Search results for "Transgene"

showing 10 items of 259 documents

Persistent episomal transgene expression in liver following delivery of a scaffold/matrix attachment region containing non-viral vector

2008

An ideal gene therapy vector should enable persistent transgene expression without limitations of safety and reproducibility. Here we report the development of a non-viral episomal plasmid DNA (pDNA) vector that appears to fulfil these criteria. This pDNA vector combines a scaffold/matrix attachment region (S/MAR) with a human liver-specific promoter (alpha1-antitrypsin (AAT)) in such a way that long-term expression is enabled in murine liver following hydrodynamic injection. Long-term expression is demonstrated by monitoring the longitudinal luciferase expression profile for up to 6 months by means of in situ bioluminescent imaging. All relevant control pDNA constructs expressing luciferas…

Time FactorsTransgeneGenetic VectorsGene ExpressionMice Inbred StrainsGene deliveryBiologyTransfectionViral vectorInjectionsMiceSettore MED/38 - Pediatria Generale E SpecialisticaGene expressionGeneticsGene silencingAnimalsHepatectomyHumansLuciferaseTransgenesScaffold/matrix attachment regionLuciferasesPromoter Regions GeneticMolecular BiologyGenetic Therapynon-viral episomal plasmid DNA (pDNA) vector S/MAR element hydrodynamic injection.DNA MethylationMatrix Attachment RegionsMolecular biologyImmunohistochemistryLiveralpha 1-AntitrypsinDNA methylationMolecular MedicinePlasmids
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α-Synuclein expression levels do not significantly affect proteasome function and expression in mice and stably transfected PC12 cell lines

2004

α-Synuclein (α-syn) is a small protein of unknown function that is found aggregated in Lewy bodies, the histopathological hallmark of sporadic Parkinson disease and other synucleinopathies. Mutations in the α-syn gene and a triplication of its gene locus have been identified in early onset familial Parkinson disease. α-Syn turnover can be mediated by the proteasome pathway. A survey of published data may lead to the suggestion that overexpression of α-syn wild type, and/or their variants (A53T and A30P), may produce a decrease in proteasome activity and function, contributing to α-syn aggregation. To investigate the relationship between synuclein expression and proteasome function we have s…

Time Factorsanimal diseasesmedicine.disease_causePC12 CellsBiochemistryMicechemistry.chemical_compoundTransgenesPromoter Regions GeneticMice KnockoutGeneticsMutationInnervationBrainParkinson DiseaseProteasome complexAmyloidosisCell biologyInnervacióalpha-SynucleinAdditions and CorrectionsPèptidsPlasmidsProteasome Endopeptidase ComplexPrionsProtein subunitBlotting WesternImmunoblottingSynucleinsMice TransgenicNerve Tissue ProteinsBiologyTransfectionBacterial ProteinsMultienzyme ComplexesmedicineAnimalsImmunoprecipitationMolecular BiologyAlpha-synucleinSynucleinopathiesEpilepsyWild typeGenetic VariationCell BiologyAxonsRatsnervous system diseasesMice Inbred C57BLEpilèpsiaDisease Models AnimalLuminescent ProteinschemistryProteasomenervous systemSinapsiMutationSynapsesSynucleinAmiloïdosiPeptides
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Promoter activity of the sea urchin (Paracentrotus lividus) nucleosomal H3 and H2A and linker H1 a-histone genes is modulated by enhancer and chromat…

2009

Core promoters and chromatin insulators are key regulatory elements that may direct a transcriptional enhancer to prefer a specific promoter in complex genetic loci. Enhancer and insulator flank the sea urchin (Paracentrotus lividus) alpha-histone H2A transcription unit in a tandem repeated cluster containing the five histone genes. This article deals with the specificity of interaction between the H2A enhancer-bound MBF-1 activator and histone gene promoters, and with the mechanism that leads the H1 transcripts to peak at about one-third of the value for nucleosomal H3 and H2A mRNAs. To this end, in vivo competition assays of enhancer and insulator functions were performed. Our evidence su…

Transcription GeneticEnhancer RNAsSettore BIO/11 - Biologia MolecolareGene Regulation Chromatin and EpigeneticsParacentrotus lividusHistonesGeneticsAnimalsNucleosomesea urchin enhancer chromatin insulator histone gene expression microinjectionTransgenesPromoter Regions GeneticEnhancerTranscription factorBinding SitesbiologyPromoterbiology.organism_classificationMolecular biologyChromatinNucleosomesChromatinEnhancer Elements GeneticHistoneembryonic structuresParacentrotusTrans-Activatorsbiology.proteinInsulator Elements
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The relative role of the T-domain and flanking sequences for developmental control and transcriptional regulation in protein chimeras of Drosophila O…

