Search results for "Guanosine"

showing 10 items of 171 documents

Cockayne syndrome: varied requirement of transcription-coupled nucleotide excision repair for the removal of three structurally different adducts fro…

2014

Hereditary defects in the transcription-coupled nucleotide excision repair (TC-NER) pathway of damaged DNA cause severe neurodegenerative disease Cockayne syndrome (CS), however the origin and chemical nature of the underlying DNA damage had remained unknown. To find out, to which degree the structural properties of DNA lesions determine the extent of transcription arrest in human CS cells, we performed quantitative host cell reactivation analyses of expression vectors containing various synthetic adducts. We found that a single 3-(deoxyguanosin-N 2-yl)-2-acetylaminofluorene adduct (dG(N 2)-AAF) constitutes an unsurmountable obstacle to transcription in both CS-A and CS-B cells and is remov…

DNA RepairTranscription GeneticGenetic ToxicologyDNA damagelcsh:MedicineBiologyToxicologyHost-Cell ReactivationBiochemistryCockayne syndromeCell LineDNA Adductschemistry.chemical_compoundGenes ReporterTranscription (biology)Nucleic AcidsMolecular Cell BiologyGene expressionmedicineHumansGene SilencingCockayne SyndromePoly-ADP-Ribose Binding Proteinslcsh:ScienceFluorenesMultidisciplinaryBiology and life sciencesOligonucleotidelcsh:RDNA HelicasesDeoxyguanosineDNACell Biologymedicine.diseaseMolecular biologyDNA Repair EnzymesGene Expression RegulationchemistryBiochemistrylcsh:QDNAResearch ArticleNucleotide excision repairPLoS ONE
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UVA irradiation induces relocalisation of the DNA repair protein hOGG1 to nuclear speckles

2006

The DNA glycosylase hOGG1 initiates base excision repair (BER) of oxidised purines in cellular DNA. Using confocal microscopy and biochemical cell fractionation experiments we show that, upon UVA irradiation of human cells, hOGG1 is recruited from a soluble nucleoplasmic localisation to the nuclear matrix. More specifically, after irradiation, hOGG1 forms foci colocalising with the nuclear speckles, organelles that are interspersed between chromatin domains and that have been associated with transcription and RNA-splicing processes. The use of mutant forms of hOGG1 unable to bind the substrate showed that relocalisation of hOGG1 does not depend on the recognition of the DNA lesion by the en…

DNA RepairTranscription GeneticUltraviolet RaysDNA repairRecombinant Fusion ProteinsGreen Fluorescent ProteinsFluorescent Antibody TechniqueBiologyDNA GlycosylasesSubstrate Specificitychemistry.chemical_compoundDNA Repair ProteinDNA-(Apurinic or Apyrimidinic Site) LyaseHumansCell NucleusGuanosineBiological TransportCell BiologyBase excision repairNuclear matrixMolecular biologyChromatinCell biologychemistryDNA glycosylaseCell fractionationReactive Oxygen SpeciesDNAHeLa CellsJournal of Cell Science
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Mechanisms and consequences of methylating agent-induced SCEs and chromosomal aberrations: a long road traveled and still a far way to go.

2003

Since the milestone work of Evans and Scott, demonstrating the replication dependence of alkylation-induced aberrations, and Obe and Natarajan, pointing to the critical role of DNA double-strand breaks (DSBs) as the ultimate trigger of aberrations, the field has grown extensively. A notable example is the identification of DNA methylation lesions provoking chromosome breakage (clastogenic) effects, which made it possible to model clastogenic pathways evoked by genotoxins. Experiments with repair-deficient mutants and transgenic cell lines revealed both O<sup>6</sup>-methylguanine (O<sup>6</sup>MeG) and N- methylpurines as critical lesions. For S<sub>N</sub&g…

DNA ReplicationAlkylating AgentsGuanineDNA RepairDNA damageDNA repairBase Pair MismatchApoptosisBiologyMethylationLesionAnimals Genetically ModifiedMiceO(6)-Methylguanine-DNA MethyltransferaseCricetulusCricetinaeGeneticsmedicineAnimalsHumansPoint MutationAP siteMolecular BiologyGenetics (clinical)Chromosome AberrationsRecombination GeneticGuanosineModels GeneticCell CycleDNA replicationDNAFibroblastsMolecular biologyCell killingCell Transformation NeoplasticCancer researchDNA mismatch repairChromosome breakagemedicine.symptomSister Chromatid ExchangeDNA DamageMutagensCytogenetic and genome research
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Differences between cysteine and homocysteine in the induction of deoxyribose degradation and DNA damage.

