Search results for "Neurotrophin"

showing 10 items of 83 documents

Regulation of neurogenesis by neurotrophins in developing spinal sensory ganglia.

2002

Neurons and glia in spinal sensory ganglia derive from multipotent neural crest-derived stem cells. In contrast to neural progenitor cells in the central nervous system, neural crest progenitors coexist with differentiated sensory neurons all throughout the neurogenic period. Thus, developing sensory ganglia are advantageous for determining the possible influence of cell-cell interactions in the regulation of precursor proliferation and neurogenesis. Neurotrophins are important regulators of neuronal survival in the developing vertebrate nervous system and, in addition, they appear to influence precursor behavior in vitro. Studies in mice carrying mutations in neurotrophin genes provide a g…

Nervous systemCentral nervous systemSensory systemReceptors Nerve Growth FactorBiologyMiceNeurotrophic factorsGanglia SpinalmedicineAnimalsNerve Growth FactorsNeurons AfferentGeneral NeuroscienceStem CellsNeurogenesisNeural crestCell DifferentiationNeural stem cellmedicine.anatomical_structurenervous systemNeural Crestbiology.proteinNeuroscienceNeurogliaCell DivisionNeurotrophinBrain research bulletin
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Interleukin-6 (IL-6) and its soluble receptor support survival of sensory neurons

1999

The cytokine interleukin-6 (IL-6) has multiple functions in the immune and hematopoietic systems. IL-6 is related to ciliary neurotrophic factor (CNTF), a trophic factor for motoneurons, sensory dorsal root ganglion (DRG) neurons, and other neuronal subpopulations. Both act via related receptor complexes, consisting of one ligand-specific α-receptor subunit (IL-6R and CNTFR, respectively) and two signal-transducing receptor components. Even though IL-6 is expressed by neurons and glia, the functions of IL-6 in the nervous system are poorly understood. Here, we report that exogenous human IL-6 promotes the survival of dissociated newborn rat DRG neurons in vitro if supplemented with soluble …

Nervous systemCytoplasmCiliary neurotrophic factorCellular and Molecular NeuroscienceDorsal root ganglionNeurotrophic factorsGanglia SpinalNerve Growth FactormedicineAnimalsHumansCiliary Neurotrophic FactorNeurons AfferentReceptorAutocrine signallingInterleukin 6Cells CulturedCell DeathDose-Response Relationship DrugbiologyInterleukin-6Receptors Interleukin-6RatsCell biologyAutocrine Communicationmedicine.anatomical_structureAnimals Newbornnervous systembiology.proteinNeuroscienceNeurotrophinJournal of Neuroscience Research
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Sensing life: regulation of sensory neuron survival by neurotrophins

2002

Neurotrophins are a family of structurally and functionally related neurotrophic factors which, in mammals, include: nerve growth factor, brain-derived neurotrophic factor, neurotrophin-3 (NT-3), and NT-4/5. In addition to their canonical role in promoting neuronal survival, these molecules appear to regulate multiple aspects of the development of the nervous system in vertebrates, including neuronal differentiation, axon elongation and target innervation, among others. Actions of neurotrophins and of their receptors in vivo are being analyzed by loss-of-function or gain-of-function experiments in mice. Here, we review the phenotypes of the primary sensory system in these mutant mouse strai…

Nervous systemGenetically modified mouseCell SurvivalMice TransgenicSensory systemReceptors Nerve Growth FactorMiceCellular and Molecular NeuroscienceNeurotrophic factorsmedicineAnimalsReceptor trkCNerve Growth FactorsNeurons AfferentAxonMolecular BiologyMice KnockoutPharmacologyMembrane GlycoproteinsbiologyBrain-Derived Neurotrophic FactorCell BiologyAnatomyProtein-Tyrosine KinasesSensory neuronmedicine.anatomical_structureNerve growth factornervous systembiology.proteinMolecular MedicineNeuroscienceSignal TransductionNeurotrophinCellular and Molecular Life Sciences
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p75NTRin the spleen: Age-dependent changes, effect of NGF and 4-methylcatechol treatment, and structural changes in p75NTR-deficient mice

2003

In addition to their well-known actions within the nervous system, neurotrophins and their receptors are involved in immune system functioning, as demonstrated by their wide distribution in lymphoid tissues and their in vitro actions on immunocompetent cells. Nevertheless, the in vivo roles of neurotrophin-receptor systems in lymphoid tissues, as well as the scope of their influence throughout development and adulthood, are yet to be clarified. In the present study, we used combined morphological and immunohistochemical techniques to investigate the presence and cellular localization of p75NTR, the pan-neurotrophin receptor protein, in rat spleen from newborns to aging individuals, and the …

