Search results for "Reticulum"

showing 10 items of 336 documents

Function of AtPGAP1 in GPI anchor lipid remodeling and transport to the cell surface of GPI-anchored proteins

2021

ABSTRACTGPI-anchored proteins (GPI-APs) play an important role in a variety of plant biological processes including growth, stress response, morphogenesis, signalling and cell wall biosynthesis. The GPI-anchor contains a lipid-linked glycan backbone that is synthesized in the endoplasmic reticulum (ER) where it is subsequently transferred to the C-terminus of proteins containing a GPI signal peptide by a GPI transamidase. Once the GPI anchor is attached to the protein, the glycan and lipid moieties are remodelled. In mammals and yeast, this remodelling is required for GPI-APs to be included in Coat Protein II (COPII) coated vesicles for their ER export and subsequent transport to the cell s…

Signal peptideGlycanbiologyChemistryEndoplasmic reticulumCellCoated vesiclebiology.organism_classificationCell biologycarbohydrates (lipids)chemistry.chemical_compoundmedicine.anatomical_structureArabidopsismedicinebiology.proteinlipids (amino acids peptides and proteins)InositolCOPII
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Investigating the Role of the Microsomal Epoxide Hydrolase Membrane Topology and Its Implication for Drug Metabolism Pathways

1996

The microsomal epoxide hydrolase (mEH) catalyzes the hydrolysis of reactive epoxides which are formed by the action of cytochromes P450 from xenobiotics. In addition the mEH has been found to mediate the transport of bile acids. For the mEH it has been shown that it is cotranslationally inserted into the endoplasmic reticulum. Here we demonstrate that the amino-terminal twenty amino acid residues of this protein serve as its single membrane anchor signal sequence and that the function of this sequence can be also supplied by a cytochrome P450 (CYP2B1) anchor signal sequence.

Signal peptideHydrolysisBiochemistrybiologyChemistryEndoplasmic reticulumMembrane topologyMicrosomal epoxide hydrolasebiology.proteinCytochrome P450Epoxide hydrolaseDrug metabolism
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Defects in Signal Recognition Particle (SRP) Components Reveal an Essential and Non-Redundant Role for Granule Biogenesis and Differentiation of Neut…

2019

Neutrophil granulocyte play pivotal roles in inflammatory responses, immune defence, tissue remodeling, and cancer control. Studying rare patients with defects in differentiation and/or function of neutrophil granulocytes highlights genes and pathways orchestrating these important cellular functions. A previously not appreciated role of the signal recognition particle (SRP) has emerged when monoallelic mutations in SRP54 were associated with congenital neutropenia and pancreatic insufficiency. The eukaryotic SRP is composed of six distinct polypeptides (SRP9, SRP14, SRP19, SRP54, SRP68, SRP72) bound to an RNA molecule (the 7SL RNA). SRP and its receptor (SRPRA and SRPRB) cooperatively trans…

Signal recognition particleChemistryEndoplasmic reticulumImmunologyGranule (cell biology)RNACell BiologyHematologyBiochemistryRibosomeCell biologyProteomePTX3 proteinBiogenesisBlood
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Synthesis and biological evaluation of 4-nitro-substituted 1, 3-diaryltriazenes as a novel class of potent antitumor agents

2011

Abstract We describe the synthesis and biological activity of a new class of 1,3-diaryltriazenes, namely 4-nitro-substituted 1,3-diaryltriazenes. Structure–activity relationship analysis reveals that 1,3-diaryltriazenes can be modified from inactive to highly cytotoxic compounds by the introduction of two nitro groups at the para positions of benzene rings and two additional electron-withdrawing groups (bromo, chloro, trifluoromethyl or fluoro substituents) at their ortho position. In order to increase the solubility of the modified compounds, we introduced various acyl groups to their triazene nitrogen. The results of LC-MS/MS analysis showed that N -acyltriazenes can be considered as prod…

StereochemistryNitro compoundAntineoplastic AgentsApoptosis1 ; 3-diaryltriazenes ; synthesis ; cytotoxicity ; ROS induction ; apoptosisChemical synthesisNitrophenolschemistry.chemical_compoundStructure-Activity RelationshipCell Line TumorDrug DiscoveryCytotoxic T cellHumansProdrugsTriazeneCell ProliferationPharmacologychemistry.chemical_classificationChemistryOrganic ChemistryBiological activityGeneral MedicineDNA NeoplasmProdrugEndoplasmic Reticulum StressIn vitroDrug Resistance NeoplasmNitroCisplatinTriazenesReactive Oxygen Species
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2-Hydroxyoleic Acid Induces ER Stress and Autophagy in Various Human Glioma Cell Lines

