Search results for "Topoisomerase I"

showing 10 items of 51 documents

Cisplatin-induced endoreduplication in CHO cells: DNA damage and inhibition of topoisomerase II.

2006

It has been proposed that polyploid cells that arise during a variety of pathological conditions and as a result of exposure to genotoxicants, typically in the liver, become aneuploid through genetic instability. Aneuploidy contributes to, or even drives, tumour development. We have assessed the capacity of the drug cisplatin, one of the most commonly used compounds for the treatment of malignancies, to induce endoreduplication, a particular type of polyploidy, in cultured Chinese hamster AA8 cells. Taking into account that any interference with DNA topoisomerase II (topo II) function leads to endoreduplication, we have found that treatment of the cells with this platinum compound results i…

DNA damageHealth Toxicology and MutagenesisAntineoplastic AgentsCHO CellsPolyploidychemistry.chemical_compoundCricetinaeGeneticsmedicineEndoreduplicationAnimalsHumansTopoisomerase II InhibitorsEnzyme InhibitorsMolecular BiologyCisplatinbiologySettore BIO/16 - Anatomia UmanaTopoisomeraseChinese hamster ovary cellNeoplasms Second PrimaryCell cycleAneugensAneuploidyMolecular biologychemistryTopoisomerase II cisplatinbiology.proteinCancer researchTopoisomerase-II InhibitorCisplatinDNAmedicine.drugDNA Damage
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The DNA topoisomerase II catalytic inhibitor merbarone is genotoxic and induces endoreduplication

2012

Abstract In the last years a number of reports have shown that the so-called topoisomerase II (topo II) catalytic inhibitors are able to induce DNA and chromosome damage, an unexpected result taking into account that they do not stabilize topo II-DNA cleavable complexes, a feature of topo II poisons such as etoposide and amsacrine. Merbarone inhibits the catalytic activity of topo II by blocking DNA cleavage by the enzyme. While it was first reported that merbarone does not induce genotoxic effects in mammalian cells, this has been challenged by reports showing that the topo II inhibitor induces efficiently chromosome and DNA damage, and the question as to a possible behavior as a topo II p…

DNA damageHealth Toxicology and MutagenesisTopoisomerase II; Catalytic inhibitor; Merbarone; DNA damage; Clastogens; EndoreduplicationCatalytic inhibitorCell Linechemistry.chemical_compoundCricetulusCricetinaeGeneticsmedicineEndoreduplicationAnimalsTopoisomerase II InhibitorsClastogenMolecular BiologyAmsacrineCell ProliferationbiologyDNA synthesisCell growthTopoisomeraseMerbaroneCell cycleEndoreduplicationThiobarbituratesMolecular biologyTopoisomerase IIchemistrybiology.proteinDNAmedicine.drugDNA Damage
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Endoreduplication induced in cultured Chinese hamster cells by different anti-topoisomerase II chemicals. Evidence for the essential contribution of …

2004

With the ultimate purpose of testing the hypothesis that, as shown in yeast mutants, any malfunction of DNA topoisomerase II might result in aberrant mitosis due to defective chromosome segregation, we have chosen three chemicals of different nature, recently reported to catalytically inhibit the enzyme. The endpoint selected to assess any negative effect on the ability of topoisomerase II to properly carry out decatenation of fully replicated chromosomes in the G2/M phase of the cell cycle was the presence of metaphases showing diplochromosomes as a result of endoreduplication, i.e. two successive rounds of DNA replication without intervening mitosis. The anti-topoisomerase drugs selected …

Enzyme Inhibitors/pharmacologyCell CycleChromosomeCatalysisChromosomesCatalysiCell LineCricetulusDNA Topoisomerases Type IICricetinaeAnimalsTopoisomerase II InhibitorsDNA Topoisomerases Type II/metabolismEnzyme InhibitorsCell Cycle/geneticCricetulu
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Specific phosphorylation of proteins in pore complex-laminae from the sponge Geodia cydonium by the homologous aggregation factor and phorbol ester. …

1987

We have recently shown that the aggregation factor (AF) from the sponge Geodia cydonium stimulates DNA synthesis in quiescent, dissociated cells from the same organism; this event was correlated with the release of the two second messengers: inositol trisphosphate and diacylglycerol. Here we describe that after binding of the AF to the plasma membrane-bound aggregation receptor, a rapid and drastic increase in the incorporation of 32Pi into a series of proteins in the pore complex-lamina fraction occurs. Addition of the tumor promoter, 12-O-tetradecanoylphorbol-13-acetate, to quiescent cells resulted in a similar stimulation of phosphorylation of nuclear proteins. Among them we have selecte…

