Search results for " Genetica"

showing 10 items of 659 documents

Proteomic analysis highlights the role of detoxification pathways in increased tolerance to Huanglongbing disease.

2016

Background Huanglongbing (HLB) disease is still the greatest threat to citriculture worldwide. Although there is not any resistance source in the Citrus germplasm, a certain level of moderated tolerance is present. A large-scale analysis of proteomic responses of Citrus may help: 1) clarifying physiological and molecular effects of disease progression, 2) validating previous data at transcriptomic level, and 3) identifying biomarkers for development of early diagnostics, short-term therapeutics and long-term genetic resistance. Results In this work we have conducted a proteomic analysis of mature leaves of two Citrus genotypes with well-known differing tolerances to HLB: Navel orange (highl…

Crop and Pasture Production0106 biological sciences0301 basic medicineProteomicsCitrusCandidatus LiberibacterProteomePlant Biology & BotanyCandidatus liberibacterPlant BiologyHuanglongbingPlant ScienceBiologyProteomicsMicrobiology01 natural sciencesTranscriptome03 medical and health sciencesCitrus Huanglongbing Candidatus liberibacter iTRAQ Proteome ProteomicRhizobiaceaeDetoxificationSettore AGR/07 - Genetica AgrariaGenotypePlant DiseasesGeneticsbusiness.industryProteomicbiology.organism_classificationCitrus; Huanglongbing; Candidatus liberibacter; iTRAQ; Proteome; ProteomicBiotechnologyMetabolic pathway030104 developmental biologyiTRAQProteomebusinessCitrus × sinensisMetabolic Networks and Pathways010606 plant biology & botanyCitrus sinensisResearch ArticleBMC plant biology
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Analysis of Early Host Responses for Asymptomatic Disease Detection and Management of Specialty Crops

2010

The rapid and unabated spread of vector-borne diseases within US specialty crops threatens our agriculture, our economy, and the livelihood of growers and farm workers. Early detection of vector-borne pathogens is an essential step for the accurate surveillance and management of vector-borne diseases of specialty crops. Currently, we lack the tools that would detect the infectious agent at early (primary) stages of infection with a high degree of sensitivity and specificity. In this paper, we outline a strategy for developing an integrated suite of platform technologies to enable rapid, early disease detection and diagnosis of huanglongbing (HLB), the most destructive citrus disease. The re…

Crops AgriculturalCitrusTime FactorsPolymers and PlasticsDisease detectionCitruPlant DiseaseDiseaseBiologyAsymptomaticSettore AGR/07 - Genetica AgrariamedicinePlant DiseasesGeneral Environmental ScienceHost (biology)business.industryRapid expansionSpecialty cropsBiotechnologyHost-Pathogen InteractionHost-Pathogen InteractionsBiological MarkerIdentification (biology)medicine.symptombusinessBiomarkersInfectious agentCritical Reviews™ in Immunology
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Antitumoral activity of curcumin: an adjuvant therapeutic strategy

2021

Curcumin, an active substance contained in an Indian spice called turmeric or curcuma, is well known for its anti-inflammatory and antioxidant properties. In recent times, it was taken into account and studied as an antitumoral molecule, by relying on its interference on several biological mechanisms, such as the inhibition of inflammatory mediators, the enhancement of detoxifying enzymes’ action and processes of cell growth and proliferation. Studies show how the high dosage of curcumin in vitro inhibits colorectal tumor cells, pancreatic tumor cells, lung cancer cells and glioblastoma’s cells, interfering in signaling pathways as Wnt/β-catenin, NF-kB and PI3K/Akt and leading to cell cycle…

Curcumincolorectal tumors antioxidants curcumin antinflammatory effects pancratic cancerbusiness.industryBiochemistry (medical)Plant SciencePharmacologyGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundnutritionSettore MED/03 - Genetica Medicachemistrycolon cancerlcsh:Biology (General)CurcuminMedicinechemopreventionantitumor activity5-fluorouracilbusinesslcsh:QH301-705.5Therapeutic strategyJournal of Biological Research
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Specific Irreversible Cell-Cycle Arrest and Depletion of Cancer Cells Obtained by Combining Curcumin and the Flavonoids Quercetin and Fisetin.

