Search results for " dimer"

showing 10 items of 86 documents

Oxidative stress impairs the repair of oxidative DNA base modifications in human skin fibroblasts and melanoma cells.

2008

Irradiation of mammalian cells with solar light is associated with the generation of reactive oxygen species (ROS) and oxidative stress, which is mediated in part by endogenous photosensitizers absorbing in the visible range of the solar spectrum. Accordingly, oxidative DNA base modifications such as 7,8-dihydro-8-oxoguanine (8-oxoG) are the predominant types of DNA damage in cells irradiated at wavelengths >400 nm. We have analysed the repair of oxidative purine modifications in human skin fibroblasts and melanoma cells using an alkaline elution technique, both under normal conditions and after depletion of glutathione. Similar repair rates were observed in fibroblasts and melanoma cells f…

DNA RepairLightDNA damageUltraviolet RaysPyrimidine dimerOxidative phosphorylationBiologymedicine.disease_causeBiochemistrychemistry.chemical_compoundmedicineHumansMolecular BiologyMelanomaAgedSkinchemistry.chemical_classificationReactive oxygen speciesGuanosineCell BiologyBase excision repairGlutathioneMolecular biologyGlutathioneOxidative StresschemistryBiochemistryFemaleOxidative stressNucleotide excision repairDNA repair
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Influences of histone deacetylase inhibitors and resveratrol on DNA repair and chromatin compaction

2013

Accessibility of DNA is a prerequisite for both DNA damage and repair. Therefore, the chromatin structure is expected to have major impact on both processes, with opposite consequences for the stability of the genome. To analyse the influence of chromatin compaction on the generation and repair of various types of DNA modifications, we modulated the global chromatin structure of AS52 Chinese hamster ovary cells and HeLa cells by treatment with either histone deacetylase inhibitors or resveratrol and measured the repair kinetics of (i) pyrimidine dimers induced by ultraviolet B, (ii) oxidised purines generated by photosensitisation and (iii) single-strand breaks induced by H2O2, using an alk…

DNA RepairUltraviolet RaysDNA damageDNA repairHealth Toxicology and MutagenesisCarbazolesCHO CellsHydroxamic AcidsToxicologyChromatin remodelingCricetulusStilbenesHistone H2AGeneticsmedicineAnimalsDeoxyribonuclease IHumansDNA Breaks Single-StrandedGenetics (clinical)EpigenomicsbiologyChemistryMolecular biologyChromatinCell biologyProliferating cell nuclear antigenChromatinHistone Deacetylase InhibitorsButyratesTrichostatin APyrimidine DimersResveratrolbiology.proteinHeLa Cellsmedicine.drugMutagenesis
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c-Fos is required for excision repair of UV-light induced DNA lesions by triggering the re-synthesis of XPF

2006

Cells deficient in c-Fos are hypersensitive to ultraviolet (UV-C) light. Here we demonstrate that mouse embryonic fibroblasts lacking c-Fos (fos-/-) are defective in the repair of UV-C induced DNA lesions. They show a decreased rate of sealing of repair-mediated DNA strand breaks and are unable to remove cyclobutane pyrimidine dimers from DNA. A search for genes responsible for the DNA repair defect revealed that upon UV-C treatment the level of xpf and xpg mRNA declined but, in contrast to the wild type (wt), did not recover in fos-/- cells. The observed decline in xpf and xpg mRNA is due to impaired re-synthesis, as shown by experiments using actinomycin D. Block of xpf transcription resu…

DNA RepairUltraviolet RaysDNA repairDNA damageRNA StabilityGene ExpressionPyrimidine dimerBiologyCell LineMicechemistry.chemical_compoundTranscription (biology)Gene expressionGeneticsAnimalsDNA Breaks Single-StrandedRNA MessengerMolecular BiologyTranscription factorMice KnockoutGenetic Complementation TestGenes fosNuclear ProteinsDNAEndonucleasesMolecular biologyDNA-Binding ProteinsTranscription Factor AP-1chemistryPyrimidine DimersDNADNA DamageTranscription FactorsNucleotide excision repairNucleic Acids Research
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How DNA lesions are turned into powerful killing structures: Insights from UV-induced apoptosis

2008

Mammalian cells treated with ultraviolet (UV) light provide one of the best-known experimental systems for depicting the biological consequences of DNA damage. UV irradiation induces the formation of DNA photoproducts, mainly cyclobutane pyrimidine dimers (CPDs) and (6-4) pyrimidine-pyrimidone photoproducts [(6-4)PPs], that drastically impairs DNA metabolism, culminating in the induction of cell death by apoptosis. While CPDs are the most important apoptosis-inducing lesions in DNA repair proficient cells, recent data indicates that (6-4)PPs also signals for apoptosis in DNA repair deficient cells. The toxic effects of these unrepaired DNA lesions are commonly associated with transcription …