2001

The effect of two naturally occurring thiols, such as cysteine and homocysteine, has been examined for their ability to induce deoxyribose degradation and DNA damage. Copper(II) ions have been added to incubation mixtures and oxygen consumption measurements have been performed in order to correlate the observed damaging effects with the rate of metal catalyzed thiol oxidation. Ascorbic acid plus copper has been used as a positive control of deoxyribose and DNA oxidation due to reactive oxygen species. Cysteine or homocysteine in the presence of copper ions induce the degradation of deoxyribose and the yield of 8-hydroxy-2'-deoxyguanosine (8-OHdG), although important differences are observed…

DNA damageAscorbic AcidThymus GlandBiochemistrySuperoxide dismutasechemistry.chemical_compoundOxygen ConsumptionPhysiology (medical)DeoxyguanosineAnimalsCysteineHomocysteineElectrophoresis Agar GelbiologyDeoxyriboseSuperoxide DismutaseThiourea8-Hydroxy-2'-deoxyguanosineDeoxyguanosineDNA oxidationAscorbic acidCatalasechemistryDeoxyriboseBiochemistry8-Hydroxy-2'-DeoxyguanosineSpectrophotometrybiology.proteinCattleReactive Oxygen SpeciesOxidation-ReductionCopperCysteineDNA DamageFree radical biologymedicine
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Congenital secretory diarrhoea caused by activating germline mutations in GUCY2C

2016

Objective Congenital sodium diarrhoea (CSD) refers to a form of secretory diarrhoea with intrauterine onset and high faecal losses of sodium without congenital malformations. The molecular basis for CSD remains unknown. We clinically characterised a cohort of infants with CSD and set out to identify disease-causing mutations by genome-wide genetic testing. Design We performed whole-exome sequencing and chromosomal microarray analyses in 4 unrelated patients, followed by confirmatory Sanger sequencing of the likely disease-causing mutations in patients and in their family members, followed by functional studies. Results We identified novel de novo missense mutations in GUCY2C, the gene encod…

DiarrheaMale0301 basic medicinemedicine.medical_specialtyReceptors PeptideColonGuanylinGuanosine MonophosphateMutation MissenseReceptors EnterotoxinGUANYLATE CYCLASEBiologyCHRONIC DIARRHOEAPathogenesis03 medical and health scienceschemistry.chemical_compoundsymbols.namesakeGermline mutationInternal medicineBACTERIAL ENTEROTOXINSmedicineHumansMissense mutationAbnormalities MultipleGenetic Predisposition to Disease1506Intestinal MucosaCyclic guanosine monophosphateSanger sequencingPAEDIATRIC DIARRHOEASodiumGastroenterologyInfantMolecular Reproduction Development & Genetics (formed by the merger of DBGL and CRBME)Molecular biologyIntestines030104 developmental biologyEndocrinologyIntestinal AbsorptionReceptors Guanylate Cyclase-CoupledchemistryINTESTINAL ION TRANSPORTsymbolsFemaleMetabolism Inborn ErrorsIntracellularUroguanylinGut
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Guanosine prevents nuclear factor-κB nuclear translocation ameliorating experimental colitis in rats

2018

Background inflammatory bowel diseases (IBDs), including Crohn’s disease (CD) and ulcerative colitis (UC), are prevalent and debilitating health problems worldwide. Due to the adverse effects of classical treatment for IBD, therapeutic options and approaches for these diseases continue to evolve. Guanosine, a guanine-based purine, is an extracellular signalling molecule that seems to exert anti-inflammatory and antioxidative effects in several in vivo and in vitro injury models. The aim of the present study was to investigate whether exogenous guanosine may have protective effects on 2,4-dinitrobenzene sulfonic acid (DNBS)-induced Colitis in rat. Methods Experimental Colitis was induced by …

EXPERIMENTAL COLITIS GUANOSINE INFLAMMATORY BOWEL DISEASESettore BIO/09 - Fisiologia
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Oxidative stress induces the expression of the major histocompatibility complex in murine tumor cells.

2001

The effect of t-butyl hydroperoxide (t-BOOH) on the induction of the Major Histocompatibility Complex (MHC) class I genes has been studied in two cell clones (B9 and G2) of the methylcholanthrene-induced murine fibrosarcoma GR9. These two clones were selected based on their different biological and biochemical behavior specially related to their tumor induction capability when injected into a BALB/c mouse. t-BOOH (0.125 mM) induced the expression of H-2 molecules in both cell clones. In B9 cell clone, in which MHC basal expression is very low or absent, t-BOOH significantly induced H-2Kd, H-2Dd and H-2Ld molecules. In G2 cell clone the expression of MHC class I genes was also enhanced by th…

