Search results for "complexes"

showing 10 items of 875 documents

DNA Binding and Biological Activity of Transition Metal Complexes

2011

DNA Transition Metal complexesSettore CHIM/03 - Chimica Generale E InorganicaSettore CHIM/08 - Chimica Farmaceutica
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DNA interaction and biological activity of first row transition metal complexes

2011

DNA metal complexesSettore CHIM/03 - Chimica Generale E InorganicaSettore CHIM/08 - Chimica Farmaceutica
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Assembly of Polycomb complexes and silencing mechanisms

2003

Polycomb complexes assemble at their target sites and silence neighboring genes when these are not actively transcribed. The action of these complexes and of Trithorax complexes bound to the Polycomb Response Element establish alternative silent or derepressed states that are remembered through cell division and maintained for the rest of development. Recent results that may help explain the properties of these states are reviewed.

DNA-Binding ProteinsPolycomb Repressive Complex 1AnimalsDrosophila ProteinsDrosophilaSettore BIO/11 - Biologia MolecolareGene SilencingChromatin silencingChromatinChromatin memoryTranscription FactorsPolycomb complexes
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Slow Magnetic Relaxation in a Co (II)–Y (III) Single‐Ion Magnet with Positive Axial Zero‐Field Splitting

2013

This work was supported by the MINECO (Spain) (Project CTQ2011-24478), the Junta de Andalucía (FQM-195 and Project of excellence P08-FQM-03705), and the University of Granada. E.R. and E.Cr. thank MINECO grant No. CTQ2011-23862-C02-01 and Generalitat de Catalunya grant No. 2009SGR-1459, for financial support. We would like to thank Prof. Liviu Chibotaru for providing us the SINGLE_ANISO program and Dr. Andrew Ozarowski for the EPR simulation software. E.K.B. thanks the EPSRC and Leverhulme Trust for financial support. The NHMFL is funded by the NSF, DoE, and the state of Florida. J.C. acknowledges financial support by the Spanish Ministerio de Ciencia e Innovación through projects CTQ2010-1…

DYNAMICSModels Molecularpositive zero-field splittingINSchemistry.chemical_elementZero field splitting010402 general chemistry01 natural sciences7. Clean energyCatalysisO ligandsMOLECULE MAGNETNuclear magnetic resonancesingle ion magnetsYttriumMagnetic relaxationCompartmental ligandAnisotropyHYSTERESISComputingMilieux_MISCELLANEOUSANISOTROPY[PHYS]Physics [physics]IonsMolecular StructureCondensed matter physicsSingle ion010405 organic chemistryChemistryCobaltGeneral ChemistryYttriumNBARRIERcobaltCo(II)FAMILY0104 chemical sciencesyttriumHysteresisPositive axial ZFSDYSPROSIUM(III)TBMagnetic FieldsMagnetMagnetsSingle ion magnetCOMPLEXESCobaltBEHAVIOR
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Genomic determinants of speciation and spread of the Mycobacterium tuberculosis complex

2019

14 páginas, 6 figuras

Datasets as TopicGene ExpressionBacterial lineagesPopulation genomicsNegative selectionMUTATIONPathogenSensor kinaseResearch ArticlesHistory AncientPhylogenyRecombination Genetic0303 health sciencesMultidisciplinaryHYPOTHESIS1184 Genetics developmental biology physiologySciAdv r-articlesLINEAGE3. Good healthPast and presentPositive selectionMycobacterium tuberculosis complexHost-Pathogen InteractionsTwo component systemsResearch ArticleLineage (genetic)Genetic SpeciationVirulence FactorsVirulenceBiologyMicrobiologyHistory 21st CenturyRecombination eventsMycobacterium03 medical and health sciencesBacterial ProteinsGenetic algorithmGeneticsHumansTuberculosisSelection GeneticGene030304 developmental biologyGenetic locus030306 microbiologyMycobacterium tuberculosis complexesMycobacterium tuberculosisbiology.organism_classificationEVOLUTIONGenetic SpeciationGenetic LociEvolutionary biologyVIRULENCEAdaptationGenome BacterialRESISTANCE
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A knowledge-based decision support system in bioinformatics: An application to protein complex extraction

