Search results for "IPT"

showing 10 items of 6114 documents

An in vitro investigation on the cytotoxic and nuclear receptor transcriptional activity of the mycotoxins fumonisin B1 and beauvericin.

2016

Fumonisin B1 (FB1) and beauvericin (BEA) are secondary metabolites of filamentous fungi, which under appropriate temperature and humidity conditions may develop on various foods and feeds. To date few studies have been performed to evaluate the toxicological and endocrine disrupting effects of FB1 and BEA. The present study makes use of various in vitro bioassays including; oestrogen, androgen, progestagen and glucocorticoid reporter gene assays (RGAs) for the study of nuclear receptor transcriptional activity, the thiazolyl blue tetrazolium bromide (MTT) assay to monitor cytotoxicity and high content analysis (HCA) for the detection of pre-lethal toxicity in the RGA and Caco-2 human colon …

0301 basic medicineTranscription GeneticCell SurvivalBiologyAdenocarcinomaEndocrine DisruptorsToxicologyFumonisins03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyGlucocorticoid receptorReceptors GlucocorticoidGenes ReporterDepsipeptidesmedicineHumansCytotoxicityReceptorCell NucleusFumonisin B1Dose-Response Relationship Drug04 agricultural and veterinary sciencesGeneral Medicine040401 food scienceBeauvericin030104 developmental biologychemistryNuclear receptorBiochemistryReceptors AndrogenToxicityColonic NeoplasmsCaco-2 CellsReceptors ProgesteroneGlucocorticoidmedicine.drugToxicology letters
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Genome Mutational and Transcriptional Hotspots Are Traps for Duplicated Genes and Sources of Adaptations

2017

Gene duplication generatesnewgeneticmaterial,which has been shownto lead tomajor innovations in unicellular andmulticellular organisms.Awhole-genome duplication occurred in the ancestor of Saccharomyces yeast species but 92%of duplicates returned to single-copy genes shortly after duplication. The persisting duplicated genes in Saccharomyces led to the origin of major metabolic innovations, which have been the source of the unique biotechnological capabilities in the Baker's yeast Saccharomyces cerevisiae. What factors have determined the fate of duplicated genes remains unknown. Here,we report the first demonstration that the local genome mutation and transcription rates determine the fate…

0301 basic medicineTranscription GeneticGene duplicationAdaptation BiologicalSaccharomyces cerevisiaeEnvironmental stressPhenotypic plasticityBiologyGenomeEnvironmental stressMutational genome hotspots03 medical and health sciencesMutation RateStress PhysiologicalGene duplicationGeneticsPromoter Regions GeneticEcology Evolution Behavior and SystematicsGeneticsAdaptationsGenetic redundancyDuplicated genes030104 developmental biologyMutationGenetic redundancyExpression genome hotspotsResearch Article
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A Trans-Omics Comparison Reveals Common Gene Expression Strategies in Four Model Organisms and Exposes Similarities and Differences between Them.

2021

AbstractThe ultimate goal of gene regulation should focus on the protein level. However, as mRNA is an obligate intermediary, and because the amounts of mRNAs and proteins are controlled by their synthesis and degradation rates, the cellular amount of a given protein can be attained following different strategies. By studying omics datasets for six expression variables (mRNA and protein amounts, plus their synthesis and decay rates), we previously demonstrated the existence of common expression strategies (CES) for functionally-related genes in the yeastSaccharomyces cerevisiae. Here we extend that study to two other eukaryotes: the distantly related yeastSchizosaccharomyces pombeand cultur…

0301 basic medicineTranscription GeneticRNA StabilityCèl·lulesSaccharomyces cerevisiaeved/biology.organism_classification_rank.speciesSaccharomyces cerevisiaeComputational biologytranscription ratetranslation rateArticle03 medical and health sciences0302 clinical medicinePhylogeneticsGene Expression Regulation FungalGene expressionHumansmRNA stabilityModel organismGenelcsh:QH301-705.5OrganismRegulation of gene expressionbiologyPhylogenetic treeved/biologyProkaryotephenogramGeneral Medicinebiology.organism_classification030104 developmental biologyprotein stabilitylcsh:Biology (General)Schizosaccharomyces pombe030217 neurology & neurosurgeryInteraccions RNA-proteïna
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Topoisomerase 1 inhibition suppresses inflammatory genes and protects from death by inflammation

2015

Unwinding DNA and unleasing inflammation Fighting infections often comes with collateral damage, which sometimes can be deadly. For instance, in septic shock, the overwhelming release of inflammatory mediators drives multi-organ failure. Rialdi et al. now report a potential new therapeutic target for controlling excessive inflammation: the DNA unwinding enzyme topoisomerase I (Top1) (see the Perspective by Pope and Medzhitov). Upon infection, Top1 specifically localizes to the promoters of pathogen-induced genes and promotes their transcription by helping to recruit RNA polymerase II. Pharmacological inhibition of Top1 in a therapeutic setting increased survival in several mouse models of s…

