Search results for "GAP-43 Protein"

showing 10 items of 10 documents

Retinoic Acid Induces Apoptosis-Associated Neural Differentiation of a Murine Teratocarcinoma Cell Line

2002

Abstract: Incubation with all-trans retinoic acid (RA) induces PCC7-Mz1 embryonic carcinoma cells to cease proliferation and to develop into a tissue-like pattern of neuronal, astroglial, and fibroblast-like derivatives over a period of several days. Concomitant with the induction of differentiation by RA, a sizable fraction of the Mz1 stem cells detaches and dies, with the maximal level of cell death achieved after 10 h of RA treatment. This RA-induced cell death fulfills all criteria of apoptosis, including nuclear condensation, intranucleosomal DNA degradation, expression of cysteine aspases (caspases), and the formation of apoptotic bodies. Apoptosis could be suppressed by the pan-caspa…

TeratocarcinomaProgrammed cell deathCellular differentiationRetinoic acidApoptosisTretinoinBiochemistryMiceCellular and Molecular Neurosciencechemistry.chemical_compoundGAP-43 ProteinTumor Cells CulturedAnimalsProtein Kinase CProtein kinase CCaspaseNeuronsbiologyCell DifferentiationGenes bcl-2Cell biologyGene Expression RegulationchemistryBiochemistryCell cultureApoptosisPhorbolbiology.proteinJournal of Neurochemistry
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Activation of gp 130 by IL-6/soluble IL-6 receptor induces neuronal differentiation

1998

Interleukin-6 (IL-6) on target cells binds to the specific IL-6 receptor (IL-6R) and subsequently induces homodimerization of the signal-transducing protein gp130. Cells which express gp130 but no IL-6R and which therefore do not respond to IL-6 can be stimulated by the complex of IL-6 and soluble IL-6R (slL-6R). Here we show that on rat pheochromocytoma cells (PC12), the combination of IL-6 and slL-6R but not IL-6 alone induces expression of c-fos, GAP-43 and neuron-specific enolase followed by neuron-specific differentiation and formation of a neuronal network. The differentiation was dose-and time-dependent and followed the same kinetics as nerve-growth factor (NGF)-induced differentiati…

EnolaseGene ExpressionBiologyBinding CompetitivePC12 CellsAntibodiesGAP-43 ProteinAntigens CDNeutralization TestsCytokine Receptor gp130NeuritesAnimalsHumansNerve Growth FactorsReceptorNeuronsMessenger RNAMembrane GlycoproteinsInterleukin-6General NeuroscienceCell DifferentiationGlycoprotein 130Receptors Interleukin-6Molecular biologyRecombinant ProteinsRatsCell biologySolubilitynervous systemTrk receptorInterleukin-6 receptorSignal transductionProto-Oncogene Proteins c-fosTyrosine kinaseEuropean Journal of Neuroscience
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Imbalance between sympathetic and sensory innervation in peritoneal endometriosis

2011

To investigate possible mechanisms of pain pathophysiology in patients with peritoneal endometriosis, a clinical study on sensory and sympathetic nerve fibre sprouting in endometriosis was performed. Peritoneal lesions (n= 40) and healthy peritoneum (n= 12) were immunostained and analysed with anti-protein gene product 9.5 (PGP 9.5), anti-substance P (SP) and anti-tyrosine hydroxylase (TH), specific markers for intact nerve fibres, sensory nerve fibres and sympathetic nerve fibres, respectively, to identify the ratio of sympathetic and sensory nerve fibres. In addition, immune cell infiltrates in peritoneal endometriotic lesions were analysed and the nerve growth factor (NGF) and interleuki…