2013

Abstract Background We introduce a Knowledge-based Decision Support System (KDSS) in order to face the Protein Complex Extraction issue. Using a Knowledge Base (KB) coding the expertise about the proposed scenario, our KDSS is able to suggest both strategies and tools, according to the features of input dataset. Our system provides a navigable workflow for the current experiment and furthermore it offers support in the configuration and running of every processing component of that workflow. This last feature makes our system a crossover between classical DSS and Workflow Management Systems. Results We briefly present the KDSS' architecture and basic concepts used in the design of the knowl…

Decision support systemSaccharomyces cerevisiae ProteinsComputer scienceKnowledge BasesCrossovercomputer.software_genreBioinformaticslcsh:Computer applications to medicine. Medical informaticsBiochemistryDecision Support TechniquesWorkflowSoftwareknowledge base; decision support systemStructural BiologyArtificial IntelligenceProtein Interaction MappingPreprocessorCluster analysisMolecular Biologylcsh:QH301-705.5Settore ING-INF/05 - Sistemi Di Elaborazione Delle Informazionibusiness.industryApplied MathematicsResearchComputational BiologyComputer Science ApplicationsWorkflowKnowledge baselcsh:Biology (General)Multiprotein Complexesprotein complex extractionlcsh:R858-859.7Data miningbusinesscomputerWorkflow management systemAlgorithmsSoftware
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Ruthenium Metallodendrimers Based on Nitrile‐Functionalized Poly(alkylidene imine)s

2005

The preparation of the first- and second-generation of nitrile-functionalized poly(alkylidene imine) dendrimers with the organometallic ruthenium complex [Ru(η5-C5H5)(PPh3)2Cl] peripherally attached is described. The reaction of N,N′-bis(cyanomethyl)piperazine (1), N,N′-bis[N′′,N′′′-bis(cyanoethyl)aminoethyl]piperazine (2), or N,N,N′,N′-tetrakis(cyanoethyl)ethylenediamine (3) with [Ru(η5-C5H5)(PPh3)2Cl] (4) in the presence of TlPF6 gives the new air-stable ruthenium metallodendrimers 5, 6, and 7, respectively. These stable metallodendrimers are easily prepared and represent a novel quantitative method to solidify and chromatographically purify the otherwise semi-liquid nitrile-functionalize…

DendrimersNitrileIminechemistry.chemical_elementEthylenediamineSandwich complexes.Mass spectrometryRutheniumRutheniumInorganic ChemistryFaculdade de Ciências Exatas e da Engenhariachemistry.chemical_compoundPiperazineN ligandschemistryDendrimerPolymer chemistryOrganic chemistry31p nmr spectroscopyEuropean Journal of Inorganic Chemistry
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Preparation and Characterization of Novel Poly(alkylidenamine) Nitrile Ruthenium Metallodendrimers

2010

Complete functionalization of N,N,N',N'-[tetrakis(cyanoethyl)-hexamethylenediamine] [N≡C(CH 2 ) 2 ] 2 N(CH 2 ) 6 N[(CH 2 ) 2 -C≡N] 2 (4) and N,N,N',N'-(tetrakis(cyanoethoxypropyl)hexamethylenediamine] [N≡C(CH 2 ) 2 O(CH 2 ) 3 ] 2 N(CH 2 ) 6 N[(CH 2 ) 3 -O(CH 2 ) 2 C≡N] 2 (7) with the organometallic moiety [Ru(η 5 -C 5 H 5 )(PPh 3 ) 2 Cl] and the five-coordinate cis-[RuCl(dppe) 2 ]-[PF 6 ] [dppe = 1,2-bis(diphenylphosphanyl)ethane] was attained with good yield, respectively, by treating the metallo-fragment with the core in methanol (at room temperature and in presence of TIPF 6 as a chloride abstractor) and in 1,2-dichloroethane (under reflux). These novel nitrile-functionalized poly(alkyli…

