Search results for "Dative"

showing 10 items of 2381 documents

Versatile Electrochemical C-H Amination via Zincke Intermediates.

2015

Simply by applying electricity, the amination reaction of a broad variety of arenes, heteroarenes, and benzylic substrates is achieved. Pyridine serves as the nitrogen source and the intermediate cationic species are well-protected from over-oxidation.

Green chemistryChemistryCationic polymerizationGeneral ChemistryElectrochemical TechniquesElectrochemistryCarbonCatalysischemistry.chemical_compoundPyridineOrganic chemistryOxidative coupling of methaneNitrogen sourceOxidation-ReductionAminationCopperAminationHydrogenAngewandte Chemie (International ed. in English)
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Cover Picture: Metal‐ and Reagent‐Free Highly Selective Anodic Cross‐Coupling Reaction of Phenols (Angew. Chem. Int. Ed. 20/2014)

2014

Green chemistryInorganic chemistryINTGeneral ChemistryCatalysisCoupling reactionAnodeMetalchemistry.chemical_compoundchemistryvisual_artReagentvisual_art.visual_art_mediumOxidative coupling of methanePhenolsAngewandte Chemie International Edition
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Oxidative stress tolerance, adenylate cyclase, and autophagy are key players in the chronological life span of Saccharomyces cerevisiae during winema…

2012

Most grape juice fermentation takes place when yeast cells are in a nondividing state called the stationary phase. Under such circumstances, we aimed to identify the genetic determinants controlling longevity, known as the chronological life span. We identified commercial strains with both short (EC1118) and long (CSM) life spans in laboratory growth medium and compared them under diverse conditions. Strain CSM shows better tolerance to stresses, including oxidative stress, in the stationary phase. This is reflected during winemaking, when this strain has an increased maximum life span. Compared to EC1118, CSM overexpresses a mitochondrial rhodanese gene-like gene, RDL2, whose deletion lead…

Growth mediumMicrobial ViabilityEcologybiologyGene Expression ProfilingAutophagySaccharomyces cerevisiaeAdenylate kinaseWineSaccharomyces cerevisiaeProtein degradationbiology.organism_classificationApplied Microbiology and BiotechnologyCyclaseYeastchemistry.chemical_compoundOxidative StressBiochemistrychemistryStress PhysiologicalAutophagyMaximum life spanFood ScienceBiotechnologyAdenylyl Cyclases
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Inter-laboratory validation of procedures for measuring 8-oxo-7,8-dihydroguanine/8-oxo-7,8-dihydro-2’-deoxyguanosine in DNA.

2002

The aim of ESCODD, a European Commission funded Concerted Action, is to improve the precision and accuracy of methods for measuring 8-oxo-7,8-dihydroguanine (8-oxoGua) or the nucleoside (8-oxodG). On two occasions, participating laboratories received samples of different concentrations of 8-oxodG for analysis. About half the results returned (for 8-oxodG) were within 20% of the median values. Coefficients of variation (for three identical samples) were commonly around 10%. A sample of calf thymus DNA was sent, dry, to all laboratories. Analysis of 8-oxoGua/8-oxodG in this sample was a test of hydrolysis methods. Almost half the reported results were within 20% of the median value, and half …

GuanineAnalytical chemistryTest sensitivityThymus GlandSensitivity and SpecificityBiochemistryGas Chromatography-Mass SpectrometryMass SpectrometryOxidative dna damagechemistry.chemical_compound8 oxo 7 8 dihydroguanineAnimalsHumansEuropean commissionInter-laboratoryChromatography High Pressure LiquidChromatographyChemistry8 oxo 7 8 dihydro 2 deoxyguanosineDNAGeneral MedicineCattleBiomarkersDNAChromatography LiquidDNA Damage
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DNA damage by bromate: Mechanism and consequences

2005

Abstract Exposure of mammalian cells to bromate (BrO3−) generates oxidative DNA modifications, in particular 7,8-dihydro-8-oxo-guanine (8-oxoG). The damaging mechanism is quite unique, since glutathione, which is protective against most oxidants and alkylating agents, mediates a metabolic activation, while bromate itself does not react directly with DNA. Neither enzymes nor transition metals are required as catalysts in the activation. The ultimate DNA damaging species has not yet been established, but experiments under cell-free conditions suggest that neither molecular bromine nor reactive oxygen species such as superoxide, hydrogen peroxide or singlet oxygen are involved. Rather bromine …

GuanineCell SurvivalDNA damageHypochloriteToxicologymedicine.disease_causeMicechemistry.chemical_compoundCricetulusCell Line TumorCricetinaemedicineAnimalsHydrogen peroxideMicronuclei Chromosome-Defectivechemistry.chemical_classificationReactive oxygen speciesMicronucleus TestsDose-Response Relationship DrugBromatesSinglet oxygenSuperoxideBromatechemistryBiochemistryReactive Oxygen SpeciesOxidative stressDNA DamageMutagensToxicology
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Fanconi's anaemia cells have normal steady-state levels and repair of oxidative DNA base modifications sensitive to Fpg protein

1998

Abstract Cells from Fanconi's anaemia (FA) patients are abnormally sensitive to oxygen. However, a distinct genetic defect in either the cellular defence against reactive oxygen species (ROS) or in their metabolic generation has not been identified to date. Recently, the gene for the human 8-hydroxyguanine (8-oxoG) glycosylase, which removes this oxidative base modification from the genome, has been localized on chromosome 3p25, i.e., in the same region as the FA complementation group D (FAD) gene. We therefore studied the removal of photosensitization-induced 8-oxoG residues from the DNA of FA cells, using Fpg protein, the bacterial 8-oxoG glycosylase, to quantify the lesions by alkaline e…

GuanineDNA RepairLightDNA repairBiologyToxicologymedicine.disease_causechemistry.chemical_compoundFanconi anemiaGeneticsmedicineHumansN-Glycosyl HydrolasesMolecular BiologyGeneCells CulturedPhotosensitizing AgentsDNAmedicine.diseaseMolecular biologyNuclear DNAComplementationOxidative StressFanconi AnemiaDNA-Formamidopyrimidine GlycosylaseBiochemistrychemistryDNA glycosylaseCell DivisionOxidative stressDNAMutation Research/DNA Repair
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An oxidatively damaged G-quadruplex/hemin DNAzyme.

