Search results for "regulation of gene expression"

showing 10 items of 490 documents

The POT1 gene for yeast peroxisomal thiolase is subject to three different mechanisms of regulation

1992

The Saccharomyces cerevisiae POT1 gene is, as are other yeast peroxisomal protein genes, inducible by fatty acids and repressible by glucose. We have now found that it is also induced during the stationary phase of the culture. To investigate these three regulatory circuits, we have studied the mRNA levels of regulatory mutants as well as the changes in chromatin structure upon gene activation. We conclude that the regulation of transcriptional activity in glucose repression, oleate induction, and stationary phase induction follow different molecular mechanisms. We suggest that this multiplicity of regulatory mechanisms may represent a general rule for the yeast peroxisomal protein genes.

Transcriptional ActivationTranscription GeneticGenes FungalSaccharomyces cerevisiaeMutantOleic AcidsSaccharomyces cerevisiaeMicrobodiesMicrobiologyGene Expression Regulation FungalGene expressionRNA MessengerAcetyl-CoA C-AcetyltransferaseMolecular BiologyGeneRegulation of gene expressionbiologyCell CycleFungal geneticsRNA FungalPeroxisomebiology.organism_classificationChromatinChromatinGlucoseBiochemistryOleic AcidMolecular Microbiology
researchProduct

Cadmium as a transcriptional modulator in human cells

2010

Cadmium (Cd) is an underground mineral widely used in the steel industry, in plastics, and as a component of batteries. It is an industrial and environmental pollutant released as an air contaminant from fertilizers and, more prominently, in the form of wastewater. Food, drinking water, and, mainly, inhalation of smoke from cigarettes are sources of daily exposure of humans to the heavy metal. Although Cd has no known useful function for humans as well as other organisms, it appears to evoke in cells a number of responses that involve not only death signaling but also protective reactions against the toxicity. This finding prompted a number of experimental studies aimed to elucidate the cel…

Transcriptional Activationchemistry.chemical_elementApoptosisBiologyToxicologyTranscriptional regulationHumansSettore BIO/06 - Anatomia Comparata E CitologiaGeneHeat-Shock ProteinsRegulation of gene expressionPollutantCadmiumhuman cellBiochemistrychemistryGene Expression RegulationToxicityHeme Oxygenase (Decyclizing)gene expressionEnvironmental PollutantsMetallothioneinSignal transductionFunction (biology)Water Pollutants ChemicalSignal TransductionCadmium
researchProduct

A differential role of CREB phosphorylation in cAMP-inducible gene expression in the rat pineal

2000

In the rat pineal gland cAMP mediates nocturnal induction of the enzyme arylalkylamine N-acetyltransferase (AA-NAT) as well as of transcription factors such as inducible cAMP early repressor (ICER), Fos-related antigen-2 (Fra-2) and JunB. Cyclic AMP stimulates the phosphorylation of the DNA binding protein cAMP response element binding protein (CREB). While cAMP-induced CREB phosphorylation appears to be a prerequisite for AA-NAT and ICER gene expression, it is not known whether CREB phosphorylation accounts for the full cAMP response of the two genes. Furthermore, the significance of CREB phosphorylation in cAMP-activated Fra-2 and JunB transcription is unknown. In the present in vitro stu…

Transcriptional Activationendocrine systemCAMP-Responsive Element ModulatorArylamine N-AcetyltransferaseProto-Oncogene Proteins c-junJUNBBlotting WesternNerve Tissue ProteinsFos-Related Antigen-2CREBPineal GlandGene Expression Regulation EnzymologicCyclic AMP Response Element ModulatorRats Sprague-DawleyOkadaic AcidGene expressionAnimalsRNA MessengerEnzyme InhibitorsPhosphorylationCyclic AMP Response Element-Binding ProteineducationMolecular BiologyTranscription factorRegulation of gene expressioneducation.field_of_studybiologyReverse Transcriptase Polymerase Chain ReactionGeneral NeuroscienceMolecular biologyRatsDNA-Binding ProteinsRepressor ProteinsBucladesinebiology.proteinPhosphorylationNeurology (clinical)CREB1Proto-Oncogene Proteins c-fosSignal TransductionTranscription FactorsDevelopmental BiologyBrain Research
researchProduct