General Immunology and MicrobiologyDNA synthesisGeneral NeuroscienceProteinsInositol trisphosphateDNA topoisomerase II activityBiologyGeneral Biochemistry Genetics and Molecular BiologyCell aggregationPoriferachemistry.chemical_compoundDNA Topoisomerases Type IIBiochemistrychemistrySecond messenger systemPhosphorylationAnimalsSignal transductionPhosphorylationMolecular BiologyCell Adhesion MoleculesProtein kinase CProtein Kinase CResearch ArticleCell Aggregation
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Topoisomerase II inhibition and high yield of endoreduplication induced by the flavonoids luteolin and quercetin

2006

Luteolin and quercetin are widely distributed plant flavonoids that possess a variety of chemical and biological activities, including free-radical scavenging and antioxidant activity. Recently, both flavonoids have been reported to inhibit DNA topoisomerases I and II (topo I and topo II), a property that, together with their ability to induce DNA and chromosome damage, has made them candidate anticancer compounds. In the present study, we confirmed that both compounds are topo II inhibitors by conducting a comparative study of their effect on topo II activity from Chinese hamster ovary AA8 cells. Because interference with the function of topo II to resolve DNA entanglement at the end of re…

Health Toxicology and MutagenesisFlavonoidAntineoplastic AgentsToxicologyTopoisomerase II InhibitorModels BiologicalPolyploidychemistry.chemical_compoundChromosome SegregationCricetinaeGeneticsTopoisomerase II InhibitorsAnimalsEndoreduplicationheterocyclic compoundsEnzyme InhibitorsLuteolinCells CulturedGenetics (clinical)Chromosome AberrationsFlavonoidsEnzyme Inhibitors/pharmacologychemistry.chemical_classificationbiologyTopoisomeraseChinese hamster ovary cellAntineoplastic Agents/adverse effectsDNA Topoisomerases Type IIchemistryBiochemistryDNA Damage/drug effectsFlavonoidbiology.proteinQuercetinDNA Topoisomerases Type II/metabolismTopoisomerase-II InhibitorChromosome Segregation/drug effectsQuercetinAntineoplastic Agents/pharmacologyLuteolinDNADNA DamageMutagenesis
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Photochemical electrocyclisation of 3-vinylindoles to pyrido[2,3-a]-, pyrido[4,3-a]- and thieno[2,3-a]-carbazoles: Design, synthesis, DNA binding and…

2009

In the context of the design and synthesis of DNA ligands, some new hetarene annelated carbazoles were synthesized. As lead structure the intercalating tetracyclic systems pyrido[2,3-a]- and pyrido[4,3-a]-carbazoles and in one case a thieno[2,3-a]-carbazole were taken into account. A dialkyl amino amidic chain was introduced to the planar chromophoric system with the intent to generate minor groove binding properties. The cytotoxicity of some compounds was examined by the NCI antitumor screening. Furthermore, biophysical as well as biochemical studies were performed in order to get some information about the DNA-binding properties and inhibition of DNA related functional enzymes of this new…

IndolesCell SurvivalStereochemistryCarbazolesFluorescence spectrometryAntineoplastic AgentsStereoisomerismContext (language use)Nucleic Acid DenaturationChemical synthesisFluorescenceStructure-Activity RelationshipCell Line TumorDrug DiscoveryAnimalsHumansTopoisomerase II InhibitorsTransition TemperatureStructure–activity relationshipBinding siteCell ProliferationPharmacologyBinding SitesbiologyChemistryCircular DichroismTopoisomeraseCell CycleOrganic ChemistryStereoisomerismDNAGeneral MedicinePhotochemical ProcessesDNA Minor Groove BindingCyclizationDrug Designbiology.proteinCattleSpectrophotometry UltravioletTopoisomerase I InhibitorsEuropean Journal of Medicinal Chemistry
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[Apoptosis of human leukemic cells induced by topoisomerase I and II inhibitors].

1996

International audience; Comparison between five human leukemic lines (BV173, HL60, U937, K562, KCL22) suggest that the main determinant of their sensitivity to topoisomerase I (camptothecin) and II (VP-16) inhibitors is their ability to regulate cell cycle progression in response to specific DNA damage, then to die through apoptosis: the more the cells inhibit cell cycle progression, the less sensitive they are. The final pathway of apoptosis induction involves a cytoplasmic signal, active at neutral pH, needing magnesium, sensitive to various protease inhibitors and activated directly by staurosporine. Modulators of intracellular signaling (calcium chelators, calmodulin inhibitors, PKC mod…

Leukemia[SDV]Life Sciences [q-bio]Cell CycleApoptosisCell DifferentiationDNA Neoplasm[SDV.BC]Life Sciences [q-bio]/Cellular BiologyStaurosporine[SDV] Life Sciences [q-bio]AlkaloidsDNA Topoisomerases Type IIDNA Topoisomerases Type ITumor Cells CulturedHumansTopoisomerase II InhibitorsCamptothecinTopoisomerase I Inhibitors[SDV.BC] Life Sciences [q-bio]/Cellular BiologyProtein Kinase CEtoposideSignal Transduction
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Rac1 GTPase, a multifunctional player in the regulation of genotoxic stress response