2004

optomotor-blind (omb) and optomotor-blind related-1 (org-1) encode T-domain DNA binding proteins in Drosophila. Members of this family of transcription factors play widely varying roles during early development and organogenesis in both vertebrates and invertebrates. Functional specificity differs in spite of similar DNA binding preferences of all family members. Using a series of domain swap chimeras, in which different parts of OMB and ORG-1 were mutually exchanged, we investigated the relevance of individual domains in vitro and in vivo. In cell culture transfection assays, ORG-1 was a strong transcriptional activator, whereas OMB appeared neutral. The main transcriptional activation fun…

Transcriptional ActivationEmbryologyTranscription GeneticNerve Tissue ProteinsBiologyEyeDNA-binding proteinChimera (genetics)Transcriptional regulationAnimalsDrosophila ProteinsTransgenesCloning MolecularTranscription factorPsychological repressionGeneticsChimeraGene Transfer TechniquesGene Expression Regulation DevelopmentalProtein Structure TertiaryT-boxEye developmentMicroscopy Electron ScanningDrosophilaT-Box Domain ProteinsDrosophila ProteinDevelopmental BiologyMechanisms of Development
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Regulation of the sea urchin early H2A histone gene expression depends on the modulator element and on sequences located near the 3' end

1999

Abstract Transcription of the sea urchin early histone genes occurs transiently during early cleavage, reaching the maximum at the morula stage and declining to an undetectable level at the gastrula stage. To identify the regulatory elements responsible for the timing and the levels of transcription of the H2A gene, we used promoter binding studies in nuclear extracts and microinjection of a CAT transgene driven by the early H2A promoter. We found that morula and gastrula nuclear proteins produced indistinguishable DNase I footprint patterns on the H2A promoter. Two sites of interactions, centred on the modulator/enhancer and on the CCAAT box respectively, were detected. Deletion of the mod…

Transcriptional ActivationSettore MED/07 - Microbiologia E Microbiologia Clinicaanimal structuresTransgeneMolecular Sequence DataClinical BiochemistryCAAT boxSettore BIO/11 - Biologia MolecolareBiochemistryHistonesTranscription (biology)DNase I footprintGene expressionAnimalsGene silencingTransgenesEnhancer3' Untranslated RegionsMolecular BiologyGeneBase SequencebiologyGastrulaMolecular biologyMicroinjectionGene Expression RegulationSea Urchinsembryonic structuresSettore BIO/03 - Botanica Ambientale E Applicatabiology.proteinDownregulatory sequencesTranscription FactorsMicrococcal nucleaseEnhancer
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Generation of GAL4-responsive muscleblind constructs

2002

The muscleblind (mbl) gene encodes protein isoforms Mbl A to Mbl D, which arise by alternative splicing from a common primary transcript. Mbl A, B, and C contain two Zn-finger domains of the type Cys3His, while Mbl D contains only one complete Zn finger. Loss of function mutations in the gene reveal that mbl is involved in both terminal photoreceptor and muscle differentiation in Drosophila. During retina development mbl is essential for rhabdomere differentiation in photoreceptor neuron. Clones homozygous null for mbl completely lack these lightharvesting structures (Begemann et al., 1997). Similarly, the terminal differentiation of the larval body wall muscles is compromised in mbl mutant…

TransgeneAlternative splicingchemical and pharmacologic phenomenaCell BiologyBiologybacterial infections and mycosesPhenotypeRhabdomereCell biologyImaginal discExonEndocrinologyRNA splicingGeneticsGenegenesis
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The Arabidopsis Copper Transporter COPT1 Functions in Root Elongation and Pollen Development

2004

Copper plays a dual role in aerobic organisms, as both an essential and a potentially toxic element. To ensure copper availability while avoiding its toxic effects, organisms have developed complex homeostatic networks to control copper uptake, distribution, and utilization. In eukaryotes, including yeasts and mammals, high affinity copper uptake is mediated by the Ctr family of copper transporters. This work is the first report on the physiological function of copper transport in Arabidopsis thaliana. We have studied the expression pattern of COPT1 in transgenic plants expressing a reporter gene under the control of the COPT1 promoter. The reporter gene is highly expressed in embryos, tric…