DNA ReplicationMAPK/ERK pathwayProgrammed cell deathBase SequenceTranscription GeneticUltraviolet RaysDNA repairDNA damageHealth Toxicology and MutagenesisMolecular Sequence DataApoptosisPyrimidine dimerBiologyCell biologychemistry.chemical_compoundchemistryBiochemistryApoptosisAutophagyGeneticsUltraviolet lightAnimalsHumansDNADNA DamageMutation Research/Reviews in Mutation Research
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Modulation of Base Excision Repair Alters Cellular Sensitivity to UVA1 but not to UVB¶

2007

Abstract Oxidative DNA damage has been implicated in some of the biological properties of UVA but so far not in the acute photosensitivity or cellular sensitivity. In contrast to pyrimidine dimers, oxidative DNA damage is predominantly processed by base excision repair (BER). In order to further clarify the role of oxidative DNA damage and its repair in the acute cellular response to UV light, we studied UVA1 and UVB sensitivities in three different cell model systems with modified BER. 8-Oxoguanine-DNA-glycosylase 1–/– (OGG1–/–) mouse embryonal fibroblasts and human fibroblasts in which BER was inhibited by incubation with methoxyamine were hypersensitive to UVA1, in particular to low dose…

DNA damageChinese hamster ovary cellCellPyrimidine dimerGeneral MedicineBase excision repairBiologyBiochemistryMolecular biologychemistry.chemical_compoundmedicine.anatomical_structurechemistryPhotosensitivityBiochemistryDownregulation and upregulationMethoxyaminemedicinePhysical and Theoretical ChemistryPhotochemistry and Photobiology
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Experimental and theoretical studies on thymine photodimerization mediated by oxidatively generated DNA lesions and epigenetic intermediates.

2020

[EN] Interaction of nucleic acids with light is a scientific question of paramount relevance not only in the understanding of life functioning and evolution, but also in the insurgence of diseases such as malignant skin cancer and in the development of biomarkers and novel light-assisted therapeutic tools. This work shows that the UVA portion of sunlight, not absorbed by canonical DNA nucleobases, can be absorbed by 5-formyluracil (ForU) and 5-formylcytosine (ForC), two ubiquitous oxidatively generated lesions and epigenetic intermediates present in living beings in natural conditions. We measure the strong propensity of these molecules to populate triplet excited states able to transfer th…

DNA damagePhotochemistryUltraviolet RaysBasesGeneral Physics and AstronomyPyrimidine dimer010402 general chemistry01 natural sciencesNucleobaseEpigenesis Geneticchemistry.chemical_compoundTriplet energy-transferCytosineQUIMICA ORGANICAMoleculeEpigeneticsPhysical and Theoretical ChemistryUracil010405 organic chemistryDimer formation0104 chemical sciencesThymineDynamicsDamagePhotophysicschemistryBiophysicsNucleic acidSunlightMechanismPhotosensitizationDimerizationOxidation-ReductionDNAThymineDNA DamagePhysical chemistry chemical physics : PCCP
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Specific detection of cyclobutane pyrimidine dimers in phytoplankton DNA by a non-radioactive assay based on T4-endonuclease V digestion.

2001

The effect of artificial and natural UV irradiation on DNA in marine phytoplankton Isochrysis galbana monoculture was investigated. The presence of cyclobutane pyrimidine dimers (CPDs) in unlabelled I. galbana DNA was detected by a non-radiometric alkaline filter elution assay after T4-endonuclease V digestion. The quantity of CPDs was estimated by alkaline agarose gel electrophoresis. Precise determination of the amount of DNA in the presence of I. galbana pigments was achieved by oxazole yellow homodimer (YOYO) dye. T4-endonuclease V-sensitive sites frequency (ESS/kb), measured after exposure to 2-40 kJ m(-2) of artificial UV light, increased in a dose-dependent manner. Twelve hours after…

Environmental EngineeringDNA RepairDNA damageDNA repairUltraviolet RaysPyrimidine dimerIsochrysis galbanachemistry.chemical_compoundPigmentDeoxyribonuclease (Pyrimidine Dimer)Viral ProteinsEnvironmental ChemistryWaste Management and DisposalEndodeoxyribonucleasesbiologyAlkaline filter elution; crude oil; DNA damage; phytoplankton; UV; sunlightbiology.organism_classificationPollutionPetroleumBiochemistrychemistryCell culturePyrimidine Dimersvisual_artAgarose gel electrophoresisPhytoplanktonvisual_art.visual_art_mediumSunlightBiological AssayDNADNA DamageThe Science of the total environment
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Crystal structure and Hirshfeld surface analysis of (E)-4-chloro-N-{2-[2-(4-nitro­benzyl­idene)hydrazin-1-yl]-2-oxoeth­yl}benzene­sulfonamide N,N-di­…