2012

Background: 2-Hydroxyoleic acid is a synthetic fatty acid with potent anti-cancer activity which does not induce undesired side effects. However, the molecular and cellular mechanisms by which this compound selectively kills human glioma cancer cells without killing normal cells is not fully understood. The present study was designed to determine the molecular bases underlying the potency against 1321N1, SF-767 and U118 human glioma cell lines growth without affecting non cancer MRC-5 cells. Methodology/Principal Findings: The cellular levels of endoplasmic reticulum (ER) stress, unfolded protein response (UPR) and autophagy markers were determined by quantitative RT-PCR and immunoblotting …

Tetrazolium SaltsOleic AcidsEndoplasmic ReticulumBiochemistry2-Hydroxyoleic AcidDrug DiscoveryMolecular Cell BiologyNeurological TumorsLungProtein MetabolismCellular Stress ResponsesMultidisciplinaryCell DeathBrain NeoplasmsQFatty AcidsRGliomaLipidsSignaling CascadesCell biologyOncologyMedicineSignal transductionResearch ArticleBiotechnologySignal TransductionCell SurvivalScienceAntineoplastic AgentsBiologyStress Signaling CascadeCell LineGliomaCell Line TumormedicineAutophagyHumansBiologyAutophagyProteinsCancers and NeoplasmsFibroblastsmedicine.diseaseChaperone ProteinsThiazolesMetabolismCell cultureApoptosisCancer cellUnfolded protein responsePLoS ONE
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Protective effect of paraoxonase-2 against endoplasmic reticulum stress-induced apoptosis is lost upon disturbance of calcium homoeostasis

2008

PON2 (paraoxonase-2) is a ubiquitously expressed antioxidative protein which is largely found in the ER (endoplasmic reticulum). Addressing the cytoprotective functions of PON2, we observed that PON2 overexpression provided significant resistance to ER-stress-induced caspase 3 activation when the ER stress was induced by interference with protein modification (by tunicamycin or dithiothreitol), but not when ER stress was induced by disturbance of Ca2+ homoeostasis (by thapsigargin or A23187). When analysing the underlying molecular events, we found an activation of the PON2 promoter in response to all tested ER-stress-inducing stimuli. However, only tunicamycin and dithiothreitol resulted i…

ThapsigarginRNA StabilityApoptosisCaspase 3Protein degradationEndoplasmic ReticulumBiochemistryGene Expression Regulation EnzymologicCell Linechemistry.chemical_compoundStress PhysiologicalHomeostasisHumansEnzyme InhibitorsPromoter Regions Genetic3' Untranslated RegionsMolecular BiologyCalcimycinIonophoresbiologyAryldialkylphosphataseCalpainTunicamycinEndoplasmic reticulumCalpainCell BiologyTunicamycinCell biologyDithiothreitolchemistryApoptosisbiology.proteinUnfolded protein responseThapsigarginCalcium5' Untranslated RegionsBiochemical Journal
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Modulation of intracellular calcium concentrations and T cell activation by prickly pear polyphenols.

2004

Opuntia ficus indica (prickly pear) polyphenolic compounds (OFPC) triggered an increase in [Ca2+]i in human Jurkat T-cell lines. Furthermore, OFPC-induced rise in [Ca2+]i was significantly curtailed in calcium-free buffer (0% Ca2+) as compared to that in 100% Ca2+ medium. Preincubation of cells with tyrphostin A9, an inhibitor of Ca2+ release-activated Ca2+ (CRAC) channels, significantly diminished the OFPC-induced sustained response on the increases in [Ca2+]i. Lanthanum and nifedipine, the respective inhibitors of voltage-dependent and L-type calcium channels, failed to curtail significantly the OFPC-induced calcium response. As OFPC still stimulated increases in [Ca2+]i in 0% Ca2+ medium…