2022

Background: Induced senescence could be exploited to selectively counteract the proliferation of cancer cells and target them for senolysis. We examined the cellular senescence induced by curcumin and whether it could be targeted by fisetin and quercetin, flavonoids with senolytic activity. Methods: Cell-cycle profiles, chromosome number and structure, and heterochromatin markers were evaluated via flow cytometry, metaphase spreads, and immunofluorescence, respectively. The activation of p21waf1/cip1 was assessed via RT-qPCR and immunoblotting. Senescent cells were detected via SA-β-Galactosidase staining. Results: We report that curcumin treatment specifically triggers senescence in cancer…

Cyclin-Dependent Kinase Inhibitor p21FlavonoidsDNA methylationsenescenceCurcuminFlavonolsCell Cycle Checkpointssenescence; curcumin; senolytics; heterochromatin; DNA methylation; H3K9 trimethylation; SAHF; fisetin; quercetinSAHFSettore BIO/18 - GeneticaH3K9 trimethylationHeterochromatinNeoplasmssenolyticsGeneticsQuercetinGenetics (clinical)Genes
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Expression of the kinetochore protein Hec1 during the cell cycle in normal and cancer cells and its regulation by the pRb pathway.

2010

Highly Expressed in Cancer protein 1 (Hec1) is a subunit of the Ndc80 complex, a constituent of the mitotic kinetochore. HEC1 has been shown to be overexpressed in many cancers, suggesting that HEC1 upregulation is involved in the generation and/or maintenance of the tumour phenotype. However, the regulation of Hec1 expression in normal and tumour cells and the molecular alterations promoting accumulation of this protein in cancer cells are still unknown. Here we show that elevated Hec1 protein levels are characteristic of transformed cell lines of different origins and that kinetochore recruitment of this protein is also increased in cancer cell lines in comparison with normal human cells.…

Cyclohexamide CHXRetinoblastoma ProteinCell Line TumorNeoplasmsmedicineHumansGene silencingGene SilencingNuclear proteinKinetochoresMolecular BiologyMitosisHec1biologyCell CycleRetinoblastoma proteinNuclear ProteinsCancerCell BiologyCell cyclemedicine.diseaseCell biologyCytoskeletal ProteinsSettore BIO/18 - GeneticaMitotic exitCancer cellbiology.proteinRNA InterferenceSignal TransductionDevelopmental Biologymicrotubule
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Enhancement of premature stop codon readthrough in the CFTR gene by Ataluren (PTC124) derivatives.

2015

Abstract Premature stop codons are the result of nonsense mutations occurring within the coding sequence of a gene. These mutations lead to the synthesis of a truncated protein and are responsible for several genetic diseases. A potential pharmacological approach to treat these diseases is to promote the translational readthrough of premature stop codons by small molecules aiming to restore the full-length protein. The compound PTC124 (Ataluren) was reported to promote the readthrough of the premature UGA stop codon, although its activity was questioned. The potential interaction of PTC124 with mutated mRNA was recently suggested by molecular dynamics (MD) studies highlighting the importanc…

Cystic FibrosisNonsense mutationPeptide Chain Elongation TranslationalCystic Fibrosis Transmembrane Conductance RegulatorSettore BIO/11 - Biologia MolecolareMolecular Dynamics SimulationCFTR genechemistry.chemical_compoundStructure-Activity RelationshipPlasmidDrug DiscoveryTumor Cells CulturedCoding regionHumansGreen fluorescent proteinGenePharmacologyGeneticsMessenger RNAOxadiazolesNonsense mutationDose-Response Relationship DrugMolecular StructureDrug Discovery3003 Pharmaceutical ScienceOrganic ChemistryTranslational readthroughSettore CHIM/06 - Chimica OrganicaGeneral MedicinePTCs readthroughStop codonAtalurenSettore BIO/18 - GeneticachemistrySettore CHIM/03 - Chimica Generale E InorganicaCodon NonsenseCystic fibrosiMutationFluorinated oxadiazoleHeLa CellsEuropean journal of medicinal chemistry
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Myc Promoter-Binding Protein-1 (MBP-1) Is a Novel Potential Prognostic Marker in Invasive Ductal Breast Carcinoma

2010

BackgroundAlpha-enolase is a glycolytic enzyme that catalyses the formation of phosphoenolpyruvate in the cell cytoplasm. α-Enolase and the predominantly nuclear Myc promoter-binding protein-1 (MBP-1) originate from a single gene through the alternative use of translational starting sites. MBP-1 binds to the P2 c-myc promoter and competes with TATA-box binding protein (TBP) to suppress gene transcription. Although several studies have shown an antiproliferative effect of MBP-1 overexpression on several human cancer cells, to date detailed observations of α-enolase and MBP-1 relative expression in primary tumors versus normal tissues and their correlation with clinicopathological features ha…

