Search results for "GABAergic"

showing 10 items of 131 documents

Identification of a gene overexpressed in aphids reared under short photoperiod.

2003

Most aphids develop a cyclic parthenogenesis life-cycle. After several generations of viviparously produced parthenogenetic females, follows a single annual generation of sexual individuals, usually in autumn, that mate and lay the sexual eggs. Shortening of photoperiod at the end of the summer (together with temperature) is a key factor inducing the sexual response. Currently no genes involved in the cascade of events that lead to the appearance of sexual forms have been reported. After a Differential Display RT-PCR survey performed on Acyrthosiphon pisum aphids, we identified a gene that is overexpressed in aphids reared under short photoperiod conditions that induce sexuality in this spe…

DNA ComplementaryPhotoperiodMolecular Sequence DataBiologyBiochemistrySexual Behavior AnimalComplementary DNAAnimalsCircadian rhythmAmino Acid SequenceCloning MolecularMolecular BiologyGeneDNA PrimersphotoperiodismGeneticsDifferential displayBase SequenceSequence Homology Amino Acidfood and beveragesParthenogenesisbiology.organism_classificationAcyrthosiphon pisumInsect ScienceAphidsGABAergicInsect ProteinsInsect biochemistry and molecular biology
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An update to Hippocampome.org by integrating single-cell phenotypes with circuit function in vivo.

2021

Understanding brain operation demands linking basic behavioral traits to cell-type specific dynamics of different brain-wide subcircuits. This requires a system to classify the basic operational modes of neurons and circuits. Single-cell phenotyping of firing behavior during ongoing oscillations in vivo has provided a large body of evidence on entorhinal–hippocampal function, but data are dispersed and diverse. Here, we mined literature to search for information regarding the phase-timing dynamics of over 100 hippocampal/entorhinal neuron types defined in Hippocampome.org. We identified missing and unresolved pieces of knowledge (e.g., the preferred theta phase for a specific neuron type) a…

DYNAMICSGABAERGIC INTERNEURONPhysiologyAction PotentialsSocial SciencesHippocampal formationHippocampusNeuron typesBehavioral traitsMice0302 clinical medicineAnimal CellsMedicine and Health SciencesEntorhinal CortexPsychologyNETWORKBiology (General)Function (engineering)media_commonNeurons0303 health sciencesPHYSIOLOGICAL-PROPERTIESGeneral NeurosciencePyramidal CellsMethods and ResourcesBrainPhenotypeMOSSY CELLS3. Good healthElectrophysiologyPhenotypeAnatomyCellular TypesGeneral Agricultural and Biological SciencesGanglion CellsHeuristic (computer science)QH301-705.5media_common.quotation_subjectNeurophysiologyBiologyMembrane PotentialGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesAnimalsin vivo -menetelmähippokampus030304 developmental biologyBehaviorNeuron typeGeneral Immunology and MicrobiologyGranule CellsTHETA OSCILLATIONShermoverkot (biologia)Biology and Life SciencesCell BiologyNeuronal DendritesSILICON PROBESRatshermosolutBrain stateCellular Neuroscience1182 Biochemistry cell and molecular biologyfenotyyppi3111 BiomedicineNeuroscience030217 neurology & neurosurgeryNeurosciencePLoS biology
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Coincident glutamatergic depolarizations enhance GABAA receptor-dependent Cl- influx in mature and suppress Cl- efflux in immature neurons.

2021

The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across membranes. However, the Cl--fluxes through GABAA receptors alter the intracellular Cl- concentration ([Cl-]i) and in turn attenuate GABAergic responses, a process termed ionic plasticity. Recently it has been shown that coincident glutamatergic inputs significantly affect ionic plasticity. Yet how the [Cl-]i changes depend on the properties of glutamatergic inputs and their spatiotemporal relation to GABAergic stimuli is unknown. To investigate this issue, we used compartmental biophysical models of Cl- dynamics simulating either a simple ball-and-stick topology or a reconstructed CA3 neuron. Th…

Databases FactualPhysiologyNervous SystemBiochemistrySynaptic TransmissionAnimal CellsMedicine and Health SciencesCl effluxBiology (General)Receptorgamma-Aminobutyric AcidNeuronsNeuronal PlasticityEcologyNeuronal MorphologyGABAA receptorChemistryPyramidal CellsNeurochemistryNeurotransmittersCA3 Region HippocampalElectrophysiologymedicine.anatomical_structureComputational Theory and MathematicsModeling and SimulationGABAergicAnatomyCellular TypesReceptor PhysiologyIntracellularResearch ArticleCell PhysiologyQH301-705.5Models NeurologicalNeurophysiologyMembrane PotentialCellular and Molecular NeuroscienceGlutamatergicChloridesGeneticsmedicineAnimalsMolecular BiologyEcology Evolution Behavior and SystematicsBiology and Life SciencesComputational BiologyCell BiologyNeuronal DendritesReceptors GABA-ACellular NeuroscienceSynapsesCa3 pyramidal neuronDepolarizationNeuronNeuroscienceNeurosciencePLoS Computational Biology
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Functional Integration of Neuronal Precursors in the Adult Murine Piriform Cortex