Sensory and sympathetic innervationPathologySympathetic nervous systemSympathetic Nervous SystemInterleukin-1betaEndometriosisSubstance PSubstance PSensory Receptor CellBehavioral Neurosciencechemistry.chemical_compoundNerve FibersGAP-43 ProteinGanglia SpinalNerve Growth FactorAscitic FluidMedicineEndometriosis; Neurotransmitters; Sensory and sympathetic innervationEndometriosiNGFImmunity CellularGanglia SympatheticNeurotransmittersMiddle AgedImmunohistochemistrymedicine.anatomical_structureNerve FiberIL-1βPain generation of endometriosis-related symptomFemaleUbiquitin ThiolesteraseHumanSensory nerveAdultmedicine.medical_specialtySensory Receptor CellsTyrosine 3-MonooxygenaseNeuriteImmunologyEndometriosisYoung AdultImmune cell infiltratePeritoneumInternal medicineHumansNerve Growth FactorsNeurotransmitterCell ProliferationInflammationEndocrine and Autonomic Systemsbusiness.industryStromal Cellmedicine.diseaseSensory Receptor CellsNerve growth factorEndocrinologychemistryLaparoscopyStromal CellsbusinessChronic pelvic painBrain, Behavior, and Immunity
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The expression level of the orphan nuclear receptor GCNF (germ cell nuclear factor) is critical for neuronal differentiation.

2004

The germ cell nuclear factor (GCNF) is essential for normal embryonic development and gametogenesis. To test the prediction that GCNF is additionally required for neuronal differentiation, we used the mouse embryonal carcinoma cell line PCC7-Mz1, which represents an advantageous model to study neuronal cells from the stage of fate choice until the acquirement of functional competence. We generated stable transfectants that express gcnf sense or antisense RNA under the control of a tetracycline-regulated promoter. After retinoic acid-induced withdrawal from the cell cycle, sense clones developed a neuron network with changed properties, and the time course of neuron maturation was shortened.…

Patch-Clamp TechniquesGerm cell nuclear factorSynaptophysinDown-RegulationGene ExpressionReceptors Cytoplasmic and NuclearNerve Tissue ProteinsTretinoinBiologyNestinMiceEndocrinologyGAP-43 ProteinIntermediate Filament ProteinsNuclear Receptor Subfamily 6 Group A Member 1AnimalsRNA AntisenseMolecular BiologyNeuronsCell CycleCell PolarityCell DifferentiationGeneral MedicineCell cycleNestinCell biologyUp-RegulationNeuroepithelial cellDNA-Binding Proteinsnervous systemNeuron maturationSynaptophysinbiology.proteinNeuron differentiationStem cellMicrotubule-Associated ProteinsMolecular endocrinology (Baltimore, Md.)
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Alterations in the organization of the isocortical layer I in trisomy 22.

1999

The isocortical layer I of human fetal brains obtained from different cases of chromosomal abnormalities (trisomy 18, 21, 22) and controls without pathological disturbances were investigated histologically and immunohistochemically by using the antibodies SMI 311, SMI 35 and SMI 81 (SNAP 25) as well as antibodies against GAP 43 and calretinin. In cases of trisomy 22 the Cajal-Retzius cells in Nissl-sections and in SMI 311-immunopreparations do not reveal any alterations regarding their location or morphology. However, the axonal plexus, selectively labelled with SMI 35, normally located in layer Ib, is malpositioned in Ia. Likewise, SNAP 25- and GAP 43-immunoreactive structures, which were …

Down syndromePathologymedicine.medical_specialtyChromosomes Human Pair 21Chromosomes Human Pair 22SynaptogenesisChromosome DisordersNerve Tissue ProteinsTrisomyTrisomy 22FetusGAP-43 ProteinS100 Calcium Binding Protein GmedicineHumansGap-43 proteinChromosome AberrationsPlexusbiologyGeneral NeuroscienceSnapBrainGeneral MedicineAnatomymedicine.diseasenervous systemCalbindin 2biology.proteinCalretininDown SyndromeTrisomyChromosomes Human Pair 18Neuroscience research
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Microglial involvement in neuroplastic changes following focal brain ischemia in rats.