2018

Reaction of N-(4-chloro­benzene­sulfon­yl)glycinyl hydrazide with 4-nitro­benzaldehyde gives the N,N-di­methyl­formamide monosolvated N-acyl­hydrazone derivative, (E)-N-{2-[2-(4-nitro­benzyl­idene)- hydrazine-1-yl]-2-oxoeth­yl}-4-χhloro­benzene­sulfonamide. Rings of (10) and (11) graph-set motifs are formed in the crystal structure by N—H⋯O and C—H⋯O hydrogen bonds. The two-dimensional fingerprint (FP) plots for significant inter­molecular inter­actions indicate that the greatest contribution is from the O⋯H/H⋯O contacts (31.3%), corresponding to N⋯H⋯O/C⋯H⋯O inter­actions.

Formamidecrystal structureHydrazoneCrystal structureDihedral angle010402 general chemistry010403 inorganic & nuclear chemistryRing (chemistry)01 natural sciencesMedicinal chemistryResearch Communicationslcsh:Chemistrychemistry.chemical_compoundhydrazoneHirshfeld surface analysisGeneral Materials Sciencechemistry.chemical_classificationSchiff baseHydrogen bondinter­molecular hydrogen bondsAromaticityGeneral ChemistryCondensed Matter Physics0104 chemical sciencesintermolecular hydrogen bondslcsh:QD1-999chemistryinversion dimersActa Crystallographica Section E: Crystallographic Communications
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Heterodimerization of Two Pathological Mutants Enhances the Activity of Human Phosphomannomutase2

2015

The most frequent disorder of glycosylation is due to mutations in the gene encoding phosphomannomutase2 (PMM2-CDG). For this disease, which is autosomal and recessive, there is no cure at present. Most patients are composite heterozygous and carry one allele encoding an inactive mutant, R141H, and one encoding a hypomorphic mutant. Phosphomannomutase2 is a dimer. We reproduced composite heterozygosity in vitro by mixing R141H either with the wild type protein or the most common hypomorphic mutant F119L and compared the quaternary structure, the activity and the stability of the heterodimeric enzymes. We demonstrated that the activity of R141H/F119L heterodimers in vitro, which reproduces t…

Genetics and Molecular Biology (all)HeterozygoteProtein StructureGlycosylationMutantlcsh:MedicineGlucose-6-PhosphateBiologymedicine.disease_causeBiochemistryQuaternaryCongenital Disorders of GlycosylationProtein structuremedicineAlleles; Congenital Disorders of Glycosylation; Dimerization; Glucose-6-Phosphate; Glycosylation; Heterozygote; Humans; Mutation; Phosphorylation; Phosphotransferases (Phosphomutases); Protein Structure Quaternary; Agricultural and Biological Sciences (all); Biochemistry Genetics and Molecular Biology (all); Medicine (all)HumansPhosphorylationAlleleProtein Structure Quaternarylcsh:ScienceGeneAllelesMutationMultidisciplinaryMedicine (all)lcsh:RWild typeMolecular biologyEnzyme structureProteostasisAgricultural and Biological Sciences (all)heterodimresPhosphotransferases (Phosphomutases)Mutationlcsh:QCDG-PMM2DimerizationResearch ArticlePLOS ONE
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Anharmonicity modeling in hydrogen bonded solvent dimers

2021

Abstract Harmonic and anharmonic frequencies of dimers and mixed dimers of water, methanol and benzene were computed and the results were critically analysed to investigate the anharmonicity of the normal mode vibrations within density functional theory (DFT) with empirically included Grimme correction for dispersion (D3). From several options, the B3LYP-D3/6-31++G* level of theory was selected as a good compromise between accuracy and calculation speed, suitable for future modeling of larger solvent clusters. The obtained raw harmonic and anharmonic second-order perturbation theory of vibrational frequencies (VPT2) were additionally scaled using a two-range procedure (below and above 2000 …

Hydrogenchemistry.chemical_element02 engineering and technology010402 general chemistryDFT01 natural sciencesMolecular physicsQuality (physics)Normal modePhysics::Atomic and Molecular ClustersMaterials ChemistryVPT2Physics::Chemical PhysicsPhysical and Theoretical ChemistryPerturbation theorySpectroscopyPhysicsAnharmonicity021001 nanoscience & nanotechnologyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsFrequency scaling0104 chemical sciencesElectronic Optical and Magnetic MaterialsVibrationchemistrySolvent dimersHarmonicH-BondingDensity functional theoryAnharmonic vibrational frequencies0210 nano-technologyJournal of Molecular Liquids
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