Nervous systemWhite pulpmedicine.medical_specialtyPathologybiologySpleenAgricultural and Biological Sciences (miscellaneous)medicine.anatomical_structureImmune systemNerve growth factorEndocrinologyInternal medicinemedicinebiology.proteinsense organsAnatomyReceptorCellular localizationNeurotrophinThe Anatomical Record Part A: Discoveries in Molecular, Cellular, and Evolutionary Biology
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Endothelial NT-3 Delivered by Vasculature and CSF Promotes Quiescence of Subependymal Neural Stem Cells through Nitric Oxide Induction

2014

SummaryInteractions of adult neural stem cells (NSCs) with supportive vasculature appear critical for their maintenance and function, although the molecular details are still under investigation. Neurotrophin (NT)-3 belongs to the NT family of trophic factors, best known for their effects in promoting neuronal survival. Here we show that NT-3 produced and secreted by endothelial cells of brain and choroid plexus capillaries is required for the quiescence and long-term maintenance of NSCs in the mouse subependymal niche. Uptake of NT-3 from irrigating vasculature and cerebrospinal fluid (CSF) induces the rapid phosphorylation of endothelial nitric oxide (NO) synthase present in the NSCs, lea…

Nitric Oxide Synthase Type IIICell SurvivalNeuroscience(all)BiologyNitric OxideNitric oxidechemistry.chemical_compoundMiceCerebrospinal fluidNeural Stem CellsNeurotrophin 3Subependymal zoneAnimalsCells CulturedCell ProliferationNeuronsGeneral NeuroscienceEndothelial CellsCell DifferentiationNeural stem cellCell biologynervous systemchemistrybiology.proteinPhosphorylationChoroid plexusStem cellNeuroscienceNeurotrophinNeuron
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Brain-derived neurotrophic factor (Val66Met) polymorphism does not influence recovery from a post-traumatic vegetative state: a blinded retrospective…

2012

Brain-derived neurotrophic factor (BDNF) is a neurotrophin that influences neuronal plasticity throughout life. Emergence from a vegetative state (VS) after a traumatic brain injury (TBI) implies that the brain undergoes plastic changes. A common polymorphism in the BDNF gene—BDNF Val66Met (referred to herein as BDNFMet)—impairs cognitive function in healthy subjects. The aim of this study was to determine whether the BDNFMet polymorphism plays a role in the recovery of consciousness and cognitive functions in patients in a VS after a TBI. Fifty-three patients in a VS 1 month after a TBI were included in the study and genotyped for the BDNFMet polymorphism. Scores of levels of cognitive fun…

OncologyAdultMalemedicine.medical_specialtydisorders of consciousneAdolescentGenotypeTraumatic brain injuryPolymorphism Single Nucleotidevegetative stateYoung AdultNeurotrophic factorsInternal medicineNeuroplasticitymedicineHumansYoung adultPsychiatryRetrospective StudiesBrain-derived neurotrophic factorbiologytraumatic brain injuryBrain-Derived Neurotrophic FactorPersistent Vegetative Statelevels of cognitive functioninggenetic factorRetrospective cohort studyCognitionRecovery of FunctionMiddle Agedmedicine.diseasenervous systemBrain Injuriesbiology.proteinFemaleNeurology (clinical)PsychologyPolymorphism Restriction Fragment LengthNeurotrophinJournal of neurotrauma
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BDNF, but not NT-4, is necessary for normal development of Meissner corpuscles.

2005

Abstract Meissner corpuscles are rapidly adapting cutaneous mechanoreceptors depending for development on TrkB expressing sensory neurons, but it remains to be established which of the known TrkB ligands, BDNF or NT-4, is responsible of this dependence. In this study we analyze Meissner corpuscles in the digital pads of mice with target mutations in the genes encoding for either BDNF or NT-4, using immunohistochemistry and transmission-electron microscopy, and they were identified based on their morphology and expression of S100 protein. All wild-type animals as well as NT-4 −/− animals and BDNF and NT4 heterozygous animals have Meissner corpuscles that are normal in number and size. Howeve…

Pathologymedicine.medical_specialtyRatónTropomyosin receptor kinase BLigandsS100 proteinMicemedicineAnimalsReceptor trkBNerve Growth FactorsBrain-derived neurotrophic factorMice KnockoutbiologyChemistryGeneral NeuroscienceBrain-Derived Neurotrophic FactorCell biologyMechanoreceptorMice Inbred C57BLmedicine.anatomical_structurenervous systemMeissner Corpusclebiology.proteinImmunohistochemistryMechanoreceptorsNeurotrophinNeuroscience letters
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Control of Programmed Cell Death by Distinct Electrical Activity Patterns