2018

Abstract The extent of functional maturation and integration of nonproliferative neuronal precursors, becoming neurons in the adult murine piriform cortex, is largely unexplored. We thus questioned whether precursors eventually become equivalent to neighboring principal neurons or whether they represent a novel functional network element. Adult brain neuronal precursors and immature neurons (complex cells) were labeled in transgenic mice (DCX-DsRed and DCX-CreERT2 /flox-EGFP), and their cell fate was characterized with patch clamp experiments and morphometric analysis of axon initial segments. Young (DCX+) complex cells in the piriform cortex of 2- to 4-month-old mice received sparse synapt…

Doublecortin ProteinNeurogenesisCognitive NeuroscienceMice TransgenicPiriform CortexBiologyCell fate determinationtangled cellsaxon initial segmentMiceCellular and Molecular NeuroscienceNeural Stem CellsdoublecortinPiriform cortexmedicineAnimalsPatch clampNeuronsNeuropeptidesNeurogenesisGene Expression Regulation DevelopmentalCell Differentiationcomplex cellsAxon initial segmentDoublecortinadult neurogenesismedicine.anatomical_structurenervous systembiology.proteinGABAergicOriginal ArticleNeuronMicrotubule-Associated ProteinsNeuroscienceCerebral Cortex
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The GABAergic System and the Gastrointestinal Physiopathology.

2015

Since the first report about the presence of γ-aminobutyric acid (GABA) within the gastrointestinal (GI) tract, accumulating evidence strongly supports the widespread representation of the GABAergic system in the enteric milieu, underlining its potential multifunctional role in the regulation of GI functions in health and disease. GABA and GABA receptors are widely distributed throughout the GI tract, constituting a complex network likely regulating the diverse GI behaviour patterns, cooperating with other major neurotransmitters and mediators for maintaining GI homeostasis in physiologic and pathologic conditions. GABA is involved in the circuitry of the enteric nervous system, controlling…

GABA AgentsGastrointestinal DiseasesPharmacologyBiologySettore BIO/09 - FisiologiaEnteric Nervous Systemgamma-Aminobutyric acidgaba enteric neuronParacrine signallingImmune systemReceptors GABAparasitic diseasesDrug DiscoverymedicineAnimalsHumansMolecular Targeted Therapygamma-Aminobutyric AcidPharmacologyGABAA receptorVisceral painsocial sciencesGastrointestinal TractGABA AgentsDrug Designpopulation characteristicsGABAergicEnteric nervous systemmedicine.symptomhuman activitiesNeurosciencegeographic locationsmedicine.drug
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Transporter-mediated replacement of extracellular glutamate for GABA in the developing murine neocortex

2013

During early development, cortical neurons migrate from their places of origin to their final destinations where they differentiate and establish synaptic connections. During corticogenesis, radially migrating cells move from deeper zone to the marginal zone, but they do not invade the latter. This "stop" function of the marginal zone is mediated by a number of factors, including glutamate and γ-aminobutyric acid (GABA), two main neurotransmitters in the central nervous system. In the marginal zone, GABA has been shown to be released via GABA transporters (GAT)-2/3, whereas glutamate transporters (EAATs) operate in the uptake mode. In this study, GABAergic postsynaptic currents (GPSCs) were…

GABA Plasma Membrane Transport ProteinsAmino Acid Transport System X-AGGlutamic AcidNeocortexBiologyGABAB receptorMicemedicineAnimalsGABA transporterGABAergic Neuronsgamma-Aminobutyric AcidNeocortexGeneral NeuroscienceSodiumGlutamate receptorDepolarizationSynaptic PotentialsMarginal zoneCell biologyMice Inbred C57BLmedicine.anatomical_structurebiology.proteinGABAergicGABA Uptake InhibitorsNeuroscienceIntracellularEuropean Journal of Neuroscience
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The inhibitory neural circuitry as target of antiepileptic drugs.

