Search results for "Oxidation-Reduction"

showing 10 items of 689 documents

Photoinduced intersystem crossing in DNA oxidative lesions and epigenetic intermediates

2020

[EN] The propensity of 5-formyluracil and 5-formylcytosine, i.e. oxidative lesions and epigenetic intermediates, in acting as intrinsic DNA photosensitizers is unraveled by using a combination of molecular modeling, simulation and spectroscopy. Exploration of potential energy surfaces and non-adiabatic dynamics confirm a higher intersystem crossing rate for 5-formyluracil, whereas the kinetic models evidence different equilibria in the excited states for both compounds.

Models MolecularMolecular modelLightOxidative phosphorylation010402 general chemistry01 natural sciencesCatalysisEpigenesis Geneticchemistry.chemical_compoundCytosineQUIMICA ORGANICAMaterials Chemistry[CHIM]Chemical SciencesHumansComputer SimulationEpigeneticsSpectroscopyUracilComputingMilieux_MISCELLANEOUS010405 organic chemistryChemistryMetals and AlloysGeneral ChemistryDNAPotential energy0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsKineticsIntersystem crossingExcited stateCeramics and CompositesBiophysicsOxidation-ReductionDNAMutagens
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Cubane-Type Mo3FeS44+,5+ Complexes Containing Outer Diphosphane Ligands: Ligand Substitution Reactions, Spectroscopic Studies, and Electronic Structu…

2012

A general protocol to access Mo(3)FeS(4)(4+) clusters selectively modified at the Fe coordination site is presented starting from the all-chlorine Mo(3)(FeCl)S(4)(dmpe)(3)Cl(3) (1) [dmpe = 1,2-bis(dimethylphosphane-ethane)] cluster and tetrabutylammonium salts (n-Bu(4)NX) (X = CN(-), N(3)(-), and PhS(-)). Clusters Mo(3)(FeX)S(4)(dmpe)(3)Cl(3) [X = CN(-) (2), N(3)(-) (3), and PhS(-) (4)] are prepared in high yield, and comparison of geometric and redox features upon modification of the coordination environment at the Fe site at parity of ligands at the Mo sites is also presented. The existence of the cubane-type Mo(3)FeS(4)(4+,5+) redox couple is demonstrated by cyclic voltammetry and for co…

Models MolecularPhosphinesIronInorganic chemistryMolecular ConformationElectronsInorganic chemicalsLigandsRedoxlaw.inventionInorganic Chemistrychemistry.chemical_compoundlawOrganometallic CompoundsReactionsDiphosphanePhysical and Theoretical ChemistryElectron paramagnetic resonanceMolybdenumLigandMagnetic PhenomenaSpectrum AnalysisDiphosphane ligandsMagnetic susceptibilityCrystallographychemistryCubaneQuantum TheoryDensity functional theoryCyclic voltammetryOxidation-ReductionSulfurInorganic Chemistry
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Experimental and Theoretical Study on the Cycloreversion of a Nucleobase-Derived Azetidine by Photoinduced Electron Transfer.

2018

[EN] Azetidines are interesting compounds in medicine and chemistry as bioactive scaffolds and synthetic intermediates. However, photochemical processes involved in the generation and fate of azetidine-derived radical ions have scarcely been reported. In this context, the photoreduction of this four-membered heterocycle might be relevant in connection with the DNA (6-4) photoproduct obtained from photolyase. Herein, a stable azabipyrimidinic azetidine (AZT(m)), obtained from cycloaddition between thymine and 6-azauracil units, is considered to be an interesting model of the proposed azetidine-like intermediate. Hence, its photoreduction and photo-oxidation are thoroughly investigated throug…

Models MolecularPhotochemistryRadicalAzetidinePyrimidine dimer010402 general chemistryPhotochemistry01 natural sciencesCatalysisPhotoinduced electron transferNucleobaseCyclobutaneElectron transferElectron Transportchemistry.chemical_compoundElectron transferQUIMICA ORGANICAUracilCycloadditionAza CompoundsCycloaddition Reaction010405 organic chemistryOrganic ChemistryGeneral ChemistryRadicalsPhotochemical Processes0104 chemical sciencesThymineDensity functional calculationsPyrimidineschemistryPyrimidine DimersAzetidinesOxidation-ReductionThymineChemistry (Weinheim an der Bergstrasse, Germany)
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Stepwise sequential redox potential modulation possible on a single platform.