PCF11 links alternative polyadenylation to formation and spontaneous regression of neuroblastoma

2018

AbstractDiversification at the transcriptome 3’end is an important and evolutionarily conserved layer of gene regulation associated with differentiation and dedifferentiation processes. However the underlying mechanisms and functional consequences are poorly defined. Here, we identify extensive transcriptome-3’end-alterations in neuroblastoma, a tumour entity with a paucity of recurrent somatic mutations and an unusually high frequency of spontaneous regression. Utilising extensive RNAi-screening we reveal the landscape and drivers of transcriptome-3’end-diversification, discovering PCF11 as critical regulator, directing alternative polyadenylation (APA) of hundreds of transcripts including…

TranscriptomeRegulation of gene expressionPolyadenylationMechanism (biology)RegulatorComputational biologyBiologyCell fate determinationCell cycleReprogramming
researchProduct

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
researchProduct

Homeostasis in the Central Dogma of molecular biology: the importance of mRNA instability

2019

Cell survival requires the control of biomolecule concentration, i.e. biomolecules should approach homeostasis. With information-carrying macromolecules, the particular concentration variation ranges depend on each type: DNA is not buffered, but mRNA and protein concentrations are homeostatically controlled, which leads to the ribostasis and proteostasis concepts. In recent years, we have studied the particular features of mRNA ribostasis and proteostasis in the model organism S. cerevisiae. Here we extend this study by comparing published data from three other model organisms: E. coli, S. pombe and cultured human cells. We describe how mRNA ribostasis is less strict than proteostasis. A co…

TranslationTranscription GeneticEvolutionRNA Stabilityved/biology.organism_classification_rank.speciestranslationCentral dogma of molecular biologySaccharomyces cerevisiaeBiologyRibostasisEvolution Molecular03 medical and health scienceschemistry.chemical_compound0302 clinical medicineTranscription (biology)evolutionSchizosaccharomycesmrna stabilityProtein stabilityEscherichia coliHomeostasisHumansRNA MessengerModel organismribostasisMolecular BiologyPoint of View030304 developmental biologyRegulation of gene expression0303 health sciencesMessenger RNAproteostasisved/biologyCell growthProteinsCell BiologyDNACell biologyProteostasischemistryprotein stabilityGene Expression Regulation030220 oncology & carcinogenesisProteostasisTranscriptionDNAHeLa Cells
researchProduct

piRNAclusterDB 2.0: update and expansion of the piRNA cluster database.

2021

Abstract PIWI-interacting RNAs (piRNAs) and their partnering PIWI proteins defend the animal germline against transposable elements and play a crucial role in fertility. Numerous studies in the past have uncovered many additional functions of the piRNA pathway, including gene regulation, anti-viral defense, and somatic transposon repression. Further, comparative analyses across phylogenetic groups showed that the PIWI/piRNA system evolves rapidly and exhibits great evolutionary plasticity. However, the presence of so-called piRNA clusters as the major source of piRNAs is common to nearly all metazoan species. These genomic piRNA-producing loci are highly divergent across taxa and critically…

Transposable elementSmall RNAendocrine systemAcademicSubjects/SCI00010Sequencing dataPiwi-interacting RNADatasets as TopicBiologycomputer.software_genreGermlineEvolution Molecular03 medical and health sciences0302 clinical medicineDatabases GeneticGeneticsAnimalsCluster AnalysisHumansDatabase IssueRNA Small InterferingPhylogeny030304 developmental biologyRegulation of gene expression0303 health sciencesInternetGenomePhylogenetic treeDatabaseurogenital systemGenetic LociArgonaute ProteinsDNA Transposable Elementscomputer030217 neurology & neurosurgerySoftwareNucleic acids research
researchProduct

MMP-10/stromelysin-2 promotes invasion of head and neck cancer.