ThapsigarginT-LymphocytesClinical Biochemistrychemistry.chemical_elementGene ExpressionBiologyCalciumLymphocyte ActivationCalcium in biologyMembrane Potentialschemistry.chemical_compoundJurkat CellsPhenolsmedicineHumansCalcium SignalingRNA MessengerMolecular BiologyCalcium signalingCalcium metabolismFlavonoidsVoltage-dependent calcium channelDose-Response Relationship DrugPlant ExtractsReverse Transcriptase Polymerase Chain ReactionEndoplasmic reticulumOpuntiaPolyphenolsCell BiologyGeneral MedicineTyrphostinsMechanism of actionBiochemistrychemistryBiophysicsInterleukin-2ThapsigarginCalciummedicine.symptomMolecular and cellular biochemistry
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Regulation of calcium signalling by docosahexaenoic acid in human T-cells: implication of CRAC channels

2000

Abstract We elucidated the role of docosahexaenoic acid (DHA) on the increases in free intracellular calcium concentrations, [Ca2+]i, in human (Jurkat) T-cell lines. DHA evoked an increase in [Ca2+]i in a dose-dependent manner in these cells. Anti-CD3 antibody, known to stimulate increases in Ca2+ from endoplasmic reticulum (ER) via the production of inositol trisphosphate, also evoked increases in [Ca2+]i in Jurkat T-cells. We also used thapsigargin which inhibits Ca2+-ATPase of the ER and, therefore, increases Ca2+ in the cytosol. Interestingly, addition of DHA during the thapsigargin-induced peak response exerted an additive effect on the increases in [Ca2+]i in human T-cells, indicating…

ThapsigarginVoltage-dependent calcium channelEndoplasmic reticulumchemistry.chemical_elementInositol trisphosphateQD415-436Cell BiologyCalciumpolyunsaturated fatty acidCD3BiochemistryJurkat cellsJurkat T-cellsCalcium in biologyCell biologychemistry.chemical_compoundEndocrinologychemistrythapsigarginCalcium signalingJournal of Lipid Research
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Role of three isoforms of phospholipase A2in capacitative calcium influx in human T-cells

2002

The present study was conducted on human Jurkat T-cell lines in order to elucidate the role of phospholipase A2 in capacitative calcium entry. We have employed thapsigargin (TG) that induces increases in [Ca2+]i by emptying the calcium pool of endoplasmic reticulum, followed by capacitative calcium entry. We designed a Ca2+ free/Ca2+ reintroduction (CFCR) protocol for the experiments, conducted in Ca2+-free medium. By employing CFCR protocol, we observed that addition of exogenous arachidonic acid (AA) stimulated TG-induced capacitative calcium influx. The liberation of endogenous AA and its autocrine action seems to be implicated during TG-induced capacitative calcium influx: TG potentiate…

ThapsigarginbiologyEndoplasmic reticulumchemistry.chemical_elementCalciumBiochemistryJurkat cellsCell biologychemistry.chemical_compoundPhospholipase A2chemistryExtracellularbiology.proteinLiberationArachidonic acidEuropean Journal of Biochemistry
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Tributyltin(Iv) butyrate: A novel epigenetic modifier with er stress-and apoptosis-inducing properties in colon cancer cells

2021

Organotin(IV) compounds are a class of non-platinum metallo-conjugates exhibiting antitumor activity. The effects of different organotin types has been related to several mechanisms, including their ability to modify acetylation protein status and to promote apoptosis. Here, we focus on triorganotin(IV) complexes of butyric acid, a well-known HDAC inhibitor with antitumor properties. The conjugated compounds were synthesized and characterised by FTIR spectroscopy, multi-nuclear (1H, 13C and 119Sn) NMR, and mass spectrometry (ESI-MS). In the triorganotin(IV) complexes, an anionic monodentate butyrate ligand was observed, which coordinated the tin atom on a tetra-coordinated, monomeric enviro…

Triorganotin(IV) butyratesPharmaceutical ScienceOrganic chemistryApoptosisButyrateArticleHistone DeacetylasesAnalytical ChemistryEpigenesis GeneticButyric acidchemistry.chemical_compoundQD241-441HDAC inhibitorsCell Line TumorSettore BIO/10 - BiochimicaDrug DiscoveryHumansPhysical and Theoretical ChemistrybiologyAcetylationLigand (biochemistry)Endoplasmic Reticulum StressColon cancerHistonechemistryBiochemistryHistone acetylationChemistry (miscellaneous)ApoptosisAcetylationSettore CHIM/03 - Chimica Generale E InorganicaColonic NeoplasmsTributyltinbiology.proteinUnfolded protein responseMolecular MedicineButyric AcidTrialkyltin CompoundsER stressProtein Processing Post-Translational
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