Search results for "Calcium channels"

showing 10 items of 67 documents

TRAIL Triggers CRAC-Dependent Calcium Influx and Apoptosis through the Recruitment of Autophagy Proteins to Death-Inducing Signaling Complex

2021

Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) selectively kills various cancer cell types, but also leads to the activation of signaling pathways that favor resistance to cell death. Here, we investigated the as yet unknown roles of calcium signaling and autophagy regulatory proteins during TRAIL-induced cell death in leukemia cells. Taking advantage of the Gene Expression Profiling Interactive Analysis (GEPIA) project, we first found that leukemia patients present a unique TRAIL receptor gene expression pattern that may reflect their resistance to TRAIL. The exposure of NB4 acute promyelocytic leukemia cells to TRAIL induces intracellular Ca2+ influx through a calcium rel…

Death Domain Receptor Signaling Adaptor ProteinsautophagyQH301-705.5p62/SQSTM1Autophagy-Related ProteinsApoptosisTretinoin[SDV.CAN]Life Sciences [q-bio]/CancerEndoplasmic ReticulumArticleTNF-Related Apoptosis-Inducing LigandJurkat Cells[SDV.CAN] Life Sciences [q-bio]/CancerHomeostasisHumanscancerBiology (General)ATRASequence Analysis RNAATRA; ATG7; autophagy; cancer; CRAC channels; DISC; leukemia; ORAI1; p62/SQSTM1; resistance to therapyleukemiaGeneral MedicineDISCORAI1Receptors TNF-Related Apoptosis-Inducing Ligand[SDV.AEN] Life Sciences [q-bio]/Food and NutritionCytoprotectionDrug Resistance Neoplasmresistance to therapyCalciumCalcium ChannelsCRAC channelsATG7[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Extracellular site of action of phenylalkylamines on L-type calcium current in rat ventricular myocytes.

1995

The effects of the phenylalkylamines verapamil, gallopamil, and devapamil on L-type calcium currents (ICa) were studied in ventricular myocytes from rat hearts using the whole-cell patch-clamp technique. In particular, the question was addressed, whether the pharmacological binding sites for these drugs were located at the inner and/or at the outer surface of the cell membrane. Therefore, tertiary verapamil, gallopamil, and devapamil and their corresponding quaternary derivatives were applied either from the outside or the inside of the cell membrane. Extracellular application of verapamil, gallopamil and devapamil (each at 3 microM) reduced ICa to 16.1 +/- 8.6%, 11 +/- 8.9%, and 9.3 +/- 6%…

DevapamilGallopamilPatch-Clamp TechniquesHeart Ventricleschemistry.chemical_elementPharmacologyCalciumRats Sprague-Dawleychemistry.chemical_compoundmedicineExtracellularAnimalsPatch clampGallopamilPharmacologyBinding SitesChemistryCalcium channelCell MembraneGeneral MedicineCalcium Channel BlockersRatsVerapamilcardiovascular systemVerapamilCalcium ChannelsIntracellularmedicine.drugNaunyn-Schmiedeberg's archives of pharmacology
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Separation of presynaptic Cav2 and Cav1 channel function in synaptic vesicle exo- and endocytosis by the membrane anchored Ca2+ pump PMCA

2021

Significance Synaptic vesicle (SV) release from presynaptic terminals requires nanometer precise control of action potential (AP)–triggered calcium influx through voltage-gated calcium channels (VGCCs). SV recycling also depends on calcium signals, though in different spatiotemporal domains. Mechanisms for separate control of SV release and recycling by AP-triggered calcium influx remain elusive. Here, we demonstrate largely independent regulation of release and recycling by two different populations of VGCCs (Cav2, Cav1), identify Cav1 as one of potentially multiple calcium entry routes for endocytosis regulation, and show functional separation of simultaneous calcium signals in the nanome…

Drosophila ; Dmca1D ; cacophony ; PMCA ; synapse0301 basic medicine570ATPasecacophonyPresynaptic TerminalsAction PotentialsEndocytosisDmca1DSynaptic vesicleExocytosis03 medical and health scienceschemistry.chemical_compoundGlutamatergicPlasma Membrane Calcium-Transporting ATPases0302 clinical medicinePMCAsynapsemedicineAnimalsDrosophila ProteinsAxonNeurotransmitterProbabilityMotor NeuronsMultidisciplinaryVoltage-dependent calcium channelbiologyCell Membrane424500 Naturwissenschaften und Mathematik::570 Biowissenschaften; Biologie::570 Biowissenschaften; BiologieBiological SciencesEndocytosisCell biologyElectrophysiology030104 developmental biologymedicine.anatomical_structureDrosophila melanogasterchemistryReceptors Glutamatebiology.proteinDrosophilaCalciumCalcium ChannelsSynaptic Vesicles030217 neurology & neurosurgeryNeuroscienceProceedings of the National Academy of Sciences of the United States of America
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Oxysterol mixture in hypercholesterolemia-relevant proportion causes oxidative stress-dependent eryptosis.