TransgeneArabidopsisDown-Regulationchemistry.chemical_elementPlant RootsBiochemistrychemistry.chemical_compoundGenes ReporterArabidopsisArabidopsis thalianaRNA MessengerTransgenesMolecular BiologyCopper Transporter 1Reporter geneDose-Response Relationship DrugbiologyArabidopsis ProteinsReverse Transcriptase Polymerase Chain ReactionMembrane Transport ProteinsBiological TransportTransporterCell BiologyOligonucleotides AntisensePlants Genetically Modifiedbiology.organism_classificationCopperTrichomeUp-RegulationBiochemistrychemistryMicroscopy Electron ScanningPollenGrowth inhibitionCopperPhenanthrolinesPlasmidsJournal of Biological Chemistry
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Production of the Sweet Protein Monellin in Transgetic Plants

1992

Monellin is a protein that elicits a flavor approximately 100,000 times sweeter than sugar on a molar basis. The protein exists naturally as a heterodimer, with its sweet flavor lost upon denaturation. A single–chain monellin gene, encoding both polypeptide chains linked by a hinge sequence, was placed under the control of constitutive and fruit–ripening specific promoters and transferred to lettuce and tomato. Expression of these genes in transgenic tomato and lettuce resulted in the accumulation of monellin protein in fruit and leaf, respectively, to significant levels. Production of monellin in transgenic fruits and vegetables represents an alternative strategy to enhance their flavor an…

TransgeneBiomedical Engineeringfood and beveragesBioengineeringBiologybiology.organism_classificationApplied Microbiology and BiotechnologyGene expressionBotanybiology.proteinMolecular MedicineDenaturation (biochemistry)Genetically modified tomatoFood scienceSugarSolanaceaeMonellinFlavorBiotechnologyNature Biotechnology
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Expression of a reporter gene is reduced by a ribozyme in transgenic plants

1994

A chimeric gene encoding a ribozyme under the control of the cauliflower mosaic virus (CaMV) 35S promoter was introduced into transgenic tobacco plants. In vivo activity of this ribozyme, which was designed to cleave npt mRNA, was previously demonstrated by transient expression assays in plant protoplasts. The ribozyme gene was transferred into transgenic tobacco plants expressing an rbcS-npt chimeric gene as an indicator. Five double transformants out of sixteen exhibited a reduction in the amount of active NPT enzyme. To measure the amount of ribozyme produced, in the absence of its target, the ribozyme and target genes were separated by genetic segregation. The steady-state concentration…

TransgeneDrug ResistanceChimeric geneGene Expression Regulation PlantGenes ReporterTobaccoGene expressionGeneticsRNA CatalyticRNA MessengerPromoter Regions GeneticMolecular BiologyGeneRegulation of gene expressionReporter geneKanamycin KinasebiologyRibozymePlants Genetically Modifiedbiology.organism_classificationMolecular biologyPhosphotransferases (Alcohol Group Acceptor)Plants ToxicGene Targetingbiology.proteinCauliflower mosaic virusMolecular and General Genetics MGG
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Release of dendritic cells from cognate CD4 + T-cell recognition results in impaired peripheral tolerance and fatal cytotoxic T-cell mediated autoimm…

2012

Resting dendritic cells (DCs) induce tolerance of peripheral T cells that have escaped thymic negative selection and thus contribute significantly to protection against autoimmunity. We recently showed that CD4 + Foxp3 + regulatory T cells (Tregs) are important for maintaining the steady-state phenotype of DCs and their tolerizing capacity in vivo. We now provide evidence that DC activation in the absence of Tregs is a direct consequence of missing DC–Treg interactions rather than being secondary to generalized autoimmunity in Treg-less mice. We show that DCs that lack MHC class II and thus cannot make cognate interactions with CD4 + T cells are completely unable to induce peripheral CD8 +…

TransgeneGenes MHC Class IIAutoimmunityMice Transgenicchemical and pharmacologic phenomenaAdaptive ImmunityLymphocyte Activationmedicine.disease_causeT-Lymphocytes RegulatoryAutoimmunityMicemedicineAnimalsCytotoxic T cellHomeodomain ProteinsMHC class IIMultidisciplinarybiologyPeripheral ToleranceBody WeightHistological TechniquesFOXP3Peripheral tolerancehemic and immune systemsDendritic CellsBiological SciencesFlow CytometryAcquired immune systemTamoxifenImmunologybiology.proteinCD8T-Lymphocytes CytotoxicProceedings of the National Academy of Sciences
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