FibrosarcomaCellElectrophoretic Mobility Shift AssayBiologyMajor histocompatibility complexBiochemistryMajor Histocompatibility ComplexTransactivationMiceAntigentert-ButylhydroperoxideCell CloneMalondialdehydeMHC class ImedicineTumor Cells CulturedAnimalsGlutathione PeroxidaseMice Inbred BALB CSuperoxide DismutaseMHC Class I GeneHistocompatibility Antigens Class INF-kappa BDeoxyguanosineGeneral Medicine3T3 CellsCatalaseFlow CytometryMolecular biologyGlutathioneOxidative Stressmedicine.anatomical_structureGene Expression Regulation8-Hydroxy-2'-Deoxyguanosinebiology.proteinCD8MethylcholanthreneFree radical research
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IDENTIFICATION AND FUNCTIONAL CHARACTERIZATION OF GPCR23/LPA4 AS A CANDIDATE G PROTEIN-COUPLED RECEPTOR FOR GUANOSINE

2014

La guanosina esercita diverse funzioni a livello del Sistema Nervoso Centrale, coinvolgendo recettori di membrana accoppiati a proteine G (GPCR) non ancora identificati. Pertanto, l’obiettivo della ricerca è stato quello di individuare e caratterizzare uno specifico recettore funzionale per la Guanosina. I dati ottenuti su linee cellulari hanno dimostrato che il legame della guanosina con le membrane plasmatiche è incrementato dall’over-espressione del GPCR23 e ridotto dal suo silenziamento ed hanno evidenziato l’attivazione di un GPCR in risposta alla guanosina. A livello cerebrale il GPCR23 è risultato essere maggiormente espresso nella regione corticale, dove si è dimostrata anche una no…

GPCRGuanosineGPCR23.Settore BIO/09 - FisiologiaGuanine-based purine
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Binding and/or hydrolysis of purine‐based nucleotides is not required for IM30 ring formation

2021

IM30, the inner membrane-associated protein of 30 kDa, is conserved in cyanobacteria and chloroplasts. Although its exact physiological function is still mysterious, IM30 is clearly essential for thylakoid membrane biogenesis and/or dynamics. Recently, a cryptic IM30 GTPase activity has been reported, albeit thus far no physiological function has been attributed to this. Yet, it is still possible that GTP binding/hydrolysis affects formation of the prototypical large homo-oligomeric IM30 ring and rod structures. Here, we show that the Synechocystis sp. PCC 6803 IM30 protein in fact is an NTPase that hydrolyzes GTP and ATP, but not CTP or UTP, with about identical rates. While IM30 forms lar…

GTP'Genetic VectorsBiophysicsGene ExpressionGTPaseRing (chemistry)ThylakoidsBiochemistrySubstrate Specificity03 medical and health sciencesAdenosine TriphosphateBacterial ProteinsStructural BiologyEscherichia coliGeneticsNucleotideddc:610Cloning MolecularMolecular BiologyEnzyme Assays030304 developmental biologychemistry.chemical_classification0303 health sciencesbiologyChemistryHydrolysis030302 biochemistry & molecular biologySynechocystisSynechocystisMembrane ProteinsCell BiologyNucleoside-Triphosphatasebiology.organism_classificationRecombinant ProteinsKineticsMicroscopy ElectronThylakoidMembrane biogenesisBiophysicsGuanosine TriphosphateBiogenesisProtein BindingFEBS Letters
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Molecular recognition of nucleotides in water by scorpiand-type receptors based on nucleobase discrimination.

2014

Abstract: The detection of nucleotides is of crucial impor-tance because they are the basic building blocks of nucleicacids. Scorpiand-based polyamine receptors functionalizedwith pyridine or anthracene units are able to form stablecomplexes with nucleotides in water, based on coulombic,p–p stacking, and hydrogen-bonding interactions. This be-havior has been rationalized by means of an explorationwith NMR spectroscopy and DFT calculations. Binding con-stants were determined by potentiometry. Fluorescencespectroscopy studies have revealed the potential of these re-ceptors as sensors to effectively and selectively distinguishguanosine-5’-triphosphate (GTP) from adenosine-5’-triphos-phate (ATP…

GTP'StereochemistryStackingSupramolecular chemistrysensorsCatalysissupramolecular chemistryNucleobaseMolecular recognitionAdenosine TriphosphateMoleculeNucleotidescorpiandsNuclear Magnetic Resonance Biomolecularchemistry.chemical_classificationMolecular StructureNucleotidesOrganic ChemistryWaterHydrogen BondingGeneral ChemistryNuclear magnetic resonance spectroscopyModels TheoreticalSpectrometry Fluorescencechemistrymolecular recognitionGuanosine TriphosphateChemistry (Weinheim an der Bergstrasse, Germany)
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