Search results for " regulatory"

showing 10 items of 556 documents

Urokinase activates macrophage PON2 gene transcription via the PI3K/ROS/MEK/SREBP-2 signalling cascade mediated by the PDGFR-β

2009

Aims We have recently shown that urokinase plasminogen activator (uPA) increases oxidative stress (OS), cholesterol biosynthesis, and paraoxonase 2 (PON2) expression in macrophages via binding to its receptor, the uPAR. Since PON2 is regulated by both OS and cholesterol content, we hypothesized that uPA elicits a cascade of signal transduction events shared by NADPH oxidase and cholesterol biosynthesis that culminates in PON2 gene expression. Here, we investigated the signalling pathway that leads to the expression of PON2 in macrophages in response to uPA. Methods and results The increase in macrophage PON2 mRNA levels in response to uPA was shown to depend on PON2 gene promoter activation…

Transcription GeneticPhysiologyReceptor Platelet-Derived Growth Factor betaPhosphatidylinositol 3-KinasesPhysiology (medical)Gene expressionHumansExtracellular Signal-Regulated MAP KinasesTranscription factorCells CulturedMitogen-Activated Protein Kinase KinasesRegulation of gene expressionNADPH oxidasebiologyAryldialkylphosphataseKinaseMacrophagesNADPH OxidasesUrokinase-Type Plasminogen ActivatorCell biologySterol regulatory element-binding proteinUrokinase receptorGene Expression RegulationBiochemistryTissue Plasminogen Activatorbiology.proteinSignal transductionReactive Oxygen SpeciesCardiology and Cardiovascular MedicineSignal TransductionSterol Regulatory Element Binding Protein 2Cardiovascular Research
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mTOR Driven Gene Transcription Is Required for Cholesterol Production in Neurons of the Developing Cerebral Cortex

2021

AbstractDysregulated mammalian target of rapamycin (mTOR) activity is associated with various neurodevelopmental disorders ranging from idiopathic autism spectrum disorders to syndromes caused by single gene defects. This suggests that maintaining mTOR activity levels in a physiological range is essential for brain development and functioning. Upon activation, mTOR regulates a variety of cellular processes such as cell growth, autophagy and metabolism. On a molecular level, however, the consequences of mTOR activation in the brain are not well understood.Low levels of cholesterol are associated with a wide variety of neurodevelopmental disorders. We here describe numerous genes of the stero…

Transcription GeneticQH301-705.5Primary Cell CulturemTORC1Mechanistic Target of Rapamycin Complex 1BiologySREBPCatalysisArticleInorganic ChemistryMiceAutophagyTranscriptional regulationmedicineAnimalsPhysical and Theoretical ChemistryBiology (General)Molecular BiologyTranscription factorQD1-999mTORC1SpectroscopyPI3K/AKT/mTOR pathwayCerebral CortexNeuronsSterol Regulatory Element Binding ProteinsCell growthTOR Serine-Threonine KinasesOrganic Chemistrycholesterol ; NF-Y ; neurogenesis ; mTOR ; mTORC1 ; SP1 ; SREBPAutophagyGene Expression Regulation DevelopmentalcholesterolGeneral MedicineComputer Science ApplicationsSterol regulatory element-binding proteinCell biologySP1Chemistryneurogenesismedicine.anatomical_structureCCAAT-Binding FactorCerebral cortexmTORNF-YProtein KinasesSignal TransductionInternational Journal of Molecular Sciences
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Melatonin induces transcriptional regulation of Bim by FoxO3a in HepG2 cells

2012

Background: Melatonin induces apoptosis in many different cancer cell lines, including hepatocellular carcinoma cells. However, the responsible pathways have not been clearly elucidated. A member of the forkhead transcription factors' family, FoxO3a, has been implicated in the expression of the proapoptotic protein Bim (a Bcl-2-interacting mediator of cell death). In this study, we used human HepG2 liver cancer cells as an in vitro model to investigate whether melatonin treatment induces Bim through regulation by the transcription factor FoxO3a. Methods: Cytotoxicity of melatonin was compared in HepG2 hepatoblastoma cells and primary human hepatocytes. Proapoptotic Bim expression was analys…