2001

Impairments and defects in the inhibitory neurotransmission in the CNS can contribute to various seizure disorders, i.e., gamma-aminobutyric acid (GABA) and glycine as the main inhibitory neurotransmitters in the brain play a crucial role in some forms of epilepsy. Recent advances in deciphering the molecular basis of the GABAergic and glycinergic systems has been achieved by means of cloning techniques and gene targeting strategies in animals, contributing to the understanding of drug action. As well, several anticonvulsive substances emerged which target key molecules of the inhibitory systems. Employment of recombinant expression systems, including, but not restricted to the inhibitory c…

GABA Plasma Membrane Transport ProteinsGABA Plasma Membrane Transport ProteinsOrganic Anion TransportersDrug actionPharmacologyNeurotransmissionBiologyInhibitory postsynaptic potentialBiochemistrySynaptic TransmissionGABA AntagonistsEpilepsyDrug DiscoverymedicineAnimalsHumansGlycine receptorgamma-Aminobutyric AcidPharmacologyEpilepsyOrganic ChemistryMembrane ProteinsMembrane Transport Proteinsmedicine.diseaseReceptors GABA-AMechanism of actionReceptors GABA-BMolecular MedicineGABAergicAnticonvulsantsmedicine.symptomCarrier ProteinsCurrent medicinal chemistry
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GABA transporters control GABAergic neurotransmission in the mouse subplate.

2015

The subplate is a transient layer between the cortical plate and intermediate zone in the developing cortex. Thalamo-cortical axons form temporary synapses on subplate neurons (SPns) before invading the cortical plate. Neuronal activity within the subplate is of critical importance for the development of neocortical circuits and architecture. Although both glutamatergic and GABAergic inputs on SPns were reported, short-term plasticity of GABAergic transmission has not been investigated yet. GABAergic postsynaptic currents (GPSCs) were recorded from SPns in coronal neocortical slices prepared from postnatal day 3-4 mice using whole-cell patch-clamp technique. Evoked GPSCs (eGPSCs) elicited b…

GABA Plasma Membrane Transport ProteinsGABA Plasma Membrane Transport ProteinsPatch-Clamp TechniquesGABAB receptorBiologyNeurotransmissionSynaptic Transmissiongamma-Aminobutyric acidTissue Culture TechniquesGlutamatergicSubplatemedicinePremovement neuronal activityAnimalsgamma-Aminobutyric AcidGeneral NeuroscienceSomatosensory CortexSynaptic PotentialsReceptors GABA-AElectric StimulationMice Inbred C57BLmedicine.anatomical_structureReceptors GABA-BGABAergicNeurosciencemedicine.drugCentral Nervous System AgentsNeuroscience
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Age-related differences of γ-aminobutyric acid (GABA)ergic transmission in human colonic smooth muscle.

2021

Background: Enteric neurons undergo to functional changes during aging. We investigated the possible age-associated differences in enteric γ-aminobutyric acid (GABA)ergic transmission evaluating function and distribution of GABAergic receptors in human colon. Methods: Mechanical responses to GABA and GABA receptor agonists on slow phasic contractions were examined in vitro as changes in isometric tension in colonic muscle strips from young (<65 years old) and aged patients (>65 years old). GABAergic receptor expression was assessed by quantitative RT-PCR. Key Results: In both preparations GABA induced an excitatory effect, consisting in an increase in the basal tone, antagonized by th…

GABAA receptor subunitmedicine.medical_specialtyAgingintestinal motilityPhysiologyColonReceptor expressionTetrodotoxinGABAB receptorSettore BIO/09 - Fisiologiachemistry.chemical_compoundGABAPhaclofenGABA receptorSettore BIO/13 - Biologia ApplicataInternal medicinemedicineHumansgamma-Aminobutyric AcidAgedEndocrine and Autonomic SystemsGABAA receptorGastroenterologyMuscle SmoothBicucullineReceptors GABA-AEndocrinologyGABAergic receptorsnervous systemMuscimolchemistryReceptors GABA-BGABAergicmedicine.drugMuscle ContractionNeurogastroenterology and motility : the official journal of the European Gastrointestinal Motility Society
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Commentary: "Nitric oxide releases Cl(-) from acidic organelles in retinal amacrine cells".

2015

In their recent article (Krishnan and Gleason, 2015) Vijai Krishnan and Evanna Gleason investigate the cellular mechanisms underlying the shift in the GABA reversal potential upon application of nitric oxide (NO). Functional alteration in GABAergic signaling by alterations in the GABA reversal potential has been identified as an important mechanism of plasticity (Raimondo et al., 2012) and NO is clearly one key substance involved in plasticity (Prast and Philippu, 2001). Therefore, the investigation of the mechanisms behind the NO induced shift in GABAergic effects is an important issue. However, in my opinion the authors neglected a possible explanation of their observations in the discuss…

GABAA receptorGeneral CommentaryBafilomycinBiologylcsh:RC321-571Cellular and Molecular Neurosciencechemistry.chemical_compoundCytosolGABAchemistryBiochemistrychloride channelsnitric oxideChloride channelExtracellularBiophysicsGABAergicshort term plasticityReversal potentialnitritelcsh:Neurosciences. Biological psychiatry. NeuropsychiatryIntracellularamacrine cellNeuroscienceFrontiers in cellular neuroscience
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