2011

Step by step: The cluster [3,3'-Co(1,2-C(2)B(9)H(11))(2)](-) is an excellent platform for making a stepwise tunable redox potential system by dehydroiodination. With the addition of up to eight iodine substituents (purple; see picture), there is a fall in the E(1/2)(Co(III)/Co(II)) value from -1.80 V to -0.68 V (vs. Fc(+)/Fc; Fc = ferrocene). A practical application of this tunability has been observed in the growth of polypyrrole.

Models MolecularPolymersInorganic chemistryGeneral MedicineGeneral ChemistryCobaltPolypyrroleCrystallography X-RayElectron transport chainRedoxCatalysisCrystallographychemistry.chemical_compoundFerrocenechemistryModulationOrganometallic CompoundsPyrrolesFullerenesBoranesOxidation-ReductionAngewandte Chemie (International ed. in English)
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Exploring the redox reactivity of magnesium porphine. Insight into the origins of electropolymerisation.

2010

International audience; Magnesium(II) porphine, MgP (1), was synthesised according to the Lindsey procedure allowing to isolate and crystallise 1-formyldipyrromethane (2) as a synthetic intermediate. Unprecedented Xray diffraction studies revealed multiple intermolecular associations in the crystal between neighbouring units of 2, namely hydrogen bond and CH … π. The electrochemical behaviour of 1 was examined by means of cyclic voltammetry. In oxydation, two well-defined and distinct steps are assigned to macrocycle concerned electron transfers yielding initially the π-cation radical and π dication, respectively. The highly reactive dication condenses neutral magnesium porphine to form a d…

Models MolecularPorphyrinsInorganic chemistrychemistry.chemical_element010402 general chemistryElectrochemistryCrystallography X-Ray01 natural sciencesRedoxOligomerInorganic Chemistrychemistry.chemical_compound[CHIM.ANAL]Chemical Sciences/Analytical chemistryPolymer chemistryElectrochemistryOrganometallic Compounds[CHIM.COOR]Chemical Sciences/Coordination chemistryReactivity (chemistry)Magnesium[CHIM.ORGA]Chemical Sciences/Organic chemistry010405 organic chemistryHydrogen bondChemistryMagnesiumHydrogen Bonding[CHIM.MATE]Chemical Sciences/Material chemistry0104 chemical sciencesDicationCyclic voltammetryOxidation-ReductionDalton transactions (Cambridge, England : 2003)
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Electrochemical synthesis and structural characterization of Co(II), Ni(II) and Cu(II) complexes of N,N-bis(4,5-dimethyl-2-hydroxybenzyl)-N-(2-pyridy…

2009

The electrochemical oxidation of anodic metal (cobalt, nickel or copper) in a cell containing an acetonitrile solution of the ligand N,N-bis(4,5-dimethyl-2-hydroxybenzyl)-N-(2-pyridylmethyl)amine (H2L) affords complexes [Co2L2].H2O (1), [Ni3L3] (2) and [Cu2L2] 3H2O (4). On using nickel as the anode and the addition to the solution electrolytic phase of the amount of water necessary to saturate the solution, the electrolytic process gave rise to the new compound [Ni2L2(H2O)1.5].CH3CN (3). Compounds 1 and 4 are dimeric and the metal atoms are pentacoordinated. Compound 3 also consists of dimeric neutral molecules with the nickel atoms in both penta- and hexacoordinated environments. The cryst…

Models MolecularPyridinesInorganic chemistrychemistry.chemical_elementCrystal structureCrystallography X-RayLigandsInorganic ChemistryMetalchemistry.chemical_compoundNickelElectrochemistryOrganometallic CompoundsMoleculeAminesAcetonitrileMolecular StructureLigandCobaltNickelCrystallographychemistryIntramolecular forcevisual_artvisual_art.visual_art_mediumCobaltOxidation-ReductionCopperDalton transactions (Cambridge, England : 2003)
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Structures of yeast peroxisomal Δ(3),Δ(2)-enoyl-CoA isomerase complexed with acyl-CoA substrate analogues: the importance of hydrogen-bond networks f…

2015

Δ3,Δ2-Enoyl-CoA isomerases (ECIs) catalyze the shift of a double bond from 3Z- or 3E-enoyl-CoA to 2E-enoyl-CoA. ECIs are members of the crotonase superfamily. The crotonase framework is used by many enzymes to catalyze a wide range of reactions on acyl-CoA thioesters. The thioester O atom is bound in a conserved oxyanion hole. Here, the mode of binding of acyl-CoA substrate analogues to peroxisomalSaccharomyces cerevisiaeECI (ScECI2) is described. The best defined part of the bound acyl-CoA molecules is the 3′,5′-diphosphate-adenosine moiety, which interacts with residues of loop 1 and loop 2, whereas the pantetheine part is the least well defined. The catalytic base, Glu158, is hydrogen-bo…

