Search results for "glycoproteins"

showing 10 items of 496 documents

Signaling pathways of the TREM-1- and TLR4-mediated neutrophil oxidative burst.

2008

The triggering receptor expressed on myeloid cells 1 (TREM-1) is involved in the innate inflammatory response to microbial infections. Activation and expression of TREM-1 by polymorphonuclear neutrophils (PMN) occurs in concert with Toll-like receptors (TLR) such as TLR4 for bacterial lipopolysaccharide. However, it is currently unclear how this is mediated on a molecular level. Using pharmacological inhibitors and Western blot analysis we demonstrate that phosphatidyl inositide 3-kinase, phospholipase C and the mitogen-activated kinase p38MAPK are essential for the TREM-1- and TLR4-induced oxidative burst of human PMN. The activation of protein kinase B and extracellular signal-related kin…

Models MolecularLipopolysaccharideNeutrophilsBlotting WesternCell Separationp38 Mitogen-Activated Protein Kinaseschemistry.chemical_compoundPhosphatidylinositol 3-KinasesImmunology and AllergyHumansReceptors ImmunologicReceptorProtein kinase BRespiratory BurstMembrane GlycoproteinsPhospholipase CKinaseFlow CytometryTriggering Receptor Expressed on Myeloid Cells-1Respiratory burstCell biologyEnzyme ActivationToll-Like Receptor 4chemistryTLR4Signal transductionProto-Oncogene Proteins c-aktSignal TransductionJournal of innate immunity
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Binding Properties of HABA-Type Azo Derivatives to Avidin and Avidin-Related Protein 4

2006

Summary The chicken genome encodes several biotin-binding proteins, including avidin and avidin-related protein 4 (AVR4). In addition to D -biotin, avidin binds an azo dye compound, 4-hydroxyazobenzene-2-carboxylic acid (HABA), but the HABA-binding properties of AVR4 are not yet known. Differential scanning calorimetry, UV/visible spectroscopy, and molecular modeling were used to analyze the binding of 15 azo molecules to avidin and AVR4. Significant differences are seen in azo compound preferences for the two proteins, emphasizing the importance of the loop between strands β3 and β4 for azo ligand recognition; information on these loops is provided by the high-resolution (1.5 A) X-ray stru…

Models MolecularMolecular modelOvalbuminProtein ConformationClinical BiochemistryCrystallography X-RayLigandsSensitivity and SpecificityBiochemistryAvian Proteinschemistry.chemical_compoundUltraviolet visible spectroscopyBiotinDrug DiscoveryAnimalsMolecular BiologyGlycoproteinschemistry.chemical_classificationPharmacologyAzo compoundBinding SitesbiologyCalorimetry Differential ScanningMolecular StructureStereoisomerismGeneral MedicineLigand (biochemistry)AvidinCombinatorial chemistryCHEMBIOchemistryBiochemistryBiotinylationbiology.proteinMolecular MedicineSpectrophotometry UltravioletGlycoproteinAzo CompoundsChickensAvidinChemistry & Biology
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Elucidation of Carbohydrate Molecular Interaction Mechanism of Recombinant and Native ArtinM

2013

[EN] The quartz crystal microbalance (QCM) technique has been applied for monitoring the biorecognition of ArtinM lectins at low horseradish peroxidase glycoprotein (HRP) concentrations, using a simple kinetic model based on Langmuir isotherm in previous work.(18) The latter approach was consistent with the data at dilute conditions but it fails to explain the small differences existing in the jArtinM and rArtinM due to ligand binding concentration limit. Here we extend this analysis to differentiate sugar-binding event of recombinant (rArtinM) and native (jArtinM) ArtinM lectins beyond dilute conditions. Equivalently, functionalized quartz crystal microbalance with dissipation monitoring (…

Models MolecularPROTEIN ADSORPTIONSURFACEKM+Horseradish peroxidaselaw.inventionsymbols.namesakelawQUARTZ-CRYSTAL MICROBALANCEBINDINGQUIMICA ANALITICAMaterials ChemistryPhysical and Theoretical ChemistrySPECIFICITYGlycoproteinsBinding SitesChromatographybiologyChemistryLectinLangmuir adsorption modelQuartz crystal microbalanceQuartz Crystal Microbalance TechniquesLECTINRecombinant ProteinsSurfaces Coatings and FilmsMannose-Binding LectinsSolvation shellHYDRATION-SHELLQuartz Crystal Microbalance TechniquesBiophysicsbiology.proteinRecombinant DNAsymbolsPlant LectinsBIOMOLECULAR ADSORPTIONARTOCARPINProtein adsorption
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Sizzled Is Unique among Secreted Frizzled-related Proteins for Its Ability to Specifically Inhibit Bone Morphogenetic Protein-1 (BMP-1)/Tolloid-like …