DendrimersPolynuclear complexesNitrileStereochemistrychemistry.chemical_elementMetallodendrimerSandwich complexes.Medicinal chemistryRutheniumRutheniumInorganic ChemistryFaculdade de Ciências Exatas e da Engenhariachemistry.chemical_compoundN ligandschemistryHexamethylenediamineDendrimerYield (chemistry)MoietyMethanolEuropean Journal of Inorganic Chemistry
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Heterometallic CoII-CoIII-MII alkoxido-bridged heptanuclear motifs (M = Cu, Zn). Syntheses, crystal structures and magnetic properties

2018

Two new alkoxido-bridged heterometallic complexes of formula [CoIICoIII 3CuII 3(dea)6(CH3COO)3](ClO4)0.75(CH3COO)1.25 (1) and [CoII 2CoIII 2ZnII 3(tea)2(piv)6(CH3O)2(OH)2(CH3OH)2]·H2O 2 (H2dea=diethanolamine, H3tea=triethanolamine and Hpiv=pivalic acid) have been assembled using aminoalcohol ligands. The cationic core in 1 possesses a threefold crystallographic axis, and it exhibits a set of three copper(II), one cobalt(II) and three cobalt(III) ions arranged as a hexagon of alternating copper(II) and cobalt(III) ions around the central cobalt(II) ion. Each edge of the hexagon is defined by a double alkoxido bridge, the outer one being bis-monodentate with copper(II)-cobalt(III) pair wherea…

Denticity/dk/atira/pure/subjectarea/asjc/2500/2505Inorganic chemistrychemistry.chemical_elementCrystal structureZinc010402 general chemistry01 natural sciencesCobalt complexesIonInorganic ChemistryMagnetic propertiesZinc complexesMaterials ChemistryPhysical and Theoretical Chemistry/dk/atira/pure/subjectarea/asjc/1600/1606/dk/atira/pure/subjectarea/asjc/1600/1604010405 organic chemistryLigandCopper0104 chemical sciencesCrystallographychemistryIntramolecular forceMixed-valence clustersCobaltCopper complexesInorganica Chimica Acta
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Structural and Luminescent Properties of Homoleptic Silver(I), Gold(I), and Palladium(II) Complexes with nNHC-tzNHC Heteroditopic Carbene Ligands

2019

Novel silver(I), gold(I), and palladium(II) complexes were synthesized with bidentate heteroditopic carbene ligands that combine an imidazol-2-ylidene (nNHC) with a 1,2,3-triazol-5-ylidene (tzNHC) connected by a propylene bridge. The silver(I) and gold(I) complexes were dinuclear species, [M-2(nNHC-tzNHC)(2)](PF6)(2) (M = Ag or Au), with the two bidentate ligands bridging the metal centers, whereas in the palladium(II) complex [Pd(nNHC-tzNHC)(2)]-(PF6)(2), the two ligands were chelated on the same metal center. Because of the presence of two different carbene units, isomers were observed for the gold(I) and palladium(II) complexes. The molecular structures of the head-to-tail isomer for gol…

Denticity010405 organic chemistryGeneral Chemical EngineeringINTEGRATION SCHEMEchemistry.chemical_elementGeneral Chemistry010402 general chemistry01 natural sciencesArticleREACTIVITY0104 chemical scienceslcsh:ChemistryELECTRONIC-PROPERTIESchemistry.chemical_compoundchemistrylcsh:QD1-999Polymer chemistrySTATISTICAL AVERAGEMETAL-COMPLEXESHomolepticLuminescenceCarbenePalladiumAPPROXIMATION
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