2009

The pathogenesis of ischemic stroke is a complex sequence of events including inflammatory reaction, for which the microglia appears to be a major cellular contributor. However, whether post-ischemic activation of microglial cells has beneficial or detrimental effects remains to be elucidated, in particular on long term brain plasticity events. The objective of our study was to determine, through modulation of post-stroke inflammatory response, to what extent microglial cells are involved in some specific events of neuronal plasticity, neurite outgrowth and synaptogenesis. Since microglia is a source of neurotrophic factors, the identification of the brain-derived neurophic factor (BDNF) as…

Brain InfarctionMaleTime FactorsNeuriteSciencePoly (ADP-Ribose) Polymerase-1SynaptophysinSynaptogenesisCell CountEnzyme-Linked Immunosorbent AssayNerve Tissue ProteinsBrain damageBiologyBrain IschemiaProinflammatory cytokineBrain ischemiaGAP-43 ProteinNeurotrophic factorsNeuroscience/Neuronal Signaling MechanismsmedicineAnimalsRats WistarCD11b AntigenNeuronal PlasticityMultidisciplinaryMicrogliaNeuroscience/Neuronal and Glial Cell BiologyBrain-Derived Neurotrophic FactorQRNeurological Disorders/Cerebrovascular DiseaseAntigens NuclearMacrophage Activationmedicine.diseaseImmunohistochemistryNeuroregenerationRatsEnzyme ActivationProtein Transportmedicine.anatomical_structureBenzamidesImmunologyMedicineMicrogliaPoly(ADP-ribose) Polymerasesmedicine.symptomNeuroscienceResearch ArticleNeurosciencePLoS ONE
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Influence of nerve growth factor in endometriosis-associated symptoms

2011

To investigate the role of the nerve growth factor (NGF) in the development of dysmenorrhea/pelvic pain in patients with endometriosis, we performed a prospective, clinical, blind study. Peritoneal fluids (PFs) were obtained from patients with histologically proven endometriosis. Patients with endometriosis were divided into 7 different groups depending on their preoperative pain score and symptomatology: patients with no pain, patients with minimal pain (dysmenorrhea, pelvic pain, or both), and patients with severe pain (dysmenorrhea, pelvic pain, or both) and were used for the neuronal growth assay with cultured chicken dorsal root ganglia (DRG) and for Western blot analyses. Dorsal root …

endometriosisEndometriosisFluorescent Antibody TechniqueChick EmbryoGastroenterologypain generation of endometriosis-related symptomSeverity of Illness Indexendometriosis; pelvic pain; sensory nerve fibersGAP-43 ProteinGanglia SpinalGermanyNerve Growth FactorAscitic FluidProspective StudiesEndometriosiProspective cohort studyCells CulturedPain MeasurementNeuronsbiologymedicine.diagnostic_testObstetrics and Gynecologypelvic painMiddle AgedBlotAnesthesiaFemalemedicine.symptomNeurotrophinHumanAdultmedicine.medical_specialtyCalcitonin Gene-Related PeptideBlotting Westernsensory nerve fibersCalcitonin gene-related peptidesensory nerve fiberYoung AdultWestern blotDysmenorrheaInternal medicinemedicineAnimalsHumansbusiness.industryAnimalPelvic painNeuronmedicine.diseaseSettore MED/40 - Ginecologia E OstetriciaProspective StudieNerve growth factorbiology.proteinbusiness
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Phosphorylation of GAP-43 (growth-associated protein of 43 kDa) by conventional, novel and atypical isotypes of the protein kinase C gene family: dif…