CytoplasmAlpha-enolasePROGRESSIONAged 80 and overRegulation of gene expressionMultidisciplinaryQRGenetics and Genomics/Gene ExpressionMiddle AgedPrognosisPathology/Molecular PathologyNUDE-MICETransport proteinCarcinoma DuctalDNA-Binding ProteinsGene Expression Regulation NeoplasticProtein Transportmedicine.anatomical_structureGLYCOLYTIC ENZYMEOncology/Breast CancerMedicineCELL LUNG-CANCER; ALPHA-ENOLASE; PROTEOMIC ANALYSIS; GLYCOLYTIC ENZYME; NUDE-MICE; GENE; IDENTIFICATION; PROGRESSION; EXPRESSION; METASTASESFemalePROTEOMIC ANALYSISEnolase MBP-1 Breast cancer ImmunohistochemistryResearch ArticleAdultEXPRESSIONScienceCELL LUNG-CANCERBreast NeoplasmsBiologyDNA-binding proteinBiomarkers TumormedicineHumansNeoplasm InvasivenessGeneAgedCell NucleusIDENTIFICATIONBinding proteinALPHA-ENOLASEGENEMolecular biologySettore BIO/18 - GeneticaCell nucleusMETASTASESCytoplasmPhosphopyruvate Hydratasebiology.proteinPLoS ONE
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Differential salinity-induced variations in the activity of H+-pumps and Na+/H+ antiporters that are involved in cytoplasm ion homeostasis as a funct…

2011

The characterisation of cellular responses to salinity in staple crops is necessary for the reliable identification of physiological markers of salinity tolerance. Under saline conditions, variations in proton gradients that are generated by membrane-bound H⁺ pumps are crucial for maintaining cytoplasm homeostasis. We examined short (15 h) and longer term effects (4 days) of NaCl stress on the H⁺ pumping activities that are associated with the plasma membrane (P-ATPase) and the tonoplast (V-ATPase and V-PPase) in rice (Oryza sativa L.) callus lines that displayed different levels of NaCl tolerance and were established from two japonica rice cultivars. The applied stress conditions were base…

CytoplasmSalinitySodium-Hydrogen ExchangersGenotypePhysiologyAntiporterPlant ScienceVacuoleSodium ChlorideBiologyCell Linechemistry.chemical_compoundSpecies SpecificityStress PhysiologicalBotanyGeneticsHomeostasisAdenosine TriphosphatasesOryza sativaHydrolysisCell MembraneSodiumfood and beveragesBiological TransportOryzaSalt ToleranceProton PumpsPlants Genetically ModifiedGenetically modified riceEnzyme ActivationSalinityIon homeostasischemistryCytoplasmBiophysicsX-GlucPlant Physiology and Biochemistry
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Dysregulation of DNA methylation induced by past arsenic treatment causes persistent genomic instability in mammalian cells

2015

The mechanisms by which arsenic-induced genomic instability is initiated and maintained are poorly understood. To investigate potential epigenetic mechanisms, in this study we evaluated global DNA methylation levels in V79 cells and human HaCaT keratinocytes at several time points during expanded growth of cell cultures following removal of arsenite exposures. We have found altered genomic methylation patterns that persisted up to 40 cell generations in HaCaT cells after the treatments were withdrawn. Moreover, mRNA expression levels were evaluated by RT-PCR for DNMT1, DNMT3A, DNMT3B, HMLH1, and HMSH2 genes, demonstrating that the down regulation of DNMT3A and DNMT3B genes, but not DNMT1, o…

DNA (Cytosine-5-)-Methyltransferase 1KeratinocytesDNA methylationArsenitesarsenicNuclear ProteinsFibroblastsgenomic instabilityArticleDNA Methyltransferase 3ASettore BIO/18 - GeneticaCricetulusLong Interspersed Nucleotide ElementsMutS Homolog 2 Protein5-MethylcytosineAnimalsDNA (Cytosine-5-)-MethyltransferasesMutL Protein Homolog 1Promoter Regions GeneticCells CulturedAdaptor Proteins Signal Transducing
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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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