Search results for "Trk receptor"

showing 10 items of 15 documents

11q Deletion or ALK Activity Curbs DLG2 Expression to Maintain an Undifferentiated State in Neuroblastoma

2020

High-risk 11q deleted neuroblastomas typically display undifferentiated/poorly differentiated morphology. Neuroblastoma is thought to develop from Schwann cell precursors and undifferentiated neural crest (NC) derived cells. It is therefore vital to understand mechanisms involved in the block of differentiation. We identify an important role for oncogenic ALK-ERK1/2-SP1 signaling in maintenance of undifferentiated NC-derived progenitors via repression of DLG2, a tumor suppressor in neuroblastoma. DLG2 is expressed in the ‘bridge signature’ that represents the transcriptional transition state when neural crest cells or Schwann Cell Precursors become chromaffin cells of the adrenal gland. We …

0301 basic medicineTranscription GeneticCarcinogenesisChromaffin CellsRetinoic acidlaw.inventionNeuroblastomachemistry.chemical_compound0302 clinical medicinelawNerve Growth FactorMedicine and Health Sciencesretinoic acidAnaplastic Lymphoma Kinaselcsh:QH301-705.5NeuronsMice Inbred BALB CNeural crestCell DifferentiationPrognosisCandidate Tumor Suppressor GeneDLG2Up-RegulationCell biologyGene Expression Regulation NeoplasticERKPhenotypeTreatment Outcomemedicine.anatomical_structureFemaleChromosome Deletiontumor suppressorMAP Kinase Signaling SystemSp1 Transcription FactorSchwann cellGenetics and Molecular BiologyTretinoinBiologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesAdrenergic AgentsCell Line TumorNeuroblastomamedicineAnimalsHumansProgenitor cellGenePsychological repressionCell ProliferationChromosomes Human Pair 11Tumor Suppressor Proteinsmedicine.disease030104 developmental biologyALKlcsh:Biology (General)chemistryTrk receptorGeneral BiochemistrySuppressorSchwann CellsGuanylate Kinases030217 neurology & neurosurgerySSRN Electronic Journal
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Identification of Differentially Expressed Genes in Papillary Thyroid Carcinomas With and Without Rearrangements of the Tyrosine Kinase Receptors RET…

2005

Background The transforming capacities of RET and/or NTRK1 chimeric oncogenes as well as the molecular background of non-rearranged papillary thyroid carcinomas (PTCs) remain to be elucidated. To assess altered gene expression, we examined PTCs with and without tyrosine kinase receptor rearrangements by mRNA differential display (DD). Materials and methods Six of 13 PTCs examined harbored RET chimeras (3× RET/PTC1, 1× RET/PTC3) and/or NTRK1 chimeras (2× trk, 1× TRK-T3, 2 unknown TRK hybrids). The method of DD analysis was refined by a novel fragment-recovery technique using a high-performance fluorescence scanner. Results Of 500 up- or down-regulated mRNA transcripts, 19 selected fragments …

AdultMaleAdolescentendocrine system diseasesDown-RegulationBiologyReceptor tyrosine kinaseGene expressionHumansThyroid NeoplasmsReceptor trkAGeneAgedCell ProliferationGene RearrangementRegulation of gene expressionGene Expression ProfilingProto-Oncogene Proteins c-retGene rearrangementMiddle AgedCarcinoma PapillaryUp-RegulationGene Expression Regulation NeoplasticGene expression profilingTumor progressionTrk receptorDisease ProgressionCancer researchbiology.proteinFemaleSurgeryJournal of Surgical Research
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Postsynaptic Secretion of BDNF and NT-3 from Hippocampal Neurons Depends on Calcium–Calmodulin Kinase II Signaling and Proceeds via Delayed Fusion Po…

2007

The mammalian neurotrophins (NTs) NGF, BDNF, NT-3, and NT-4 constitute a family of secreted neuronal growth factors. In addition, NTs are implicated in several forms of activity-dependent synaptic plasticity. Although synaptic secretion of NTs has been described, the intracellular signaling cascades that regulate synaptic secretion of NTs are far from being understood. Analysis of NT secretion at the subcellular level is thus required to resolve the role of presynaptic and postsynaptic NT secretion for synaptic plasticity. Here, we transfected cultures of dissociated rat hippocampal neurons with green fluorescent protein-tagged versions of BDNF and NT-3, respectively, and identified NT vesi…

