Search results for "Pyrimidine dimer"

showing 10 items of 30 documents

Photoinduced DNA Lesions in Dormant Bacteria: The Peculiar Route Leading to Spore Photoproducts Characterized by Multiscale Molecular Dynamics

2020

International audience; Some bacterial species enter a dormant state in the form of spores to resist to unfavorable external conditions. Spores are resistant to a wide series of stress agents, including UV radiation, and can last for tens to hundreds of years. Due to the suspension of biological functions, such as DNA repair, they accumulate DNA damage upon exposure to UV radiation. Differently from active organisms, the most common DNA photoproducts in spores are not cyclobutane pyrimidine dimers, but rather the so‐called spore photoproducts. This noncanonical photochemistry results from the dry state of DNA and its binding to small, acid‐soluble proteins that drastically modify the struct…

Molecular modelDNA repairDNA damageUltraviolet RaysPyrimidine dimerMolecular Dynamics Simulation010402 general chemistry01 natural sciencesMolecular mechanicsCatalysischemistry.chemical_compound[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]Spores Bacterial010405 organic chemistryChemistryOrganic ChemistryfungiGeneral ChemistryDNA0104 chemical sciencesSporePyrimidine DimersBiophysicsNucleic acidDNADNA Damage
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On the Intrinsically Low Quantum Yields of Pyrimidine DNA Photodamages: Evaluating the Reactivity of the Corresponding Minimum Energy Crossing Points

2020

The low quantum yield of photoformation of cyclobutane pyrimidine dimers and pyrimidine-pyrimidone (6-4) adducts in DNA bases is usually associated with the presence of more favorable nonreactive decay paths and with the unlikeliness of exciting the system in a favorable conformation. Here, we prove that the ability of the reactive conical intersection to bring the system either back to the absorbing conformation or to the photoproduct must be considered as a fundamental factor in the low quantum yields of the mentioned photodamage. In support of the proposed model, the one order of magnitude difference in the quantum yield of formation of the cyclobutane thymine dimer with respect to the t…

PyrimidineUltraviolet RaysQuantum yieldPyrimidine dimer010402 general chemistryPhotochemistry01 natural sciencesNucleobaseAdductCyclobutanechemistry.chemical_compound0103 physical sciencesComputer SimulationGeneral Materials SciencePhysical and Theoretical Chemistry010304 chemical physicsChemistryDNAConical intersectionPhotochemical Processes0104 chemical sciences3. Good healthThymineEstructura químicaPyrimidine DimersFisicoquímica
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Molecular Basis of DNA Photodimerization: Intrinsic Production of Cyclobutane Cytosine Dimers

2008

Based on CASPT2 results, the present contribution establishes for the first time that cytosine photodimer formation (CC) is mediated along the triplet and singlet manifold by a singlet-triplet crossing, (T1/S0)X, and by a conical intersection, (S1/S0)CI, respectively. The former can be accessed in a barrierless way from a great variety of photochemical avenues and exhibits a covalent single bond between the ethene C6-C6' carbon atoms of each monomer. The efficiency of the stepwise triplet mechanism, however, would be modulated by the effectiveness of the intersystem crossing mechanism. The results provide the grounds for the understanding of the potential photogenotoxicity of endogenous and…

Quantitative Biology::BiomoleculesPhotochemistryUltraviolet RaysChemistryDNAGeneral ChemistryConical intersectionPhotochemistryBiochemistryCatalysisCyclobutaneCytosinechemistry.chemical_compoundColloid and Surface ChemistryIntersystem crossingPyrimidine DimersCovalent bondExcited stateNucleic Acid ConformationSingle bondSinglet stateDimerizationCytosineDNA DamageJournal of the American Chemical Society
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Protective effect of trehalose-loaded liposomes against UVB-induced photodamage in human keratinocytes