2013

The Ras-related C3 botulinum toxin substrate 1 (Rac1) belongs to the Ras-homologous (Rho) family of small GTPases, which transduce signals from the outside to the inside of a cell. Rac1 becomes activated upon ligand binding of a variety of receptors, including receptor tyrosine kinases and heterotrimeric G-protein-coupled receptors. After GTP loading by guanine exchange factors (GEFs), GTP-bound Rac1 engages numerous effector proteins, thereby eventually regulating cell motility and adhesion, cell cycle progression through G1, mitosis and meiosis, as well as cell death and metastasis.1 Besides, Rac1 adjusts cellular responses to genotoxic agents, such as UV light and alkylating agents, by r…

Malerac1 GTP-Binding Proteintopoisomerase IIAgingRHOADNA repairDNA damagep38 mitogen-activated protein kinasesApoptosisRAC1Editorials: Cell Cycle FeaturesDNA damage responseReceptor tyrosine kinasechemical carcinogenesisHistonesMiceTransforming Growth Factor betaRho GTPasesAnimalsMolecular BiologyTranscription factoranthracyclinesMice KnockoutbiologyKinaseNeuropeptidesConnective Tissue Growth FactorHMG-CoA reductase inhibitors (statins)Cell BiologyFibrosisgenotoxic stressActinsrac GTP-Binding ProteinsCell biologyOxidative Stressnormal tissue damageGene Expression RegulationLiverBiochemistryDoxorubicinGamma Raysbiology.proteinFemaleDNA DamageMutagensSignal TransductionDevelopmental BiologyCell Cycle
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3,5-bis(3'-indolyl)pyrazoles, analogues of marine alkaloid nortopsentin: synthesis and antitumor properties.

2007

A series of 10 bis-indolylpyrazoles of type 9, 10 were obtained by cyclization of diketones 8 using hydrazine monohydrate or methylhydrazine in refluxing acetic acid/THF. Derivatives 9a,c,d were selected, by the National Cancer Institute (NCI, Bethesda, USA), to be evaluated against the full panel of about 60 human tumor cell lines derived from nine human cancer cell types and showed antiproliferative activity in the micromolar range. In particular, 9d, the most active compound was effective against all the tested cell lines with a GI(50) mean value of 3.23 microM; TGI and LC(50) values were 14.5 and 58.9 microM having positive response on 91% and 41% of the tested cell lines, respectively.

MethylhydrazineIndolesStereochemistry3Clinical BiochemistryPharmaceutical ScienceAntineoplastic AgentsBiochemistryChemical synthesisNortopsentin; 3; 5-Bis(3'-indolyl)pyrazoles; antitumor activity; Topoisomerase IIAcetic acidchemistry.chemical_compoundAlkaloidsCell Line TumorDrug DiscoveryHumansantitumor activityMolecular BiologyCell Proliferationchemistry.chemical_classificationCell growthAlkaloidNortopsentinOrganic ChemistryImidazolesBiological activity5-Bis(3'-indolyl)pyrazolesTopoisomerase IIEnzymechemistryCell cultureMolecular MedicinePyrazolesDrug Screening Assays AntitumorBioorganicmedicinal chemistry letters
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Isoindolo[2,1-a]quinoxaline derivatives, novel potent antitumor agents with dual inhibition of tubulin polymerization and topoisomerase I.

2008

Isoindoloquinoxalines 4 and 5 were obtained by refluxing 2-(2'-aminoaryl)-1-cyanoisoindoles 3a- e in acetic or formic acid. All derivatives were screened by the National Cancer Institute (Bethesda, MD) for the in vitro one dose primary anticancer assay against a 3-cell line panel. Compounds 4a- e, screened against a panel of about 60 human tumor cell lines, showed remarkable antineoplastic activity; they had GI 50 values in the low micromolar or submicromolar range and reached, in the case of 4c, nanomolar concentrations on 88% of the 59 tested cell lines. Flow cytometric analysis of cell cycle after treatment with 4c demonstrated an arrest of the cell cycle in G2/M phase. This effect was a…

Mitotic indexMagnetic Resonance SpectroscopySpectrophotometry InfraredPolymersFLUORESCENT-PROBELIGAND-DNA SYSTEMSMitosisCELL-LINESAntineoplastic AgentsACRIDINE-ORANGETopoisomerase-I InhibitorMITOCHONDRIATubulinCell Line TumorQuinoxalinesDrug DiscoveryHumansCytotoxicitybiologyChemistryTopoisomeraseB-DNACell CycleCell cycleAPOPTOSISCDEnzyme ActivationMICROTUBULESBiochemistryMicroscopy FluorescenceCell cultureApoptosisEnzyme inhibitorLINEAR DICHROISM SPECTROSCOPYCaspasesbiology.proteinMolecular MedicineDrug Screening Assays AntitumorTopoisomerase I InhibitorsReactive Oxygen SpeciesJournal of medicinal chemistry
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