Search results for "Voltage-gated ion channel"

showing 10 items of 11 documents

Modulation of voltage-gated Na+ and K+ channels by pumiliotoxin 251D: A “joint venture” alkaloid from arthropods and amphibians

2008

Abstract Certain amphibians provide themselves with a chemical defense by accumulating lipophilic alkaloids into skin glands from dietary arthropods. Examples of such alkaloids are pumiliotoxins (PTXs). In general, PTXs are known as positive modulators of voltage-gated sodium channels (VGSCs). Unlike other PTXs, PTX 251D does not share this characteristic. However, mice and insect studies showed that PTX 251D is highly toxic and to date the basis of its toxicity remains unknown. In this work, we searched for the possible target of PTX 251D . The toxin was therefore made synthetically and tested on four VGSCs (mammalian rNa v 1.2/β 1 , rNa v 1.4/β 1 , hNa v 1.5/β 1 and insect Para/tipE ) and…

Voltage clamphERGXenopusGene ExpressionToxicologySodium ChannelsAmphibiansXenopus laevischemistry.chemical_compoundAnimalsArthropodsIon channelDose-Response Relationship DrugMolecular StructurebiologyVoltage-gated ion channelSodium channelIndolizinesPumiliotoxin 251Dbiology.organism_classificationPotassium channelBiochemistrychemistryPotassium Channels Voltage-GatedOocytesbiology.proteinIon Channel GatingSodium Channel BlockersToxicon
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Early life adversity targets the transcriptional signature of hippocampal NG2+ glia and affects voltage gated sodium (Nav) channels properties

2021

The precise mechanisms underlying the detrimental effects of early life adversity (ELA) on adult mental health remain still elusive. To date, most studies have exclusively targeted neuronal populations and not considered neuron-glia crosstalk as a crucially important element for the integrity of stress-related brain function. Here, we have investigated the impact of ELA, in the form of a limited bedding and nesting material (LBN) paradigm, on a glial subpopulation with unique properties in brain homeostasis, the NG2+ cells. First, we have established a link between maternal behavior, activation of the offspring's stress response and heterogeneity in the outcome to LBN manipulation. We furth…

Neurophysiology and neuropsychologyCandidate geneNav-channelsPhysiologyNa-channelsNeurosciences. Biological psychiatry. NeuropsychiatryHippocampal formationBiologyBiochemistryNG2+ gliaTranscriptome03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineEndocrinologyMediatorDownregulation and upregulationOriginal Research ArticleRC346-429Molecular BiologyVoltage-gated ion channelEndocrine and Autonomic SystemsQP351-495Nav-channels ; Scn7a ; Transcriptome ; Early life stress ; Translational psychiatry ; NG2+ gliaEarly life stress030227 psychiatryScn7aCrosstalk (biology)nervous systemNeurology. Diseases of the nervous systemTranscriptomeNeuroscienceTranslational psychiatry030217 neurology & neurosurgeryHomeostasisRC321-571Neurobiology of Stress
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Astrocytic potassium and calcium channels as integrators of the inflammatory and ischemic CNS microenvironment.

2021

Abstract Astrocytes are key regulators of their surroundings by receiving and integrating stimuli from their local microenvironment, thereby regulating glial and neuronal homeostasis. Cumulating evidence supports a plethora of heterogenic astrocyte subpopulations that differ morphologically and in their expression patterns of receptors, transporters and ion channels, as well as in their functional specialisation. Astrocytic heterogeneity is especially relevant under pathological conditions. In experimental autoimmune encephalomyelitis (EAE), a mouse model of multiple sclerosis (MS), morphologically distinct astrocytic subtypes were identified and could be linked to transcriptome changes dur…

Voltage-gated ion channelVoltage-dependent calcium channelClinical BiochemistryExperimental autoimmune encephalomyelitisBiologymedicine.diseaseBiochemistryPotassium channelTransient receptor potential channelMicemedicine.anatomical_structureAstrocytesmedicinePotassiumAnimalsCalcium ChannelsMolecular BiologyNeuroscienceIon channelNeuroinflammationAstrocyteBiological chemistryReferences
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Membrane potential bistability in nonexcitable cells as described by inward and outward voltage-gated ion channels.

2014

The membrane potential of nonexcitable cells, defined as the electrical potential difference between the cell cytoplasm and the extracellular environment when the current is zero, is controlled by the individual electrical conductance of different ion channels. In particular, inward- and outward-rectifying voltage-gated channels are crucial for cell hyperpolarization/depolarization processes, being amenable to direct physical study. High (in absolute value) negative membrane potentials are characteristic of terminally differentiated cells, while low membrane potentials are found in relatively depolarized, more plastic cells (e.g., stem, embryonic, and cancer cells). We study theoretically t…

Membrane potentialVoltage-gated ion channelChemistryVoltage clampCellsAnalytical chemistrymembrane potentialsDepolarizationVoltage-gated potassium channelHyperpolarization (biology)Resting potentialModels BiologicalIon ChannelsSurfaces Coatings and FilmsMembrane PotentialsKineticsMaterials ChemistryBiophysicsvoltage gated ion channelsPhysical and Theoretical Chemistrynon-excitable cellsIon channelThe journal of physical chemistry. B
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2019