2014

Trehalose, a naturally occurring non-reducing disaccharide, is known to act as a major protein stabilizer that can reduce ultraviolet B (UVB)-induced corneal damage when topically applied to the eye. However, due to the low skin permeability of trehalose, which makes the development of topical formulations difficult, its use as a skin photoprotective agent has been limited. Previous findings demonstrated that liposomes may significantly improve the intracellular delivery of trehalose. Therefore, the present study aimed to assess the protective effects of trehalose-loaded liposomes against UVB-induced photodamage using the immortalized human keratinocyte cell line, HaCaT. The effects were al…

Ultraviolet radiationKeratinocytesCienciaPyrimidine dimerBiologyPharmacologyPhotoprotective agentGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundmedicineGeneral Pharmacology Toxicology and PharmaceuticsCiencias médicasLiposomeintegumentary systemGeneral NeurosciencePiel - InvestigaciónTrehaloseArticlesGeneral Medicinemedicine.diseaseTrehaloseProtein carbonylationCyclobutane pyrimidine dimersHaCaTchemistryApoptosisPhotoprotectionImmunology8-hydroxy-2'-deoxyguanosineSkin cancerBiomedical Reports
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Photoinduced DNA Lesions in Dormant Bacteria. The Peculiar Route Leading to Spore Photoproduct Unraveled by Multiscale Molecular Dynamics

2020

Some bacterial species enter a dormant state in the form of spores to resist to unfavorable external conditions. Spores are resistant to a wide series of stress agents, including UV radiation, and can last for tens to hundreds of years. Due to the suspension of biological functions such as DNA repair, they accumulate DNA damage upon exposure to UV radiation. Differently from active organisms, the most common DNA photoproduct in spores are not cyclobutane pyrimidine dimers, but rather the so-called spore photoproduct. This non-canonical photochemistry results from the dry state of DNA and the binding to small acid soluble proteins that drastically modify the structure and photoreactivity of …

biologyDNA repairChemistryDNA damagefungiPyrimidine dimerbiology.organism_classificationSporechemistry.chemical_compoundMolecular dynamicsNucleic acidBiophysicsBacteriaDNA
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EFFECTS OF SENSITIZED AND UNSENSITIZED LONGWAVE U.V.-IRRADIATION ON THE SOLUTION PROPERTIES OF DNA

1971

— Two types of photoreactions occur in DNA irradiated in aqueous systems with longwave u.v.-light (Λ > 295 nm), namely, (a) thymine dimerization, and (b) single- and double-strand breakage of the sugar phosphate backbone; these two reactions are unrelated. The presence of acetophenone as a photosensitizer caused an increase in dimerization by a factor of 16, and an increase in single-strand breaks by a factor of 4. The number of thymine dimers per single-strand break is about 100 in the sensitized and 25 in the unsensitized reaction. The alteration of the radius of gyration of DNA molecules is that expected by the degradation observed. At the same time the change in hyperchromicity is very …

chemistry.chemical_classificationCarbon IsotopesAqueous solutionSugar phosphatesUltraviolet RaysHyperchromicityPyrimidine dimerDNAGeneral MedicinePhotochemistryBiochemistryThymineRadiation Effectschemistry.chemical_compoundchemistryEscherichia coliRadius of gyrationPhotosensitizerPhysical and Theoretical ChemistryThymineDNAPhotochemistry and Photobiology
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Photosensitization of DNA by β-carbolines: Kinetic analysis and photoproduct characterization

2012

β-Carbolines (βCs) are a group of alkaloids present in many plants and animals. It has been suggested that these alkaloids participate in a variety of significant photosensitized processes. Despite their well-established natural occurrence, the main biological role of these alkaloids and the mechanisms involved are, to date, poorly understood. In the present work, we examined the capability of three important βCs (norharmane, harmane and harmine) and two of its derivatives (N-methyl-norharmane and N-methyl-harmane) to induce DNA damage upon UV-A excitation, correlating the type and extent of the damage with the photophysical characteristics and DNA binding properties of the compounds. The r…

chemistry.chemical_classificationReactive oxygen speciesPhotosensitizing AgentsMolecular StructurebiologySuperoxideSinglet oxygenDNA damageStereochemistryOrganic ChemistryPyrimidine dimerDNAPhotochemical ProcessesBiochemistrySuperoxide dismutaseKineticschemistry.chemical_compoundHarminechemistrybiology.proteinPhysical and Theoretical ChemistryHarmaneReactive Oxygen SpeciesCarbolinesThymidineOrganic & Biomolecular Chemistry
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[39] DNA damage induced by ultraviolet and visible light and its wavelength dependence