Models MolecularSaccharomyces cerevisiae ProteinsDouble bondStereochemistryProtein ConformationIsomeraseSaccharomyces cerevisiaeEnoyl CoA isomeraseThioesterPhotochemistryDodecenoyl-CoA Isomerasebeta-oxidationSubstrate SpecificityStructural Biologyddc:570Catalytic DomainEnzyme StabilitySide chainMoietyta116chemistry.chemical_classificationHydrogen bondenoyl-CoA isomeraseta1182Hydrogen BondingGeneral Medicinehydrogen-bond networkcrotonaseoxyanion holechemistryAcyl Coenzyme AOxyanion holeOxidation-ReductionProtein BindingActa crystallographica. Section D, Biological crystallography
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The redox state of the cell regulates the ligand binding affinity of human neuroglobin and cytoglobin.

2003

Neuroglobin and cytoglobin reversibly bind oxygen in competition with the distal histidine, and the observed oxygen affinity therefore depends on the properties of both ligands. In the absence of an external ligand, the iron atom of these globins is hexacoordinated. There are three cysteine residues in human neuroglobin; those at positions CD7 and D5 are sufficiently close to form an internal disulfide bond. Both cysteine residues in cytoglobin, although localized in other positions than in human neuroglobin, may form a disulfide bond as well. The existence and position of these disulfide bonds was demonstrated by mass spectrometry and thiol accessibility studies. Mutation of the cysteines …

Models MolecularSpectrometry Mass Electrospray IonizationStereochemistryNeuroglobinNerve Tissue ProteinsLigandsBiochemistryRedoxHumansHistidineCysteineDisulfidesGlobinMolecular BiologyHistidineChemistryCytoglobinCytoglobinCell BiologyLigand (biochemistry)Recombinant ProteinsGlobinsOxygenKineticsNeuroglobinOxidation-ReductionOxygen bindingProtein BindingCysteine
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Enantiospecific semisynthesis of (+)-almuheptolide-A, a novel natural heptolide inhibitor of the mammalian mitochondrial respiratory chain.

1998

The development of novel styryl lactone derivatives as bioactive compounds and the semisynthesis of both 4,5-dialkoxylated eight-membered-ring lactones with a heptolide skeleton (almuheptolide-A (1) type) and 7-alkoxylated delta-lactones with a saturated furanopyrone skeleton (etharvensin (8) type) have been successfully achieved from the chiral unsaturated alpha-pyrone altholactone (7). This new method is a direct and one-step enantiospecific alkoxylation of altholactone (7) in concentrated acid medium, followed by formation of the eight-membered-ring zeta-lactone. The reaction mechanism operating in the synthesis of the heptolide skeleton is postulated to be a direct Michael-type addition…

Models MolecularStereochemistryRespiratory chainEtherIn Vitro TechniquesMitochondria HeartElectron Transportchemistry.chemical_compoundDrug DiscoveryAnimalsMitochondrial respiratory chain complex INADH NADPH OxidoreductasesEnzyme InhibitorsTetrahydrofuranchemistry.chemical_classificationElectron Transport Complex IStereoisomerismSemisynthesisAntineoplastic Agents PhytogenicKineticsMitochondrial respiratory chainchemistryMolecular MedicineCattleEnantiomerOxidation-ReductionLactoneJournal of medicinal chemistry
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Magnesium Exchanged Zirconium Metal−Organic Frameworks with Improved Detoxification Properties of Nerve Agents

2019

UiO-66, MOF-808 and NU-1000 metal-organic frameworks exhibit a differentiated reactivity toward [Mg(OMe)2(MeOH)2]4 related to their pore accessibility. Microporous UiO-66 remains unchanged while mesoporous MOF-808 and hierarchical micro/mesoporous NU-1000 materials yield doped systems containing exposed MgZr5O2(OH)6 clusters in the mesoporous cavities. This modification is responsible for a remarkable enhancement of the catalytic activity toward the hydrolytic degradation of P-F and P-S bonds of toxic nerve agents, at room temperature, in unbuffered aqueous solutions.

Models MolecularSurface PropertiesQuímica organometàl·licachemistry.chemical_element010402 general chemistry01 natural sciencesBiochemistryCatalysisCatalysisColloid and Surface ChemistryPolymer chemistryReactivity (chemistry)MagnesiumParticle SizeMaterialsMetal-Organic FrameworksZirconiumAqueous solutionMagnesiumHydrolysisTemperatureGeneral ChemistryMicroporous material0104 chemical scienceschemistryMetal-organic frameworkZirconiumMesoporous materialNerve AgentsOxidation-ReductionPorosity
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