifs that bind iron–sulfur (Fe/S) clusters that are essential for the formation of stable and active complexes. In line with this, mitochondrial and cytoplasmic defects in Fe/S cluster biogenesis and insertion into the nuclear iron-requiring enzymes involved in DNA synthesis a…

Iron-Sulfur Proteins0301 basic medicineDNA RepairDNA polymeraseDNA damageDNA repairIronBiophysicsDNA repairEukaryotic DNA replicationSaccharomyces cerevisiaeBiochemistryDNA GlycosylasesBiomaterials03 medical and health sciencesRibonucleotide ReductasesHumansProtein–DNA interactionRibonucleotide reductaseReplication protein Achemistry.chemical_classificationDNA ligaseDeoxyribonucleasesDNA synthesis030102 biochemistry & molecular biologybiologyIron deficiencyDNA HelicasesMetals and AlloysHelicaseDNAYeast030104 developmental biologyIron cofactorBiochemistrychemistryChemistry (miscellaneous)biology.proteinIron-sulfur clusterMetallomics
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Photolysis of N-hydroxpyridinethiones: a new source of hydroxyl radicals for the direct damage of cell-free and cellular DNA.

1996

N-Hydroxypyridine-2-thione (2-HPT), known to release hydroxyl radicals on irradiation with visible light, and two related compounds, viz. N-hydroxypyridine-4-thione (4-HPT) and N-hydroxyacridine-9-thione (HAT), were tested for their potency to induce DNA damage in L1210 mouse leukemia cells and in isolated DNA from bacteriophage PM2. DNA single-strand breaks and modifications sensitive to various repair endonucleases (Fpg protein, endonuclease III, exonuclease III, T4 endonuclease V) were quantified. Illumination of cell-free DNA in the presence of 2-HPT and 4-HPT gave rise to damage profiles characteristic for hydroxyl radicals, i.e. single-strand breaks and the various endonuclease-sensit…

LightDNA damageCell SurvivalPyridinesRadicalFree radical damage to DNABiologychemistry.chemical_compoundEndonucleaseMiceSuperoxidesGeneticsTumor Cells CulturedAnimalsBacteriophagesLeukemia L1210chemistry.chemical_classificationExonuclease IIIReactive oxygen speciesEndodeoxyribonucleasesPhotolysisSinglet OxygenHydroxyl RadicalThionesDNAOxygenBiochemistrychemistryBiophysicsbiology.proteinAcridinesHydroxyl radicalReactive Oxygen SpeciesDNAResearch ArticleDNA Damage
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Acid Dnase Activities In Peripheral, Mononuclear Blood Cells: A Possible Parameter To Detect Proliferating Cell Populations

1992

After electrophoresis in DNA -containing polyacrylamide gels, two acid DNase activities can be detected in peripheral, mononuclear cells of the human blood. One of these acid DNase activities correlates with cell proliferation; its isoelectrical point is at pI 7.4. By means of this DNase activity, a quantity of less than 1% leukemic cells can be detected. The increased acid DNase activity can indicate the proliferation of malignant cell populations and possibly the proliferation of cell populations during immunological reactions

LymphocyteCellBiologyLymphocyte ActivationIsozymePeripheral blood mononuclear cellGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundReference ValuesmedicineHumansDeoxyribonuclease IILymphocyteschemistry.chemical_classificationDeoxyribonucleasesCell growthfood and beveragesDNAHydrogen-Ion ConcentrationPrecursor Cell Lymphoblastic Leukemia-LymphomaIsoenzymesmedicine.anatomical_structureEnzymeBiochemistrychemistryElectrophoresis Polyacrylamide GelIsoelectric FocusingDNAZeitschrift für Naturforschung C
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Reversibly stable thiopolyplexes for intracellular delivery of genes.

2006

Novel polyaspartamide non-viral carriers for gene therapy were synthesized by introducing, on the same polymer backbone, positively charged groups, for electrostatic interactions with DNA, and thiol groups for the formation of disulfide bridges between polymer chains. The introduction of thiols was aimed to have a vector with low redox potential sensitivity: disulfide crosslinking in fact, being stable in extracellular environment, allowed either to have stable complexes in plasma, that can protect DNA from metabolism, or to be reduced inside the cell, where the excess of glutathion in reduced form maintains a low redox potential. The consequent destabilization of the complex after disulfid…

Magnetic Resonance SpectroscopyLightStereochemistryCell SurvivalPolymersPharmaceutical ScienceElectrophoretic Mobility Shift AssayGene deliveryTransfectionchemistry.chemical_compoundGene DeliveryMiceDynamic light scatteringGenes ReporterCell Line TumorAnimalsScattering RadiationElectrophoretic mobility shift assayDisulfidesSulfhydryl CompoundsLuciferaseschemistry.chemical_classificationthiopolycationsEndodeoxyribonucleasesLuminescent AgentsGenetic transferCationic polymerizationProteinsDNAChromatography Ion ExchangeCombinatorial chemistrychemistrypolyaspartammideAgarose gel electrophoresisThiolPeptidesOxidation-ReductionDNAJournal of controlled release : official journal of the Controlled Release Society
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Deoxyribonuclease activities in human leukemic cells and mouse lymphoblasts

1975

Summary The deoxyribonuclease activities from human lymphocytes have been compared with the activities from acute lymphocytic leukemic cells and mouse leukemic cells L5178Y using the in situ detection of deoxyribonucleases in DNA-containing polyacrylamide gels following their separation by micro-disc-electrophoresis. A neutral deoxyribonuclease activity is completely missing in leukemic cells of untreated patients while a group of acid deoxyribonuclease activities is increased. A similar deoxyribonuclease pattern can be seen in L5178Y cells. Under medical treatment the increment of the acid deoxyribonuclease activities disappears and the neutral deoxyribonuclease activity reappears.