2011

BackgroundPeriostin, IFN-induced transmembrane protein 1 (IFITM1) and Wingless-type MMTV integration site family, member 5B (Wnt-5b) were previously identified as the invasion promoted genes of head and neck squamous cell carcinoma (HNSCC) by comparing the gene expression profiles between parent and a highly invasive clone. We have previously reported that Periostin and IFITM1 promoted the invasion of HNSCC cells. Here we demonstrated that Wnt-5b overexpression promoted the invasion of HNSCC cells. Moreover, stromelysin-2 (matrix metalloproteinase-10; MMP-10) was identified as a common up-regulated gene among Periostin, IFITM1 and Wnt-5b overexpressing HNSCC cells by using microarray data s…

Tumor PhysiologyClone (cell biology)p38 Mitogen-Activated Protein KinasesMetastasisMetastasisMolecular Cell BiologyBasic Cancer ResearchNeoplasm MetastasisRegulation of gene expressionGene knockdownMultidisciplinaryHead and Neck cancerQRTransfectionHead and Neck TumorsExtracellular MatrixUp-RegulationGene Expression Regulation NeoplasticOncologyHead and Neck NeoplasmsGene Knockdown TechniquesCarcinoma Squamous CellMedicineResearch ArticleScience490Oral MedicineBiologyPeriostinHead and Neck Squamous Cell CarcinomaMatrix Metalloproteinase 10stomatognathic systemSettore MED/28 - Malattie OdontostomatologicheCell Line TumormedicineCancer Detection and Diagnosisotorhinolaryngologic diseasesHumansNeoplasm Invasiveness490BiologyExtracellular Matrix AdhesionsProtein Kinase InhibitorsneoplasmsMicroarray analysis techniquesCancers and Neoplasmsmedicine.diseaseMolecular biologyHead and neck squamous-cell carcinomaAntigens DifferentiationWnt Proteinsstomatognathic diseasesCancer researchCell Adhesion MoleculesPLoS ONE
researchProduct

Organization and expression of the chum salmon insulin-like growth factor II gene

1997

AbstractIGF-II plays an important role in growth and development of vertebrates. In the present study, the characterization of the first fish IGF-II gene, chum salmon IGF-II, is described. The sIGF-II gene consists of four exons, spanning a region of 9 kbp, that encode the 214 aa IGF-II precursor. While the amino acid sequences of fully processed IGF-II of salmon and mammalian species are very similar, the prepro-peptide sequence deviates extensively in the signal- and E-peptide domains. The transcription initiation site of the sIGF-II gene was localized within a 30 nt region employing RT-PCR. Using sIGF-II promoter-luciferase constructs it was demonstrated that the sIGF-II gene has a relat…

Untranslated regionBase pairMolecular Sequence DataBiophysicsBiologyTransfectionPolymerase Chain ReactionBiochemistryExonSalmonStructural BiologyGene expressionTumor Cells CulturedGeneticsAnimalsHumansProtein PrecursorsPromoter Regions GeneticInsulin-like growth factor IIMolecular BiologyGeneDNA PrimersGeneticsRegulation of gene expressionchemistry.chemical_classificationBase SequencefungiExonsCell BiologyTransfectionRecombinant ProteinsAmino acidGene structureOncorhynchus ketaFishGene Expression RegulationchemistryOncorhynchus mykissGene expressionFEBS Letters
researchProduct

The KH-type splicing regulatory protein (KSRP) regulates type III interferon expression post-transcriptionally.

2019

Abstract Type III interferons (IFNs) are the latest members of the IFN family. They play an important role in immune defense mechanisms, especially in antiviral responses at mucosal sites. Moreover, they control inflammatory reactions by modulating neutrophil and dendritic cell functions. Therefore, it is important to identify cellular mechanisms involved in the control of type III IFN expression. All IFN family members contain AU-rich elements (AREs) in the 3′-untranslated regions (3′-UTR) of their mRNAs that determine mRNA half-life and consequently the expressional level of these cytokines. mRNA stability is controlled by different proteins binding to these AREs leading to either stabili…

Untranslated regionImmunoprecipitationRNA SplicingBiochemistry03 medical and health sciencesMice0302 clinical medicineInterferonCell Line TumormedicineAnimalsHumansHeterogeneous Nuclear Ribonucleoprotein D0Heterogeneous-Nuclear Ribonucleoprotein DMolecular Biology3' Untranslated Regions030304 developmental biologyRegulation of gene expressionMice Knockout0303 health sciencesMessenger RNABinding SitesChemistryRNA-Binding ProteinsCell BiologyDendritic cellCell biology030220 oncology & carcinogenesisRNA splicingTrans-ActivatorsInterferonsFunction (biology)medicine.drugThe Biochemical journal
researchProduct