Calcium Channels L-TypeBiologyNeurotransmissionInhibitory postsynaptic potentialHippocampusReceptors N-Methyl-D-AspartateSynaptic TransmissionExocytosisNeurotrophin 3Postsynaptic potentialCa2+/calmodulin-dependent protein kinaseAnimalsCalcium SignalingNeuronsBrain-Derived Neurotrophic FactorGeneral NeuroscienceRyanodine Receptor Calcium Release ChannelLong-term potentiationArticlesCyclic AMP-Dependent Protein KinasesRatsCell biologynervous systemBiochemistryTrk receptorCalcium-Calmodulin-Dependent Protein KinasesSynapsesSynaptic plasticityThapsigarginCalcium-Calmodulin-Dependent Protein Kinase Type 2Postsynaptic densityThe Journal of Neuroscience
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Role of SHP2 for FLT3-dependent proliferation and transformation in 32D cells.

2008

Fms-like tyrosine kinase 3 (FLT3) is a class III receptor tyrosine kinase, which plays a role in proliferation and differentiation of B-cell progenitors, myelomonocytic and dendritic cells, as well as in the maintenance of pluripotent hematopoietic stem cells (reviewed in Stirewalt and Radich,1and Schmidt-Arras et al.2). Recently, FLT3 has received much attention as an important oncoprotein. Mutations in FLT3 that lead to constitutive activation are among the most common molecular lesions found in acute myeloid leukemia.3 The most prevalent type of mutations result in internal tandem duplications (ITD) of amino-acid stretches in the juxtamembrane domain of FLT3. FLT3-ITD is constitutively a…

Cancer ResearchMyeloidProtein Tyrosine Phosphatase Non-Receptor Type 11Biologymedicine.disease_causeReceptor tyrosine kinaseCell LineMicefluids and secretionshemic and lymphatic diseasesmedicineAnimalsHumansRNA Small InterferingCell ProliferationMice Inbred C3Hhemic and immune systemsHematologyHaematopoiesismedicine.anatomical_structureCell Transformation NeoplasticOncologyfms-Like Tyrosine Kinase 3Trk receptorembryonic structuresCancer researchbiology.proteinStem cellSignal transductionCarcinogenesisTyrosine kinaseSignal TransductionLeukemia
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Neurotrophin secretion: current facts and future prospects

2003

The proteins of the mammalian neurotrophin family (nerve growth factor (NGF), brain-derived neurotrophic factor (BDNF), neurotrophin-3 (NT-3) and neurotrophin-4/5 (NT-4/5)) were originally identified as neuronal survival factors. During the last decade, evidence has accumulated implicating them (especially BDNF) in addition in the regulation of synaptic transmission and synaptogenesis in the CNS. However, a detailed understanding of the secretion of neurotrophins from neurons is required to delineate their role in regulating synaptic function. Some crucial questions that need to be addressed include the sites of neurotrophin secretion (i.e. axonal versus dendritic; synaptic versus extrasyna…

Central Nervous SystemNeuronsNeuronal PlasticityArc (protein)biologyCell SurvivalGeneral NeuroscienceSynaptogenesisLong-term potentiationAMPA receptorNeurotransmissionCell Linenervous systemNeurotrophic factorsTrk receptorbiology.proteinAnimalsHumansNerve Growth FactorsPeptidesNeuroscienceForecastingNeurotrophinProgress in Neurobiology
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Activity-Dependent Regulation of Neuronal Apoptosis in Neonatal Mouse Cerebral Cortex

2007

A massive neuronal loss during early postnatal development has been well documented in the murine cerebral cortex, but the factors that drive cells into apoptosis are largely unknown. The role of neuronal activity in developmental apoptosis was studied in organotypic neocortical slice cultures of newborn mice. Multielectrode array and whole-cell patch-clamp recordings revealed spontaneous network activity characterized by synchronized burst discharges, which could be blocked by tetrodotoxin and ionotropic glutamate receptor antagonists. The identical neuropharmacological manipulations also caused a significant increase in the number of apoptotic neurons as early as 6 h after the start of dr…

Cerebral CortexNeuronsMice Inbred BALB CNeocortexCognitive NeuroscienceGlutamate receptorAction PotentialsApoptosisBiologyReceptors N-Methyl-D-AspartateNeuroprotectionMiceCellular and Molecular NeuroscienceOrgan Culture Techniquesmedicine.anatomical_structureAnimals NewbornCerebral cortexTrk receptormedicineAnimalsNMDA receptorPremovement neuronal activityNeuroscienceIonotropic effectCerebral Cortex
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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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A novel molecular mechanism of primary resistance to FLT3-kinase inhibitors in AML