2012

BMP-1/tolloid-like proteinases (BTPs) are major enzymes involved in extracellular matrix assembly and activation of bioactive molecules, both growth factors and anti-angiogenic molecules. Although the control of BTP activity by several enhancing molecules is well established, the possibility that regulation also occurs through endogenous inhibitors is still debated. Secreted frizzled-related proteins (sFRPs) have been studied as possible candidates, with highly contradictory results, after the demonstration that sizzled, a sFRP found in Xenopus and zebrafish, was a potent inhibitor of Xenopus and zebrafish tolloid-like proteases. In this study, we demonstrate that mammalian sFRP-1, -2, and …

Models MolecularProteasesFrizzledanimal structuresMolecular Sequence DataXenopusXenopus ProteinsBiochemistryBone morphogenetic protein 1Bone Morphogenetic Protein 1MiceXenopus laevismedicineAnimalsHumansProtease InhibitorsAmino Acid SequenceMolecular BiologyZebrafishGlycoproteinsSequence Homology Amino AcidbiologyExtracellular matrix assemblyfungiIntracellular Signaling Peptides and ProteinsTissue Inhibitor of MetalloproteinasesCell BiologySurface Plasmon Resonancebiology.organism_classificationMatrix MetalloproteinasesRecombinant ProteinsExtracellular MatrixWnt ProteinsBiochemistryMechanism of actionembryonic structuresEnzymologySignal transductionmedicine.symptomPeptide HydrolasesSignal TransductionJournal of Biological Chemistry
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Membrane insertion and topology of the TRanslocating chain-Associating Membrane protein (TRAM)

2011

The translocating chain-associating membrane protein (TRAM) is a glycoprotein involved in the translocation of secreted proteins into the endoplasmic reticulum (ER) lumen and in the insertion of integral membrane proteins into the lipid bilayer. As a major step toward elucidating the structure of the functional ER translocation/insertion machinery, we have characterized the membrane integration mechanism and the transmembrane topology of TRAM using two approaches: photocross-linking and truncated C-terminal reporter tag fusions. Our data indicate that TRAM is recognized by the signal recognition particle and translocon components, and suggest a membrane topology with eight transmembrane seg…

Models MolecularProtein ConformationEndoplasmic ReticulumModels BiologicalProtein Structure SecondaryMiceMembranes (Biologia)Structural BiologyAnimalsMolecular BiologyIntegral membrane proteinSignal recognition particleMembrane GlycoproteinsbiologyMembrane transport proteinPeripheral membrane proteinProteïnes de membranaIntracellular MembranesTransloconTransmembrane proteinProtein Structure TertiaryMembrane proteinBiochemistryMembrane topologybiology.proteinBiophysics
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Interleukin-6 and Soluble Interleukin-6 Receptor: Direct Stimulation of gp130 and Hematopoiesis

1998

T HE INTERLEUKIN-6 (IL-6) family of cytokines acts via receptor complexes that contain at least one subunit of the signal transducing protein gp130.[1][1] The family comprises IL-6, IL-11, ciliary neurotrophic factor (CNTF), cardiotrophin-1 (CT-1), leukemia inhibitory factor (LIF), and oncostatin M

Models Molecularendocrine systemmedicine.medical_specialtyRecombinant Fusion ProteinsImmunologyMice TransgenicLeukemia inhibitory factor receptorOncostatin MBiologyCiliary neurotrophic factorBiochemistryDesigner DrugsMiceStructure-Activity RelationshipAntigens CDInternal medicineCytokine Receptor gp130medicineAnimalsHumansInterleukin 6Membrane GlycoproteinsInterleukin-6Oncostatin MOncostatin M receptorCell DifferentiationReceptors InterleukinCell BiologyHematologyHematopoietic Stem CellsGlycoprotein 130Receptors Interleukin-6Molecular biologyHematopoiesisEndocrinologyLiverSolubilitybiology.proteinSignal transductionPeptidesLeukemia inhibitory factorSpleenBlood
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Leucine-58 in the putative 5th helical region of human interleukin (IL)-6 is important for activation of the IL-6 signal transducer, gp130

1995

A model of the tertiary structure of human IL-6, derived from the crystal-structure of granulocyte-colony stimulating factor, reveals a 5th helical region in the loop between the first and second alpha-helix. To investigate the importance of this region for biological activity of IL-6, residues Glu-52, Ser-53, Ser-54, Lys-55, Glu-56, Leu-58, and Glu-60 were individually replaced by alanine. IL-6.Leu-58Ala displayed a 5-fold reduced biological activity on the IL-6 responsive human cell lines XG-1 and A375. This reduction in bioactivity was shown to be due to a decreased capacity of the mutant protein to trigger IL-6 receptor-alpha-chain-dependent binding to the IL-6 signal transducer, gp130.