Transcriptional ActivationCancer Researchmedicine.medical_specialtyProgrammed cell deathSmall interfering RNACarcinoma HepatocellularTranscription GeneticApoptosisFoxO3amelatoninBiologyGenetics & GenomicsMelatoninDownregulation and upregulationCell Line TumorProto-Oncogene ProteinsInternal medicinemedicineTranscriptional regulationHumansGene silencingBimPhosphorylationRNA Small InterferingPromoter Regions GeneticTranscription factorBinding SitesBcl-2-Like Protein 11Forkhead Box Protein O3Membrane ProteinsForkhead Transcription FactorsHep G2 Cellshepatocellular carcinomaCell biologyEndocrinologyOncologyHepatocytesRNA Interferencebiological phenomena cell phenomena and immunityApoptosis Regulatory ProteinsChromatin immunoprecipitationProtein Bindingmedicine.drugBritish Journal of Cancer
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Major orchestration of shikimate, early phenylpropanoid and stilbenoid pathways by Subgroup 2 R2R3-MYBs in grapevine

2021

AbstractThe stilbenoid pathway is responsible for the production of resveratrol and its derivatives in grapevine. A few transcription factors (TFs) have been previously identified as regulators of this pathway but the extent of this control is yet to be fully understood. Here we demonstrate how DNA affinity purification sequencing (DAP-Seq) allows for genome-wide TF binding site interrogation in a non-model species. We obtained 5,190 and 4,443 binding events assigned to 4,041 and 3,626 genes for MYB14 and MYB15, respectively (around 40% of peaks being located within -10kb of transcription start sites). DAP-Seq of MYB14 and MYB15 was combined with aggregate gene centred co-expression network…

Transcriptomechemistry.chemical_compoundchemistryGene regulatory networkShikimate pathwayMYBComputational biologyStilbenoidResveratrolBiologyTranscription factorGene
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Resolving the transcriptional transitions associated with oligodendrocyte generation from adult neural stem cells by single cell sequencing

2020

AbstractThe subventricular zone (SVZ) is the largest neurogenic niche in the adult forebrain. Notably, neural stem cells (NSCs) of the SVZ generate not only neurons, but also oligodendrocytes, the myelin-forming cells of the central nervous system. Transcriptomic studies have provided detailed knowledge of the molecular events that regulate neurogenesis, but little is understood about adult oligodendrogenesis from SVZ-NSCs. To address this, we performed in-depth single-cell transcriptomic analyses to resolve the major differences in neuronal and oligodendroglial lineages derived from the adult SVZ. A hallmark of adult oligodendrogenesis was the stage-specific expression of transcriptional m…

Transcriptomemedicine.anatomical_structureLineage (genetic)nervous systemNeurogenesisForebrainmedicineGene regulatory networkSubventricular zoneBiologyOligodendrocyteNeural stem cellCell biology
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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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Regulatory T Cells More Effectively Suppress Th1-Induced Airway Inflammation Compared with Th2

2011

Abstract Asthma is a syndrome with different inflammatory phenotypes. Animal models have shown that, after sensitization and allergen challenge, Th2 and Th1 cells contribute to the development of allergic airway disease. We have previously demonstrated that naturally occurring regulatory T cells (nTregs) can only marginally suppress Th2-induced airway inflammation and airway hyperresponsiveness. In this study, we investigated nTreg-mediated suppression of Th2-induced and Th1-induced acute allergic airway disease. We demonstrate in vivo that nTregs exert their suppressive potency via cAMP transfer on Th2- and Th1-induced airway disease. A comparison of both phenotypes revealed that, despite …

TransgeneImmunologyMice TransgenicInflammationT-Lymphocytes RegulatoryMiceTh2 CellsIn vivoImmunitymedicineAnimalsImmunology and AllergyPotencyCells CulturedSensitizationAsthmaInflammationMice KnockoutMice Inbred BALB Cbusiness.industryTh1 Cellsrespiratory systemmedicine.diseasePhenotypeCoculture TechniquesImmunity Innaterespiratory tract diseasesDisease Models Animalmedicine.anatomical_structureAcute DiseaseImmunologyFemaleDisease SusceptibilityBronchial Hyperreactivitymedicine.symptombusinessThe Journal of Immunology
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Interleukin-7 matures suppressive CD127(+) forkhead box P3 (FoxP3)(+) T cells into CD127(-) CD25(high) FoxP3(+) regulatory T cells.