2020

International audience; Oxidative damage of guanine to 8-oxoguanine triggers a partial and variable loss of G-quadruplex/hemin DNAzyme activity and provides clues to the mechanistic origins of DNAzyme deactivation, which originates from an interplay between decreased G-quadruplex stability, lower hemin affinity and a modification of the nature of hemin binding sites.

GuanineGuanineDeoxyribozyme010402 general chemistryG-quadruplex01 natural sciencesCatalysisOxidative damage03 medical and health scienceschemistry.chemical_compoundMaterials Chemistrypolycyclic compoundsheterocyclic compoundsBinding site[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]030304 developmental biology0303 health sciencesMolecular StructureMetals and AlloysGeneral ChemistryDNA Catalyticequipment and supplies0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsG-QuadruplexeschemistryCeramics and CompositesBiophysicsOxidation-ReductionHeminChemical communications (Cambridge, England)
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tert-Butoxyl radicals generate mainly 7,8-dihydro-8-oxoguanine in DNA.

2000

Abstract Like hydroxyl radicals, alkoxyl radicals have been implicated in the generation of cellular oxidative DNA damage under physiological conditions; however, their genotoxic potential has not yet been established. We have analyzed the DNA damage induced by a photochemical source of tert- butoxyl radicals, the water soluble peroxy ester [4-( tert -butyldioxycarbonyl)benzyl]triethylammonium chloride (BCBT), using various repair endonucleases as probes. The irradiation (UV 360 ) of BCBT in the presence of bacteriophage PM2 DNA was found to generate a DNA damage profile that consisted mostly of base modifications sensitive to the repair endonuclease Fpg protein. Approximately 90% of the mo…

GuaninePyrimidineDNA damageStereochemistryUltraviolet RaysRadicalMolecular Sequence DataBiologyToxicologymedicine.disease_causechemistry.chemical_compoundBacterial ProteinsGeneticsmedicinePentosyltransferasesMolecular BiologyBase SequencePoint mutationEscherichia coli ProteinsMutagenesisCorticoviridaeProteins8-OxoguanineQuaternary Ammonium CompoundsBiochemistrychemistryMutagenesisAlcoholsDNA ViralOxidative stressDNADNA DamagePlasmidsMutation research
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Extracellular cyclic GMP and its derivatives GMP and guanosine protect from oxidative glutamate toxicity.

2013

Cell death in response to oxidative stress plays a role in a variety of neurodegenerative diseases and can be studied in detail in the neuronal cell line HT22, where extracellular glutamate causes glutathione depletion by inhibition of the glutamate/cystine antiporter system xc(-), elevation of reactive oxygen species and eventually programmed cell death caused by cytotoxic calcium influx. Using this paradigm, we screened 54 putative extracellular peptide or small molecule ligands for effects on cell death and identified extracellular cyclic guanosine monophosphate (cGMP) as a protective substance. Extracellular cGMP was protective, whereas the cell-permeable cGMP analog 8-pCPT-cGMP or the …

GuanosineGlutamic AcidBiologymedicine.disease_causeReal-Time Polymerase Chain ReactionNeuroprotectionCell LineCellular and Molecular Neurosciencechemistry.chemical_compoundMiceExtracellularmedicineAnimalsPhosphorylationCyclic guanosine monophosphateCyclic GMPGuanosineGlutamate receptorPhosphodiesteraseCell BiologyGlutathioneOxidative StressBiochemistrychemistryCalciumExtracellular SpaceProtein KinasesOxidative stressNeurochemistry international
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Chemical, Antioxidant and Biological Studies of Brassica incana subsp. raimondoi (Brassicaceae) Leaf Extract

2023

Brassica incana subsp. raimondoi is an endemic taxon present in a restricted area located on steep limestone cliffs at an altitude of about 500 m a.s.l. in eastern Sicily. In this research, for the first time, studies on the phytochemical profile, the antioxidant properties in cell-free and cell-based systems, the cytotoxicity on normal and cancer cells by 3-(4,5-Dimethylthiazol-2-yl)-2,5-Diphenyltetrazolium Bromide (MTT) assay, and on Artemia salina Leach, were performed. The total phenolic, flavonoid, and condensed tannin contents of the leaf hydroalcoholic extract were spectrophotometrically determined. Ultra-performance liquid chromatography—tandem mass spectrometer (UPLC-MS/MS) analysi…

H2O2Pharmaceutical SciencecabbageHPLC/DADAnalytical ChemistryDrug Discoverybotanicalsoxidative stressSettore BIO/15 - Biologia Farmaceutica<i>Artemia salina</i> LeachPhysical and Theoretical ChemistrypolyphenolsArtemia salina Leachnutraceuticalsoxidative streH<sub>2</sub>O<sub>2</sub>Settore BIO/02 - Botanica SistematicaOrganic ChemistrycarotenoidsROSH2 O2carotenoidbotanicalpolyphenolcabbagesUPLC-MS/MSChemistry (miscellaneous)Molecular MedicinenutraceuticalMolecules
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