Models Molecularmedicine.medical_specialtyMolecular Sequence DataBiophysicsBiologyBiochemistryBinding CompetitiveProtein Structure SecondaryMiceStructure-function analysisgp130Structural BiologyMutant proteinAntigens CDLeucineInternal medicineGeneticsmedicineCytokine Receptor gp130Tumor Cells CulturedAnimalsHumansAmino Acid SequenceMolecular BiologyAlanineHybridomasMembrane GlycoproteinsBase SequenceInterleukin-6InterleukinBiological activityCell BiologyReceptors InterleukinGlycoprotein 130Receptors Interleukin-6Protein tertiary structureCell biologyProtein Structure TertiaryEndocrinologyMutationLeucineSignal transductionSequence AlignmentCell DivisionSignal TransductionFEBS Letters
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The family of the IL-6-type cytokines: specificity and promiscuity of the receptor complexes.

1997

The cytokines IL-6, LIF, CNTF, OSM, IL-11, and CT-1 have been grouped into the family of IL-6-type cytokines, since they all require gp130 for signal transduction. Interestingly, gp130 binds directly to OSM, whereas complex formation with the other cytokines depends on additional receptor subunits. Only limited structural information on these cytokines and their receptors is available. X-ray structures have been solved for the cytokines LIF and CNTF, whose up-up-down-down four-helix bundle is common to all of these cytokines, and for the receptors of hGH and prolactin, which contain two domains with a fibronectin III-like fold. Since cocrystallization and x-ray analysis of the up to four di…

Models Molecularmedicine.medical_treatmentMolecular Sequence DataBiologyBiochemistryMiceInterleukin 20Structural BiologyAntigens CDmedicineCytokine Receptor gp130AnimalsHumansAmino Acid SequenceReceptorMolecular BiologyCommon gamma chainMembrane GlycoproteinsSequence Homology Amino AcidInterleukin-6Rational designReceptors InterleukinGlycoprotein 130Receptors Interleukin-6Cell biologyFibronectinCytokineImmunologybiology.proteinCytokinesSignal transductionProteins
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Redistribution of aquaporin-4 in human glioblastoma correlates with loss of agrin immunoreactivity from brain capillary basal laminae

2003

Vasogenic edema is one of the most serious clinical problems in brain tumors and tightly connected to water shifts between the different fluid compartments in the brain. Aquaporin water channels have been recognized to have an important impact on the development of edematous swelling in the brain. Astrocytes, which are believed to induce or at least maintain the blood-brain barrier in the brain capillary endothelial cells, express the aquaporin isoform AQP4. Normally, AQP4 is highly concentrated in the glial membrane where astrocytes contact mesenchymal space, such as perivascular or brain superficial regions. Parenchymal membranes do not show any immunocytochemical AQP4-specific signal. We…

Models NeurologicalSynucleinsAquaporinNerve Tissue ProteinsBiologyAquaporinsBlood–brain barrierBasement MembranePathology and Forensic MedicineCellular and Molecular NeuroscienceGliomaUtrophinmedicineExtracellularAnimalsHumansAgrinDystroglycansAquaporin 4Membrane GlycoproteinsAgrinBrain NeoplasmsEndothelial Cellsmedicine.diseaseImmunohistochemistryRatsCell biologyCytoskeletal Proteinsmedicine.anatomical_structureAquaporin 4Immunologysense organsNeurology (clinical)GlioblastomaAstrocyteActa Neuropathologica
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The membrane distal half of gp130 is responsible for the formation of a ternary complex with IL-6 and the IL-6 receptor

1995

AbstractGp130 is the signal transducing subunit of the interleukin-6 receptor. Signaling is initiated by the complex formation of gp130 with IL-6 bound to the IL-6 receptor (IL-6R). We have subdivided the extracellular domain of gp130 in two parts and expressed the mutant proteins as soluble IgG fusion proteins in COS-7 cells. By studying the formation of the ternary complex we show that the membrane distal half of gp130 which contains a cytokine receptor domain is responsible for the interaction with the IL-6/IL-6R complex. Interestingly this is the same region which is believed to be involved in specific recognition of the related cytokines LIF, OM, and probably also of CNTF and IL-11.

Molecular Sequence DataBiophysicsBiologyBiochemistryCytokine receptor domainCell Linegp130Structure-function analysisAntigens CDStructural BiologyCytokine Receptor gp130GeneticsAnimals5-HT5A receptorReceptorMolecular BiologyTernary complexMembrane GlycoproteinsBase SequenceInterleukin-6digestive oral and skin physiologyHaplorhiniReceptors InterleukinCell BiologyGlycoprotein 130Receptors Interleukin-6Fusion proteinbiological factorsCell biologyOligodeoxyribonucleotidesInterleukin-6 receptorCancer researchSignal transductionCytokine receptorProtein BindingSignal TransductionFEBS Letters
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