Search results for "Leukemia inhibitory factor"

showing 8 items of 18 documents

A New Type of Cytokine Receptor Antagonist Directly Targeting gp130

1998

The interleukin-6-type family of cytokines bind to receptor complexes that share gp130 as a common signal-transducing subunit. So far, receptor antagonists for interleukin-6-type cytokines have been constructed that still bind to the specific ligand binding subunit of the receptor complex, but have lost the ability to stimulate gp130. Such receptor antagonists compete for a specific receptor of a member of the cytokine family. Interleukin-6 only binds to gp130 when complexed with the interleukin-6 receptor that exists as a membrane bound and soluble molecule. Here we have constructed fusion proteins that consist of the soluble form of the human interleukin-6 receptor covalently linked to in…

Receptor complexRecombinant Fusion ProteinsNerve Tissue ProteinsOncostatin MBiologyLeukemia Inhibitory FactorBiochemistryAntigens CDCytokine Receptor gp130Enzyme-linked receptorHumansPoint Mutation5-HT5A receptorCiliary Neurotrophic FactorMolecular BiologyProtease-activated receptor 2Common gamma chainLymphokinesMembrane GlycoproteinsDose-Response Relationship DrugJanus kinase 1Interleukin-6digestive oral and skin physiologyCell BiologyReceptors Interleukin-6Growth Inhibitorsbiological factorsBiochemistryInterleukin-21 receptorCytokinesPeptidesCytokine receptorProtein BindingJournal of Biological Chemistry
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Effect of LIF-withdrawal on acetylcholine synthesis in the embryonic stem cell line CGR8 is not mediated by STAT3, PI3Ks or cAMP/PKA pathways.

2015

Acetylcholine (ACh) acts as a local cellular signaling molecule and is widely expressed in nature, including mammalian cells and embryonic stem cells. The murine embryonic stem cell line CGR8 synthesizes and releases substantial amounts of ACh. Particularly during early differentiation - a period associated with multiple alterations in geno-/phenotype functions - synthesis and release of ACh are increased by 10-fold. In murine stem cells second messengers of the STAT-3, PI3K and cAMP/PKA pathways are involved in maintaining self-renewal and pluripotency. The present experiments were designed to test whether blockers of these signaling pathways enhance ACh cell content in the presence of LIF…

STAT3 Transcription FactorCell signalingCurcuminMorpholinesImmunologyBiologyLeukemia Inhibitory FactorGene Expression Regulation Enzymologicchemistry.chemical_compoundMicePhosphatidylinositol 3-KinasesCyclic AMPImmunology and AllergyAnimalsLY294002PI3K/AKT/mTOR pathwayEmbryonic Stem CellsPharmacologySulfonamidesForskolinColforsinIsoquinolinesEmbryonic stem cellCyclic AMP-Dependent Protein KinasesAcetylcholineCell biologychemistryChromonesSecond messenger systemSignal transductionStem cellSignal TransductionInternational immunopharmacology
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REGULATORY ELEMENTS OF THE LEUKAEMIA INHIBITORY FACTOR (LIF) PROMOTER IN MURINE BONE MARROW STROMAL CELLS

1999

Leukaemia inhibitory factor (LIF) plays an important role as a haematopoietically active cytokine. As described earlier in a murine model, interleukin 1 (IL-1) induced LIF mRNA and protein expression. We utilized the murine cell line +/+-1.LDA11 to further define regulatory mechanisms of LIF expression in bone marrow stromal cells. The production of LIF mRNA is stimulated by IL-1beta, TNF-alpha, and the cAMP analogue 8-bromoadenosine 3':5'-monophosphate (8BrcAMP). LIF mRNA expression is controlled at the transcriptional level. Different fragments from -542 to -45 bp 5' upstream of the transcriptional start site of the murine LIF gene were fused to the luciferase gene. All LIF-promoter lucif…

Stromal cellRecombinant Fusion Proteinsmedicine.medical_treatmentImmunology8-Bromo Cyclic Adenosine MonophosphateBone Marrow CellsStimulationRegulatory Sequences Nucleic AcidBiologyLeukemia Inhibitory FactorBiochemistryMiceGenes ReportermedicineAnimalsHumansImmunology and AllergyLuciferaseRNA MessengerNuclear proteinPromoter Regions GeneticMolecular BiologyCells CulturedLymphokinesMessenger RNAInterleukin-6Tumor Necrosis Factor-alphaInterleukinHematologyMolecular biologyGrowth InhibitorsRecombinant ProteinsCytokinemedicine.anatomical_structureGene Expression RegulationBone marrowStromal CellsInterleukin-1Cytokine
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Sympathetic neurons can produce and respond to interleukin 6

1998

Neuronal expression of cytokines is an area of active investigation in the contexts of development, disease, and normal neural function. Although cultured rat sympathetic neurons respond very weakly to exogenous interleukin 6 (IL-6), we find that addition of soluble IL-6 receptor (sIL-6R) and IL-6 enhances neuronal survival in the absence of nerve growth factor. Neutralizing monoclonal antibodies against IL-6 block these effects. Addition of IL-6 and sIL-6R also induces a subset of neuropeptide and transmitter synthetic enzyme mRNAs identical to that demonstrated for leukemia inhibitory factor, ciliary neurotrophic factor, and oncostatin M. Both of these effects are duplicated by addition o…