MaleAcid deoxyribonucleaseCancer ResearchDeoxyribonucleasesLeukemia ExperimentalTime FactorsMedical treatmentLymphoblastDeoxyribonucleaseBiologyDeoxyribonuclease activityMolecular biologyLeukemia LymphoidIsoenzymesMiceOncologyBiochemistryAnimalsHumansFemaleLymphocytesDeoxyribonucleasesCancer Letters
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α,β-poly(asparthylhydrazide)–glycidyltrimethylammonium chloride copolymers (PAHy–GTA): novel polymers with potential for DNA delivery

2001

Hydrophilic polycations form complexes when mixed with plasmids. Following functionalisation with glycidyltrimethylammonium chloride (GTA) alpha,beta-poly(asparthylhydrazide) (PAHy), a water-soluble synthetic macromolecule, becomes polycationic and potentially useful for systemic gene delivery. Initially the biocompatibility of PAHy and PAHy-GTA derivatives with different degrees of positive charge substitution were studied and it was shown that PAHy-GTA was neither haemolytic nor cytotoxicity up to 1 mg/ml. After intravenous injection (125)I-labelled PAHy-GTA derivative containing 46 mol% (PAHy-GTA(b)) of trimethylammonium groups did not accumulate in the liver (4.1+/-0.9% of the recovered…

MaleBiocompatibilityPolymersStereochemistryPharmaceutical ScienceGene deliveryTransfectionHemolysisDosage formMicechemistry.chemical_compoundTumor Cells CulturedAnimalsTissue DistributionRats WistarCytotoxicityPolyethylenimineEndodeoxyribonucleasesfungiDNAGenetic TherapyTransfectionRatsQuaternary Ammonium CompoundschemistryEpoxy CompoundsPeptidesDrug carrierMacromoleculeNuclear chemistryJournal of Controlled Release
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Toluidine Blue Test for Sperm DNA Integrity and Elaboration of Image Cytometry Algorithm

2003

Background: Sperm DNA integrity is of paramount importance in the prognosis of fertility. We applied image cytometry to a toluidine blue (TB) test we recently proposed. Methods: Sperm samples from 33 men were assayed for standard sperm parameters and classified as normal or abnormal. Sperm smears were subjected to the TB test, DNA denaturation testing with acridine orange (AO), and terminal deoxyuridine triphosphate biotin nick end labeling (TUNEL). In CCD image analysis, TB-stained sperm cell heads were microscopically assigned to one of four color groups (dark, blue, light violet, and light blue). The optical densities of 6,600 cells in green and red CCD images were used to elaborate an a…

MaleBiophysicsBiologyPathology and Forensic Medicinechemistry.chemical_compoundEndocrinologyIn Situ Nick-End LabelingIn Situ Nick-End LabelingHumansToluidineTolonium ChlorideImage CytometryMicroscopyTUNEL assayDeoxyribonucleasesMicroscopy Videourogenital systemAcridine orangeSperm dnaCell BiologyHematologyDNASpermSpermatozoaAcridine OrangeChromatinchemistryImage CytometryCytometryAlgorithmAlgorithms
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Molecular mechanisms of NET formation and degradation revealed by intravital imaging in the liver vasculature

2015

AbstractNeutrophil extracellular traps (NETs) composed of DNA decorated with histones and proteases trap and kill bacteria but also injure host tissue. Here we show that during a bloodstream infection with methicillin-resistant Staphylococcus aureus, the majority of bacteria are sequestered immediately by hepatic Kupffer cells, resulting in transient increases in liver enzymes, focal ischaemic areas and a robust neutrophil infiltration into the liver. The neutrophils release NETs into the liver vasculature, which remain anchored to the vascular wall via von Willebrand factor and reveal significant neutrophil elastase (NE) proteolytic activity. Importantly, DNase although very effective at D…

MaleMethicillin-Resistant Staphylococcus aureusExtracellular TrapsProteasesHydrolasesKupffer CellsGeneral Physics and AstronomyBacteremiaBiologyHepatic Veinsmedicine.disease_causeExtracellular TrapsGeneral Biochemistry Genetics and Molecular BiologyHistonesMiceHepatic ArteryVon Willebrand factorProtein-Arginine Deiminase Type 4von Willebrand FactormedicineAnimalsMice KnockoutMultidisciplinaryDeoxyribonucleasesGeneral ChemistryNeutrophil extracellular trapsStaphylococcal Infectionsmedicine.disease3. Good healthCell biologyHistoneLiverNeutrophil InfiltrationStaphylococcus aureusNeutrophil elastaseImmunologybiology.proteinLeukocyte ElastaseInfiltration (medical)
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