2010

Electrical activity and sufficient supply with survival factors play a major role in the control of apoptosis in the developing cortex. Coherent high-frequency neuronal activity, which efficiently releases neurotrophins, is essential for the survival of immature neurons. We studied the influence of neuronal activity on apoptosis in the developing cortex. Dissociated cultures of the newborn mouse cerebral cortex were grown on multielectrode arrays to determine the activity patterns that promote neuronal survival. Cultures were transfected with a plasmid coding for a caspase-3-sensitive fluorescent protein allowing real-time analysis of caspase-3-dependent apoptosis in individual neurons. Ele…

Programmed cell deathCognitive NeuroscienceAction PotentialsApoptosisBiologySynaptic TransmissionMiceCellular and Molecular NeurosciencemedicineAnimalsPremovement neuronal activityCells CulturedCerebral CortexNeuronsKinaseCell biologyCortex (botany)Mice Inbred C57BLPyridazinesNerve growth factorAnimals NewbornApoptosisbiology.proteinGabazineNerve NetNeurotrophinmedicine.drugCerebral Cortex
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Activation of the p75 neurotrophin receptor through conformational rearrangement of disulphide-linked receptor dimers.

2009

Ligand-mediated dimerization has emerged as a universal mechanism of growth factor receptor activation. Recent structural studies have shown that neurotrophins interact with dimers of the p75 neurotrophin receptor (p75NTR), but the actual mechanism of receptor activation has remained elusive. Here we show that p75NTR forms disulphide-linked dimers independently of neurotrophin binding through the highly conserved Cys257 in its transmembrane domain. Mutation of Cys257 abolished neurotrophin-dependent receptor activity but did not affect downstream signaling by the p75NTR/NgR/Lingo-1 complex in response to MAG, indicating the existence of distinct, ligand-specific activation mechanisms for p7…

Protein ConformationMutantNeuronesReceptor Nerve Growth FactorMiceProtein structureChlorocebus aethiopsNerve Growth FactorLow-affinity nerve growth factor receptorRNA Small InterferingReceptorskin and connective tissue diseasesReceptors neuralsCells CulturedNeuronsCell DeathGeneral NeuroscienceNF-kappa BCell biologyTransmembrane domainSIGNALINGOligopeptidesNeurotrophinProtein BindingSignal Transductionmusculoskeletal diseasesPROTEINSNeuroscience(all)Green Fluorescent ProteinsNerve Tissue ProteinsReceptors Nerve Growth FactorSuperior Cervical GanglionBiologyTransfectionMOLNEUROArticleGrowth factor receptorAnimalsHumansProtein Interaction Domains and MotifsReceptors Growth FactorCysteineBinding SitesMembrane Proteinsbiological factorsRatsnervous systemAnimals NewbornNeurotrophin bindingMutationbiology.proteinsense organsProtein MultimerizationrhoA GTP-Binding ProteinProteïnesNeuron
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Role of interleukin-6 and soluble IL-6 receptor in region-specific induction of astrocytic differentiation and neurotrophin expression.

1999

Increasing evidence supports an essential role for interleukin-6 (IL-6) in the development, differentiation, as well as de- and re-generation of neurons in the central nervous system (CNS). Both IL-6 and its specific receptor (IL-6R) are expressed on neurons and glial cells including astrocytes. In this study, we have analyzed the responses of primary rat astrocytes of various brain regions to IL-6 with respect to morphological changes and neurotrophin expression. Since IL-6 alone failed to initiate effects on astrocytes, we have examined whether the soluble IL-6R (sIL-6R) can modulate the responsiveness of to IL-6 in these cells. For this purpose, we used a highly active fusion protein of …

Recombinant Fusion ProteinsCentral nervous systemHippocampusNeurotrophin-3HippocampusImmunoenzyme TechniquesRats Sprague-DawleyCellular and Molecular NeuroscienceNeurotrophin 3medicineAnimalsHumansNerve Growth FactorsCells CulturedCerebral CortexbiologyInterleukin-6Reverse Transcriptase Polymerase Chain ReactionCell DifferentiationImmunohistochemistryReceptors Interleukin-6RatsBlotting Southernmedicine.anatomical_structureNerve growth factornervous systemNeurologyAnimals NewbornCerebral cortexAstrocytesbiology.proteinNeurogliaNeuroscienceAstrocyteNeurotrophinGlia
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