2014

Background/Aims: Oxysterol activity on the erythrocyte (RBC) programmed cell death (eryptosis) had not been studied yet. Effects of an oxysterol mixture in hyper-cholesterolemic-relevant proportion, and of individual compounds, were investigated on RBCs from healthy humans. Methods: Membrane phosphatidylserine (PS) externalization, calcium entry, ROS production, amino-phospholipid translocase (APLT) activity were evaluated by cytofluorimetric assays, cell volume from forward scatter. Prostaglandin PGE2 was measured by ELISA; GSH-adducts and lipoperoxides by spectrophotometry. Involvement of protein kinase C and caspase was investigated by inhibitors staurosporin, calphostin C, and Z-DEVD-FM…

ErythrocytesPhysiologyEryptosisApoptosisPharmacologylcsh:PhysiologyAntioxidantschemistry.chemical_compoundPhospholipid scramblingSettore BIO/10 - Biochimicapolycyclic compoundslcsh:QD415-436PhosphatidylserineKetocholesterolsProtein Kinase Clcsh:QP1-981OxysterolsPhosphatidylserineErythrocyteCalphostin CBiochemistryCaspaseslipids (amino acids peptides and proteins)AntioxidantReactive Oxygen SpecieHumanProgrammed cell deathOxysterolHypercholesterolemiachemistry.chemical_elementPhosphatidylserinesCalciumCalcium ChannelDinoprostonelcsh:BiochemistryOxysterolLipid oxidationHumansCalphostinHypercholesterolemia Human red blood cell Oxysterols Eryptosis Oxidative stressKetocholesterolApoptosiOxidative StreCaspaseOxidative StresschemistryCalciumCalcium ChannelsReactive Oxygen SpeciesEryptosiHuman red blood cellCellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology
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Differential gene expression analysis identifies murine Cacnb3 as strongly upregulated in distinct dendritic cell populations upon stimulation

2011

Langerhans cells (LCs) represent the dendritic cell (DC) population in the epidermis. Among the set of genes induced in primary mouse LCs in response to stimulation, both isoforms of the voltage-dependent Ca²(+) channel (VDCC) regulatory subunit Cacnb3 as well as the DC maturation marker Fscn1 were upregulated most strongly. Comparable results were obtained for a recently described myeloid DC line (SP37A3). Other antigen presenting cell populations, namely, bone marrow-derived DCs, macrophages and primary B cells, showed no stimulation-associated upregulation of Cacnb3 expression. Pharmacological inhibition of Ca²(+) channel activity during the stimulation of SP37A3 cells enhanced their T c…

Gene isoformT cellMolecular Sequence DataBiologyTransfectionMiceDownregulation and upregulationGeneticsmedicineAnimalsProtein IsoformsRNA MessengerAntigen-presenting cellRegulation of gene expressionMice Inbred BALB CBase SequenceCell DifferentiationDendritic CellsGeneral MedicineTransfectionDendritic cellMolecular biologyUp-RegulationCell biologymedicine.anatomical_structureGene Expression RegulationCell cultureLangerhans CellsCalcium ChannelsGene
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COVID-19, Cation Dysmetabolism, Sialic Acid, CD147, ACE2, Viroporins, Hepcidin and Ferroptosis: A Possible Unifying Hypothesis.

2022

Background: iron and calcium dysmetabolism, with hyperferritinemia, hypoferremia, hypocalcemia and anemia have been documented in the majority of COVID-19 patients at later/worse stages. Furthermore, complementary to ACE2, both sialic acid (SA) molecules and CD147 proved relevant host receptors for SARS-CoV-2 entry, which explains the viral attack to multiple types of cells, including erythrocytes, endothelium and neural tissue. Several authors advocated that cell ferroptosis may be the core and final cell degenerative mechanism. Methods: a literature research was performed in several scientific search engines, such as PubMed Central, Cochrane Library, Chemical Abstract Service. More than 5…

General Immunology and MicrobiologySARS-CoV-2virusesvirus diseasesCOVID-19Endothelial CellsGeneral Medicinebiochemical phenomena metabolism and nutritionGeneral Biochemistry Genetics and Molecular BiologyN-Acetylneuraminic AcidViroporin ProteinsHepcidinsCationsferroptosis cations sialic acid iron ferritin calcium viroporins voltage-gated calcium channels cell membrane CD147 ACE2 hepcidin red blood cells hemoglobin mitochondriaFerroptosisHumansAngiotensin-Converting Enzyme 2General Pharmacology Toxicology and PharmaceuticsF1000Research
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Association of Whirlin with Cav1.3 (α1D) Channels in Photoreceptors, Defining a Novel Member of the Usher Protein Network

2010

Contains fulltext : 88383.pdf (Publisher’s version ) (Closed access) PURPOSE: Usher syndrome is the most common form of hereditary deaf-blindness. It is both clinically and genetically heterogeneous. The USH2D protein whirlin interacts via its PDZ domains with other Usher-associated proteins containing a C-terminal type I PDZ-binding motif. These proteins co-localize with whirlin at the region of the connecting cilium and at the synapse of photoreceptor cells. This study was undertaken to identify novel, Usher syndrome-associated, interacting partners of whirlin and thereby obtain more insights into the function of whirlin. METHODS: The database of ciliary proteins was searched for proteins…