0301 basic medicineTranscription GeneticType IInbred C57BLmedicine.disease_causeSendai virusMicePiperidinesTranscription (biology)Influenza A virusInnate2.1 Biological and endogenous factorsPositive Transcriptional Elongation Factor BAetiologyMultidisciplinaryAzepinesStaphylococcal InfectionsEbolavirusInfectious DiseasesDNA Topoisomerases Type IInfluenza A virusEbolaHost-Pathogen InteractionsPneumonia & InfluenzaRNA Polymerase IImedicine.symptomInfectionTranscriptionStaphylococcus aureusGeneral Science & TechnologyInflammationBiologyVaccine Related03 medical and health sciencesImmune systemGeneticImmunityBiodefenseGeneticsmedicineAnimalsHumansGeneFlavonoidsInflammationInnate immune systemPreventionHEK 293 cellsImmunityInterferon-betaHemorrhagic Fever EbolaTriazolesImmunity InnateMice Inbred C57BLEmerging Infectious DiseasesGood Health and Well BeingHEK293 Cells030104 developmental biologyGene Expression RegulationImmunologyCancer researchHemorrhagic FeverCamptothecinTopoisomerase I InhibitorsTopotecanDNA TopoisomerasesScience
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NF-κB and Disease

2020

The role of NF-κB in all diseases characterized by an inflammatory process, from cancer to autoimmune diseases, is known, but—precisely because it is involved in many diseases—this transcriptional factor continues to attract scientific research and the new knowledge that emerges is fundamental in highlighting the therapeutic potential that this factor can have in the various diseases in which it is involved [...]

0301 basic medicineTranscriptional factorDiseaseCatalysislcsh:ChemistryInorganic Chemistry03 medical and health scienceschemistry.chemical_compound0302 clinical medicinemedicineAnimalsHumansMolecular Targeted TherapyPhysical and Theoretical Chemistrylcsh:QH301-705.5Molecular BiologySpectroscopyNF-kB diseasebusiness.industryOrganic ChemistryNF-kappa BCancerNF-κBGeneral Medicinemedicine.diseaseComputer Science Applicationsn/aEditorial030104 developmental biologylcsh:Biology (General)lcsh:QD1-999Gene Expression Regulationchemistry030220 oncology & carcinogenesisCancer researchDisease SusceptibilitybusinessBiomarkersSignal TransductionInternational Journal of Molecular Sciences
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CENTENARIANS TRANSCRIPTOME IS UNIQUE AND REVEALS A ROLE OF BCL-XL IN SUCCESSFUL AGING

2017

Centenarians not only enjoy an extraordinary aging, but also show a compression of morbidity. We identified 1721 mRNAs differentially expressed by PMBCs from centenarians when compared with septuagenarians and young people. Sub-network analysis led us to identify Bcl-xL as an important gene up-regulated in centenarians. We found that centenarians display lower plasma cytochrome C levels, higher mitochondrial membrane potential and also less cellular damage accumulation. Immune function is significantly impaired in septuagenarians compared with young people whereas centenarians maintain it. To further ascertain the functional role of Bcl-xL in cellular aging, we found in transduced lymphocyt…

0301 basic medicineTranscriptomeAbstracts03 medical and health sciences030104 developmental biologyHealth (social science)Successful agingbiology.proteinBcl-xLComputational biologyBiologyLife-span and Life-course StudiesHealth Professions (miscellaneous)Innovation in Aging
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Co-chaperone Hsp70/Hsp90-organizing protein (Hop) is required for transposon silencing and Piwi-interacting RNA (piRNA) biogenesis

2017

Piwi-interacting RNAs (piRNAs) are 26–30-nucleotide germ line-specific small non-coding RNAs that have evolutionarily conserved function in mobile genetic element (transposons) silencing and maintenance of genome integrity. Drosophila Hsp70/90-organizing protein homolog (Hop), a co-chaperone, interacts with piRNA-binding protein Piwi and mediates silencing of phenotypic variations. However, it is not known whether Hop has a direct role in piRNA biogenesis and transposon silencing. Here, we show that knockdown of Hop in the germ line nurse cells (GLKD) of Drosophila ovaries leads to activation of transposons. Hop GLKD females can lay eggs at the same rate as wild-type counterparts, but the e…

0301 basic medicineTransposable elementendocrine systemPiwi-interacting RNABiologyBiochemistryGenomic InstabilityHop (networking)Animals Genetically Modified03 medical and health sciences0302 clinical medicineAnimalsDrosophila ProteinsGene silencingGene SilencingRNA Small InterferingMolecular BiologyJanus KinasesGeneticsGene knockdownurogenital systemOvaryRNACell BiologyPhenotypeDrosophila melanogasterGerm Cells030104 developmental biologyAccelerated CommunicationsArgonaute ProteinsDNA Transposable ElementsFemale030217 neurology & neurosurgeryBiogenesisDNA DamageTranscription FactorsJournal of Biological Chemistry
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E4BP4/NFIL3 modulates the epigenetically repressed RAS effector RASSF8 function through histone methyltransferases