AbstractDuring early postnatal life, speed up of signal propagation through many central and peripheral neurons has been associated with an increase in axon diameter or/and myelination. Especially in unmyelinated axons postnatal adjustments of axonal membrane conductances is potentially a third mechanism but solid evidence is lacking. Here, we show that axonal action potential (AP) conduction velocity in theDrosophilagiant fiber (GF) interneuron, which is required for fast long-distance signal conduction through the escape circuit, is increased by 80% during the first day of adult life. Genetic manipulations indicate that this postnatal increase in AP conduction velocity in the unmyelinated…

0303 health sciencesVoltage-gated ion channelInterneuronAction potentialVoltage-dependent calcium channelChemistryGeneral NeuroscienceGeneral MedicinePotassium channelNerve conduction velocity03 medical and health sciences0302 clinical medicinemedicine.anatomical_structurenervous systemmedicineBiophysicsAxon030217 neurology & neurosurgeryIon channel030304 developmental biologyeNeuro
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Nonlinear conductance and heterogeneity of voltage-gated ion channels allow defining electrical surface domains in cell membranes

2015

Abstract The membrane potential of a cell measured by typical electrophysiological methods is only an average magnitude and experimental techniques allowing a more detailed mapping of the cell surface have shown the existence of spatial domains with locally different electric potentials and currents. Electrical potentials in non-neural cells are regulated by the nonlinear conductance of membrane ion channels. Voltage-gated potassium channels participate in cell hyperpolarization/depolarization processes and control the electrical signals over the cell surface, constituting good candidates to study basic biological questions on a more simplified scale than the complex cell membrane. These ch…

Membrane potentialMaterials scienceVoltage-gated ion channelThreshold potentialVoltage clampBiophysicsStatistical and Nonlinear PhysicsDepolarizationGatingHyperpolarization (biology)Condensed Matter PhysicsIon channelPhysica D: Nonlinear Phenomena
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Methods for Transient Expression of Hetero-Oligomeric Ligand-Gated Ion Channels

2003

Voltage-gated ion channelChemistryBiophysicsLigand-gated ion channelTransient (oscillation)
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Components of after-hyperpolarization in magnocellular neurones of the rat supraoptic nucleusin vitro

1998

1. The pharmacological sensitivity of hyperpolarizing components of spike train after-potentials was examined in sixty-one magnocellular neurones of the rat supraoptic nucleus using intracellular recording techniques in a brain slice preparation. 2. In 26 % of all neurones a slow after-hyperpolarization (AHP) was observed in addition to a fast AHP. In 31 % of all neurones a depolarizing after-potential (DAP) was observed. 3. The fast AHP was blocked by apamin whereas the slow AHP was blocked by charybdotoxin (ChTX). The DAP was enhanced by ChTX or a DAP was unmasked if not present during the control period. 4. Low concentrations of TEA (0.15-1.5 mM) induced effects on the slow AHP and the D…

MalePotassium ChannelsCharybdotoxinPhysiologySpike trainAction PotentialsApaminSupraoptic nucleusRats Sprague-DawleySK channelchemistry.chemical_compoundSlice preparationAnimalsNeuronsKv1.3 Potassium ChannelVoltage-gated ion channelChemistryMargatoxinTetraethylammoniumOriginal ArticlesIberiotoxinImmunohistochemistryRatsElectrophysiologyApaminPotassium Channels Voltage-GatedBiophysicsSupraoptic NucleusNeuroscienceThe Journal of Physiology
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Postnatal increases in axonal conduction velocity of an identified Drosophila interneuron require fast sodium, L-type calcium and shaker potassium ch…

2019

Abstract During early postnatal life, speed up of signal propagation through many central and peripheral neurons has been associated with an increase in axon diameter or/and myelination. Especially in unmyelinated axons postnatal adjustments of axonal membrane conductances is potentially a third mechanism but solid evidence is lacking. Here, we show that axonal action potential (AP) conduction velocity in the Drosophila giant fiber (GF) interneuron, which is required for fast long-distance signal conduction through the escape circuit, is increased by 80% during the first day of adult life. Genetic manipulations indicate that this postnatal increase in AP conduction velocity in the unmyelina…

MaleConfirmationaction potential propagationCalcium Channels L-Typepostnatal maturation2Neural ConductionAction PotentialsVoltage-Gated Sodium ChannelsDevelopmentgiant fiberAxonsvoltage-gated ion channels570 Life sciencesnervous systemInterneurons2.6LarvaShaker Superfamily of Potassium ChannelsAnimalsescapeinsectDrosophilaFemale570 Biowissenschaften
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Early life stress programming of NG2+ glia transcriptome alters functional properties of voltage gated sodium (Nav) channels and cognitive performance

2020

AbstractThe precise mechanisms underlying the detrimental effects of early life stress (ELS) on adult mental health remain still elusive. To date, most studies have exclusively targeted neuronal populations and not considered neuron-glia crosstalk as a crucially important element for the integrity of stress-related brain function. Here, we have investigated the impact of ELS on a glial subpopulation with unique properties in brain homeostasis, the NG2+ cells. ELS shifted the NG2+ transcriptome towards more mature stages, and these transcriptional effects were dependent on stress-induced glucocorticoids. The functional relevance of one candidate gene, Scn7a, could be confirmed by an increase…

TranscriptomeCrosstalk (biology)Candidate genenervous systemVoltage-gated ion channelDownregulation and upregulationEffects of sleep deprivation on cognitive performanceBiologyHippocampal formationNeuroscienceHomeostasis
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