2011

We have identified a novel interleukin (IL)-7-responsive T cell population [forkhead box P3 (FoxP3(+) ) CD4(+) CD25(+) CD127(+) ] that is comparably functionally suppressive to conventional FoxP3(+) CD4(+) CD25(+) regulatory T cells (T(regs) ). Although IL-2 is the most critical cytokine for thymic development of FoxP3(+) T(regs) , in the periphery other cytokines can be compensatory. CD25(+) CD127(+) T cells treated with IL-7 phenotypically 'matured' into the known 'classical' FoxP3(+) CD4(+) CD25(high) CD127(-) FoxP3(+) T(regs) . In freshly isolated splenocytes, the highest level of FoxP3 expression was found in CD127(+) CD25(+) T cells when compared with CD127(-) CD25(+) or CD127(+) CD25…

Translational StudiesT cellImmunologyActive Transport Cell Nucleuschemical and pharmacologic phenomenaBiologyT-Lymphocytes RegulatoryInterleukin-7 Receptor alpha SubunitInterleukin 21MiceAntigenAntigens CDT-Lymphocyte SubsetsmedicineImmunology and AllergyCytotoxic T cellAnimalsCTLA-4 AntigenIL-2 receptorInterleukin-7 receptorCells CulturedCell NucleusMice Inbred BALB CInterleukin-7autoimmunityInterleukin-2 Receptor alpha SubunitFOXP3virus diseaseshemic and immune systemsCell DifferentiationForkhead Transcription FactorsT lymphocyteMice Inbred C57BLmedicine.anatomical_structureGene Expression RegulationImmunologyLeukocyte Common AntigensFoxP3 TregClinical and experimental immunology
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Regulatory (suppressor) T cells in peripheral allograft tolerance and graft-versus-host reaction.

2004

Among the mechanisms capable of inducing peripheral tolerance, regulatory (suppressor) T cells (Treg) probably play a key role in the control of both reactivity to self-antigens and alloimmune response. Augmentation or manipulation of Treg could improve organ allograft survival or control graft-versus-host disease, thus resulting in operational tolerance. The role of this immunomanipulation as one method of inducing tolerance has yet to be clearly defined.

TransplantationGraft versus host reactionAllograft TolerancePeripheral toleranceGraft vs Host DiseaseDiseaseBiologyT-Lymphocytes RegulatoryPeripherallaw.inventionGraft vs Host ReactionlawImmunologyAllograft survivalSuppressorHumansTransplantation ToleranceTransplantation
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Immune regulation by regulatory T cells: implications for transplantation.

2003

Item does not contain fulltext The induction of antigen-specific T cell tolerance and its maintenance in the periphery are critical for the immune system to prevent autoaggressive immune responses. Our current state of knowledge about the immunoregulatory mechanisms responsible for T cell tolerance in the periphery offers new possibilities for immunomodulation to prevent transplant rejection as well as to diminish autoimmune reaction or chronic allergy. There is growing evidence that dendritic cells, besides their well-known T cell stimulatory functions, also maintain and regulate T cell tolerance in the periphery. This control function is exerted by certain maturation stages and subsets of…

TransplantationT-LymphocytesT cellImmunologyPeripheral toleranceDendritic CellsBiologyNatural killer T cellT-Lymphocytes RegulatoryCell biologyImmune toleranceTumor microenvironment [UMCN 1.3]Interleukin 21medicine.anatomical_structureImmunologyImmune TolerancemedicineHumansImmunology and AllergyCytotoxic T cellTransplantation ToleranceIL-2 receptorAntigen-presenting cell
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