2018

RAS proteins are major human oncogenes, and most of the studies are focused on enzymatic RAS effectors. Recently, nonenzymatic RAS effectors (RASSF, RAS association domain family) have garnered special attention because of their tumor-suppressive properties in contrast to the oncogenic potential of the classical enzymatic RAS effectors. Whereas most members of RASSF family are deregulated by promoter hypermethylation, RASSF8 promoter remains unmethylated in many cancers but the mechanism(s) of its down-regulation remains unknown. Here, we unveil E4BP4 as a critical transcriptional modulator repressing RASSF8 expression through histone methyltransferases, G9a and SUV39H1. In line with these …

0301 basic medicineTumor suppressor geneBreast NeoplasmsBiologyBiochemistryEpigenesis Genetic03 medical and health sciences0302 clinical medicineHistocompatibility AntigensHistone methylationHumansEpigeneticsMolecular BiologySUV39H1EffectorTumor Suppressor ProteinsNFIL3Molecular Bases of DiseaseCell BiologyHistone-Lysine N-MethyltransferaseMethyltransferasesCell biologyNeoplasm ProteinsGene Expression Regulation NeoplasticRepressor Proteins030104 developmental biologyBasic-Leucine Zipper Transcription FactorsHEK293 Cells030220 oncology & carcinogenesisHistone methyltransferaseMCF-7 CellsFemaleFunction (biology)
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Dom34 Links Translation to Protein O-mannosylation.

2016

In eukaryotes, Dom34 upregulates translation by securing levels of activatable ribosomal subunits. We found that in the yeast Saccharomyces cerevisiae and the human fungal pathogen Candida albicans, Dom34 interacts genetically with Pmt1, a major isoform of protein O-mannosyltransferase. In C. albicans, lack of Dom34 exacerbated defective phenotypes of pmt1 mutants, while they were ameliorated by Dom34 overproduction that enhanced Pmt1 protein but not PMT1 transcript levels. Translational effects of Dom34 required the 5′-UTR of the PMT1 transcript, which bound recombinant Dom34 directly at a CA/AC-rich sequence and regulated in vitro translation. Polysomal profiling revealed that Dom34 stimu…

0301 basic medicineUntranslated regionCancer ResearchGlycosylationMolecular biologyHydrolasesOligonucleotidesGene ExpressionRNA-binding proteinCell Cycle ProteinsYeast and Fungal ModelsPathology and Laboratory MedicineMannosyltransferasesBiochemistryTranscription (biology)Untranslated RegionsCandida albicansMedicine and Health SciencesProtein IsoformsGenetics (clinical)CandidaFungal PathogensNucleotidesMessenger RNACell biologyEnzymesNucleic acidsDenaturationPhenotypesPhenotypeMedical MicrobiologySaccharomyces CerevisiaePathogensResearch ArticleGene isoformSaccharomyces cerevisiae Proteinslcsh:QH426-470NucleasesSaccharomyces cerevisiaeMycologyBiologyResearch and Analysis MethodsMicrobiology03 medical and health sciencesSaccharomycesModel OrganismsRibonucleasesDownregulation and upregulationEndoribonucleasesDNA-binding proteinsGeneticsHumansGeneMicrobial PathogensEcology Evolution Behavior and Systematics030102 biochemistry & molecular biologyOrganismsFungiBiology and Life SciencesProteinsRibosomal RNAbiology.organism_classificationMolecular biologyYeastRNA denaturationlcsh:Genetics030104 developmental biologyMolecular biology techniquesProtein BiosynthesisEnzymologyRNAProtein TranslationRibosomesPLoS Genetics
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The 5′ Untranslated Region of the EFG1 Transcript Promotes Its Translation To Regulate Hyphal Morphogenesis in Candida albicans

2018

ABSTRACTExtensive 5’ untranslated regions (UTR) are a hallmark of transcripts determining hyphal morphogenesis inCandida albicans.The major transcripts of theEFG1gene, which are responsible for cellular morphogenesis and metabolism, contain a 5’ UTR of up to 1170 nt. Deletion analyses of the 5’ UTR revealed a 218 nt sequence that is required for production of the Efg1 protein and its functions in filamentation, without lowering the level and integrity of theEFG1transcript. Polysomal analyses revealed that the 218 nt 5’ UTR sequence is required for efficient translation of the Efg1 protein. Replacement of theEFG1ORF by the heterologous reporter geneCaCBGlucconfirmed the positive regulatory i…

0301 basic medicineUntranslated regionFive prime untranslated region030106 microbiologyEFG1lcsh:QR1-502Morphogenesishyphal morphogenesistranslationMicrobiologiaHeterologousContext (language use)posttranscriptional regulationBiologyMicrobiologylcsh:Microbiology03 medical and health sciences5′ UTRCandida albicansMolecular BiologyGeneReporter geneTranslation (biology)QR1-502Cell biologyfilamentationOpen reading frame030104 developmental biologyRegulatory sequencemSphere
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