1996

GAP-43 (growth-associated protein of 43 kDa; also known as neuromodulin, P-57, B-50 and F-1) is a neuronal calmodulin binding protein and a major protein kinase C (PKC) substrate in mammalian brain. Here we describe the phosphorylation by and the site specificity of different PKC isotypes. The conventional PKC beta 1 and the novel PKCs delta and epsilon effectively phosphorylated recombinant GAP-43 in vitro; atypical PKC zeta did not. The K(m) values (between 0.6 and 2.3 microM) were very low, demonstrating a high-affinity interaction between kinase and substrate. All PKC isotypes were shown to phosphorylate serine-41 in GAP-43. When using a 19-amino-acid oligopeptide based on the GAP-43 ph…

PhosphopeptidesCalmodulinMolecular Sequence DataNerve Tissue ProteinsPeptidePeptide MappingBiochemistrySubstrate SpecificityGAP-43 ProteinAmino Acid SequencePhosphorylationGap-43 proteinMolecular BiologyProtein Kinase CProtein kinase Cchemistry.chemical_classificationOligopeptideMembrane GlycoproteinsbiologyKinaseBinding proteinCell BiologyMolecular biologyRecombinant ProteinsIsoenzymesKineticsBiochemistrychemistryMultigene Familybiology.proteinPhosphorylationPeptidesOligopeptidesResearch ArticleBiochemical Journal
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Anti-B-50 (GAP-43) antibodies decrease exocytosis of glutamate in permeated synaptosomes.

1999

Abstract The involvement of the protein kinase C substrate, B-50 (GAP-43), in the release of glutamate from small clear-cored vesicles in streptolysin-O-permeated synaptosomes was studied by using anti-B-50 antibodies. Glutamate release was induced from endogenous as well as 3 H -labelled pools in a [Ca2+]-dependent manner. This Ca2+-induced release was partially ATP dependent and blocked by the light-chain fragment of tetanus toxin, demonstrating its vesicular nature. Comparison of the effects of anti-B-50 antibodies on glutamate and noradrenaline release from permeated synaptosomes revealed two major differences. Firstly, Ca2+-induced glutamate release was decreased only partially by anti…

MaleGlutamic AcidBiologyIn Vitro TechniquesSynaptic vesicleExocytosisExocytosischemistry.chemical_compoundNorepinephrineAdenosine TriphosphateGAP-43 ProteinAnimalsEnzyme InhibitorsRats WistarNeurotransmitterProtein kinase CProtein Kinase CPharmacologySynaptosomeVesicleGlutamate receptorAntibodies MonoclonalIntracellular MembranesRatschemistryBiochemistryStreptolysinsBiophysicsLiberationCalciumSynaptosomesEuropean journal of pharmacology
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Synaptogenesis in the mouse olfactory bulb during glomerulus development

2008

Synaptogenesis is essential for the development of neuronal networks in the brain. In the olfactory bulb (OB) glomeruli, numerous synapses must form between sensory olfactory neurons and the dendrites of mitral/tufted and periglomerular cells. Glomeruli develop from E13 to E16 in the mouse, coincident with an increment of the neuropil in the border between the external plexiform (EPL) and olfactory nerve layers (ONL), coupled to an extensive labelling of phalloidin and GAP-43 from the ONL to EPL. We have tracked synaptogenesis in the OB during this period by electron microscopy (EM) and immunolabelling of the transmembrane synaptic vesicle glycoprotein SV-2. No SV-2 labelling or synapses we…

Olfactory systemNeuropilTime FactorsPhalloidineSynaptic MembranesSynaptogenesisGAP-43Nerve Tissue ProteinsBiologymitral cellsSynaptic TransmissionOlfactory Receptor NeuronsMiceGAP-43 ProteinOlfactory MucosaOlfactory nerveolfactory sensory neuronsNeuropilmedicineAnimalsGlomerulus (olfaction)Membrane GlycoproteinsGeneral NeuroscienceSV-2Cell DifferentiationDendritesOlfactory BulbOlfactory bulbmedicine.anatomical_structureSynapsesembryonic structuresSynaptic VesiclesOlfactory ensheathing gliaolfactory epitheliumsense organsNeuroscienceOlfactory epitheliumBiomarkers
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