Superior cervical ganglionmedicine.medical_specialtyCell SurvivalRecombinant Fusion ProteinsSuperior Cervical GanglionCiliary neurotrophic factorPC12 CellsRats Sprague-DawleyMiceParacrine signallingContactinsInternal medicinemedicineAnimalsNerve Growth FactorsRNA MessengerInterleukin 6Autocrine signallingNeural Cell Adhesion MoleculesCells CulturedNeuronsMultidisciplinarybiologyInterleukin-6Neuropeptides3T3 CellsBiological SciencesReceptors Interleukin-6RatsCell biologyAutocrine CommunicationNerve growth factorEndocrinologyAnimals Newbornbiology.proteinNeural cell adhesion moleculeLeukemia inhibitory factorCaltech Library ServicesProceedings of the National Academy of Sciences
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The Soluble Interleukin-6 Receptora

2006

biologyChemistryGeneral NeuroscienceLymphokineOncostatin MCiliary neurotrophic factorMolecular biologyGeneral Biochemistry Genetics and Molecular BiologyHistory and Philosophy of Sciencebiology.proteinLeukemia Inhibitory Factor Receptor alpha SubunitInterleukin 6ReceptorPeptide sequenceLeukemia inhibitory factorAnnals of the New York Academy of Sciences
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Soluble gp130 is the natural inhibitor of soluble interleukin-6 receptor transsignaling responses

2001

Signal transduction in response to interleukin-6 (IL-6) requires binding of the cytokine to its receptor (IL-6R) and subsequent homodimerization of the signal transducer gp130. The complex of IL-6 and soluble IL-6R (sIL-6R) triggers dimerization of gp130 and induces responses on cells that do not express membrane bound IL-6R. Naturally occurring soluble gp130 (sgp130) can be found in a ternary complex with IL-6 and sIL-6R. We created recombinant sgp130 proteins that showed binding to IL-6 in complex with sIL-6R and inhibited IL-6/sIL-6R induced proliferation of BAF/3 cells expressing gp130. Surprisingly, sgp130 proteins did not affect IL-6 stimulated proliferation of BAF/3 cells expressing …

biologySoluble Glycoprotein 130medicine.medical_treatmentOncostatin MTransfectionGlycoprotein 130BiochemistryMolecular biologyCytokinebiology.proteinmedicineSignal transductionLeukemia inhibitory factorTernary complexEuropean Journal of Biochemistry
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Receptor Recognition Sites of Cytokines Are Organized as Exchangeable Modules

1999

Interleukin-6 (IL-6) and ciliary neurotrophic factor (CNTF) are "4-helical bundle" cytokines of the IL-6 type family of neuropoietic and hematopoietic cytokines. IL-6 signals by induction of a gp130 homodimer (e.g. IL-6), whereas CNTF and leukemia inhibitory factor (LIF) signal via a heterodimer of gp130 and LIF receptor (LIFR). Despite binding to the same receptor component (gp130) and a similar protein structure, IL-6 and CNTF share only 6% sequence identity. Using molecular modeling we defined a putative LIFR binding epitope on CNTF that consists of three distinct regions (C-terminal A-helix/N-terminal AB loop, BC loop, C-terminal CD-loop/N-terminal D-helix). A corresponding gp130-bindin…

medicine.medical_specialtybiologyLeukemia inhibitory factor receptorCell BiologyCiliary neurotrophic factorGlycoprotein 130BiochemistryEpitopeCell biologyEndocrinologyInternal medicineLeukemia inhibitory factor receptor bindingmedicinebiology.proteinLeukemia Inhibitory Factor Receptor alpha SubunitBinding siteMolecular BiologyLeukemia inhibitory factorJournal of Biological Chemistry
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Oncostatin M, leukaemia-inhibitory factor and interleukin 6 trigger different effects on alpha1-proteinase inhibitor synthesis in human lung-derived …

1998

Interleukin 6 (IL-6), oncostatin M (OSM) and leukaemia-inhibitory factor (LIF) share a common signal-transducing subunit in each of their receptors and thus mediate an overlapping spectrum of biological activities. Although all of these cytokines stimulate the production of α1-proteinase inhibitor (α1-PI) in hepatocyte-derived cells, only OSM is able to up-regulate levels of this inhibitor in epithelial cells originating from the lung. In this study we characterized human lung-derived epithelial-like HTB58 cells for their ability to synthesize α1-PI after treatment with IL-6, OSM and LIF. The results demonstrate that the resistance of HTB58 cells to the effects of IL-6 and LIF was not becau…

medicine.medical_specialtyendocrine systemProtein subunitBlotting WesternOncostatin MInhibitory postsynaptic potentialBiochemistryLeukemia Inhibitory FactorInternal medicinemedicineTumor Cells CulturedHumansInterleukin 6ReceptorMolecular BiologyLungLymphokinesbiologyChemistryInterleukin-6fungiOncostatin MOncostatin M receptorEpithelial CellsCell BiologyGlycoprotein 130Blotting NorthernGrowth InhibitorsCell biologyInterleukin 31Endocrinologyalpha 1-Antitrypsinbiology.proteinPeptidesResearch ArticleThe Biochemical journal
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