2000

Publisher Summary DNA damage induced by solar radiation in mammalian cells consists largely of two types of modification: pyrimidine dimers and oxidative modifications. Pyrimidine dimmers that can be subdivided into cyclobutane pyrimidine dimmers, (CPDs) and (6-4) photoproducts are the characteristic and most abundant modifications after direct excitation of DNA, although they can also be formed indirectly by energy transfer from other excited molecules such as carbonyl compounds. Oxidative DNA damage, which includes various pyrimidine and purine modifications, sites of base loss (AP sites), and strand breaks, is generated in only low yield after direct excitation of DNA (except at very sho…

chemistry.chemical_compoundchemistryPyrimidineSinglet oxygenDNA damagemedicinePyrimidine dimerFree radical damage to DNAmedicine.disease_causePhotochemistryDNAUltravioletCyclobutane
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Cyclobutane Pyrimidine Photodimerization of DNA/RNA Nucleobases in the Triplet State

2010

The photoinduced formation of cyclobutane pyrimidine dimers in the triplet excited state of the DNA/RNA pyrimidine nucleobases pairs has been studied at the CASPT2 level of theory. A stepwise mechanism through the triplet state of the homodimer is proposed for the pairs of nucleobases cytosine, thymine, and uracil involving a singlet−triplet crossing intermediary structure of biradical character representing the most favorable triplet state conformation of the nucleobases as found in the DNA environment. The efficiency of the mechanism will be modulated by two factors: the effectiveness of the triplet−triplet energy transfer process from a donor photosensitizer molecule, which relates to th…

congenital hereditary and neonatal diseases and abnormalitiesPhysics::Biological PhysicsQuantitative Biology::BiomoleculesPyrimidineStereochemistryPyrimidine dimerUracilPhotochemistryQuantitative Biology::GenomicsNucleobaseThymineCyclobutanechemistry.chemical_compoundIntersystem crossingchemistryGeneral Materials SciencePhysical and Theoretical ChemistryCytosineThe Journal of Physical Chemistry Letters
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UV-B exposure causes DNA damage and changes in protein expression in northern pike (Esox lucius) posthatched embryos.

2012

The ongoing anthropogenically caused ozone depletion and climate change has increased the amount of biologically harmful UV-B radiation, which is detrimental to fish in embryonal stages. The effects of UV-B radiation on the levels and locations of DNA damage manifested as cyclobutane pyrimidine dimers (CPDs), heat shock protein 70 (HSP70) and p53 protein in newly hatched embryos of pike were examined. Pike larvae were exposed in the laboratory to current and enhanced doses of UV-B radiation. UV-B exposure caused the formation of CPDs in a fluence rate-dependent manner, and the CPDs were found deeper in the tissues with increasing fluence rates. UV-B radiation induced HSP70 in epidermis, and…

p53Embryo NonmammalianDNA damagehaukiUltraviolet RaysBlotting WesternNorthern pikeGene ExpressionPyrimidine dimerBiologyEyeBiochemistryProtein expressionultravioletti-B-säteilyDNA-vauriotAnimalsHSP70 Heat-Shock ProteinsPhysical and Theoretical ChemistryEsoxHSP70kalan alkiopoikasetPikecomputer.programming_languageEpidermis (botany)BrainEmbryoGeneral MedicineAnatomybiology.organism_classificationMolecular biologyultraviolet-BImmunohistochemistryfish embryosHsp70Pyrimidine DimersEsocidaeDNA damageEpidermisTumor Suppressor Protein p53computerDNA DamagePhotochemistry and photobiology
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