2009

Abstract Currently, FLT3 tyrosine kinase inhibitors (TKIs) are emerging as the most promising drug therapy to overcome the dismal prognosis of acute myelogenous leukemia (AML) patients harboring internal tandem duplications (ITDs) of FLT3. However, up-front drug resistance occurs in approximately 30% of patients, and molecular mechanisms of resistance are poorly understood. Here, we have uncovered a novel mechanism of primary resistance to FLT3 TKIs in AML: an FLT3 receptor harboring a nonjuxtamembrane ITD atypically integrating into the β-2 sheet of the first kinase domain (FLT3_ITD627E) induces dramatic up-regulation of the anti-apoptotic myeloid cell leukemia 1 protein (MCL-1). Using RNA…

KinaseMitogen-Activated Protein Kinase 3ImmunologySignal transducing adaptor proteinCell BiologyHematologyBiologyBiochemistryProtein kinase domainhemic and lymphatic diseasesTrk receptorFms-Like Tyrosine Kinase 3Cancer researchSignal transductionTyrosine kinaseBlood
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Bis(1H-indol-2-yl)methanones are effective inhibitors of FLT3-ITD tyrosine kinase and partially overcome resistance to PKC412A in vitro.

2009

Inhibition of the mutated fms-like tyrosine kinase 3 (FLT3) receptor tyrosine kinase is a promising therapeutic strategy in acute myeloid leukaemia (AML). However, development of resistance to FLT3 tyrosine kinase inhibitors (TKI), such as PKC412A, has been described recently. This observation may have an increasing impact on the duration of response and relapse rates in upcoming clinical trials employing FLT3-TKI. Herein we investigated two representatives of a novel class of FLT3-TKI: Bis(1H-indol-2-yl)methanones. Both compounds effectively induced apoptosis in FLT3-internal tandem duplicate (ITD)-transfected murine myeloid cells and in primary FLT3-ITD positive blasts. Combination of bot…

MAPK/ERK pathwayIndolesmedicine.drug_classAntineoplastic AgentsApoptosisTransfectionTyrosine-kinase inhibitorReceptor tyrosine kinaseCell Linefluids and secretionshemic and lymphatic diseasesmedicineTumor Cells CulturedHumansProtein kinase Bbiologyhemic and immune systemsHematologyStaurosporineIn vitroLeukemia Myeloid Acutefms-Like Tyrosine Kinase 3Drug Resistance NeoplasmTandem Repeat SequencesTrk receptorembryonic structuresFms-Like Tyrosine Kinase 3Cancer researchbiology.proteinTyrosine kinasepsychological phenomena and processesBritish journal of haematology
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Retrograde neurotrophic signaling in rat retinal ganglion cells is transmitted via the ERK5 but not the ERK1/2 pathway.

2014

Purpose Neurotrophic deprivation is considered an important event in glaucomatous retinal ganglion cell (RGC) death. However, the mitogen-activated protein kinase (MAPK) pathway transmitting axonal neurotrophic signals in RGC has not been identified. We investigated the involvement of ERK5 and ERK1/2 in retrograde axonal neurotrophic signaling in rats. Methods Adult Sprague-Dawley rats were used. Retinal immunostaining for ERK5 and MEK5 was performed. Levels of total and phosphorylated ERK5 and ERK1/2 were analyzed in retinal lysate by quantitative Western blotting. The effects of age, brain-derived neurotrophic factor (BDNF) stimulation at RGC soma (intravitreal injection) or axon ending (…

MaleRetinal Ganglion Cellsmedicine.medical_specialtyAgingSuperior ColliculiMAP Kinase Signaling SystemBlotting WesternRetinal ganglionRetinaRats Sprague-Dawley03 medical and health sciences0302 clinical medicineNeurotrophic factorsInternal medicinemedicineAnimalsAxonPhosphorylationMitogen-Activated Protein Kinase 7030304 developmental biologyBrain-derived neurotrophic factorMitogen-Activated Protein Kinase 10303 health sciencesRetinaMitogen-Activated Protein Kinase 3biologyChemistryBrain-Derived Neurotrophic FactorBrainAnatomyRatsmedicine.anatomical_structureEndocrinologynervous systemRetinal ganglion cellTrk receptorOptic Nerve InjuriesIntravitreal Injectionsbiology.proteinsense organsNeuroglia030217 neurology & neurosurgeryNeurotrophinInvestigative ophthalmologyvisual science
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