Genetics and epigenetic pathways of disease [NCMLS 6]Calcium Channels L-TypeUsher syndromeProtein subunitImmunoelectron microscopyBlotting WesternPDZ domainRetinaCav1.3MiceTwo-Hybrid System TechniquesChlorocebus aethiopsmedicineAnimalsInner earRNA MessengerRats WistarDatabases ProteinMicroscopy ImmunoelectronPhotoreceptor Connecting CiliumIn Situ HybridizationRenal disorder [IGMD 9]RetinaVoltage-dependent calcium channelbiologyComputational BiologyMembrane Proteinsmedicine.diseaseeye diseasesRatsCell biologyMice Inbred C57BLmedicine.anatomical_structureCOS Cellsbiology.proteinsense organsFunctional Neurogenomics [DCN 2]Photoreceptor Cells VertebrateInvestigative Opthalmology & Visual Science
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Impact of diet-induced obesity on the mouse brain phosphoproteome

2018

Obesity is closely associated to several diseases such as type 2 diabetes, cardiovascular disease, hepatic steatosis, airway disease, neurodegeneration, biliary diseases and certain cancers. It is, therefore, of importance to assess the role of nutrition in disease prevention as well as its effect in the course of such pathologies. In the present study, we addressed the impact of the exposure to different obesogenic diets in the mice brains phosphoproteome. To analyze if the obesity could be able to modify the protein pattern expression of brain neurons, obesity was induced in two different groups of mice. One group of mice was fed with hyperglycemic diet (HGD) and the other one was fed wit…

Male0301 basic medicinemedicine.medical_specialtyPhosphoproteomicsEndocrinology Diabetes and MetabolismClinical BiochemistryHyperglycemic dietType 2 diabetesDiseaseBiologyDiet High-FatBiochemistry03 medical and health sciences0302 clinical medicineInternal medicinemedicineAnimalsProtein phosphorylationObesityPhosphorylationMolecular BiologyGSK3BNutritionNeuronal impairmentNutrition and DieteticsNeurodegenerationta1182BrainObesity; Nutrition; High-fat diet; Hyperglycemic diet; Neuronal impairment; PhosphoproteomicsPhosphoproteinsmedicine.diseaseObesityMice Inbred C57BLHigh-fat dietGene Ontology030104 developmental biologyEndocrinologyHyperglycemiaPhosphorylationCalcium ChannelsSteatosis030217 neurology & neurosurgeryThe Journal of Nutritional Biochemistry
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Histochemical localization of calcium ATPase in the cochlea of the guinea pig

1992

The activity of Ca(2+)-ATPase in the inner ear of the guinea pig was studied ultracytochemically by the lead citrate reaction. The electron-dense reaction products as an expression of Ca(2+)-ATPase activity were localized in endolymphatic cells of Reissner's membrane, in outer and inner hair cells and in some supporting cells. The main finding was the difference in the localization of Ca(2+)-ATPase in outer and inner hair cells. In the latter cells the activity sites were mainly intracellular and in apical membrane specializations, whereas in the outer hair cells the enzyme was localized in the apical membrane specializations and the basolateral plasma membrane.

MaleATPaseGuinea PigsCalcium-Transporting ATPasesGuinea pigEndolymphHair Cells AuditorymedicineAnimalsInner earOrgan of CortiCochleabiologyHistocytochemistryGeneral MedicineBasolateral plasma membraneApical membraneCochleaCalcium ATPasemedicine.anatomical_structureOtorhinolaryngologyBiochemistryBiophysicsbiology.proteinFemaleCalcium Channelssense organsIntracellularEuropean Archives of Oto-Rhino-Laryngology
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Capacitative Ca2+ entry associated with α1-adrenoceptors in rat aorta

1997

In rat aorta, depletion of internal Ca2+ stores by addition of noradrenaline (1 microM) induces a biphasic response (an initial phasic response and a tonic one) mediated by two different intracellular Ca2+ pools. This response cannot be repeated, suggesting a depletion of internal Ca2+ stores sensitive to noradrenaline. In absence of the agonist, this depletion is the signal for the entry of extracellular Ca2+, not only to refill the stores but also, under our experimental conditions, to activate the contractile proteins thus inducing an increase in the resting tone (IRT) that constitutes functional evidence of this Ca2+ entry. The ionic channels involved in the mechanism of the IRT have be…

MaleAgonistCromakalimmedicine.medical_specialtyPotassium Channelsmedicine.drug_classIn Vitro TechniquesTonic (physiology)NorepinephrineReceptors Adrenergic alpha-1medicine.arteryInternal medicineGlyburidePotassium Channel BlockersmedicineExtracellularAnimalsBenzopyransPyrrolesRats WistarCa2 entryAortaIonic ChannelsPharmacologyAortaChemistryGeneral MedicineTetraethylammonium CompoundsCalcium Channel BlockersRatsEndocrinologyMuscle TonusAlpha1 adrenoceptorBiophysicsCalciumNimodipineCalcium ChannelsIntracellularMuscle ContractionNaunyn-Schmiedeberg's Archives of Pharmacology
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