Search results for "nucleotides"

showing 10 items of 297 documents

CD38 expression enhances sensitivity of lymphoma T and B cell lines to biochemical and receptor-mediated apoptosis

2006

CD38 has been widely characterised both as an ectoenzyme and as a receptor. In the present paper, we investigated the role of CD38 as possible modulator of apoptosis. CD38-positive (CD38(+)) and negative (CD38(-)) fractions, obtained by sorting CD38(+) cells from lymphoma T (Jurkat) and lymphoma B (Raji) and by transfecting lymphoma LG14 and myeloid leukemia K562 cell lines, were used. Cellular subpopulations were exposed to different triggers (H(2)O(2), UV-B, alpha-TOS and hrTRAIL) and the extent of apoptosis was determined by Annexin V-FITC/PI assay. Our data showed that, in lymphoma cells, propensity to apoptosis was significantly linked to CD38 expression and that, remarkably, such resp…

Lymphoma B-CellCD30Ultraviolet RaysTocopherolsApoptosisCD38BiologyLymphoma T-CellJurkat cellsTNF-Related Apoptosis-Inducing LigandJurkat Cellsimmune system diseasesAnnexinCell Line Tumorhemic and lymphatic diseasesmedicineHumansVitamin EAnnexin A5B cellhemic and immune systemsHydrogen PeroxideCell BiologyGeneral MedicineOligonucleotides AntisenseFlow CytometryADP-ribosyl Cyclase 1Antigens DifferentiationMolecular biologyBCL10medicine.anatomical_structureApoptosisAnnexin A5K562 CellsFluorescein-5-isothiocyanateCell Biology International
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Targeted oligonucleotide delivery in human lymphoma cell lines using a polyethyleneimine based immunopolyplex.

2002

The efficacy of antisense gene therapy depends on efficient delivery of oligonucleotides into targeted cells. Although polyethyleneimine based polyplexes have been reported as good transfection reagents, they are inefficient in lymphoid cell transfection. We report the construction of an immunopolyplex, a targeted nonviral vector based on a polyplex backbone and its application for oligonucleotide transfer on human lymphoma cell lines. The salient characteristic of immunopolyplex lies in the possibility of easily replacing the targeting element (antibody), leaving the polyplex backbone intact. Furthermore, a study was made of the influence of endocytosis inhibitors on immunopolyplex activit…

LymphomaOligonucleotidemedia_common.quotation_subjectEndocytic cycleGenetic VectorsOligonucleotidesPharmaceutical ScienceTransfectionBiologyEndocytosisJurkat cellsMolecular biologyIn vitroDrug Delivery SystemsCell cultureTumor Cells CulturedHumansPolyethyleneimineInternalizationmedia_commonJournal of controlled release : official journal of the Controlled Release Society
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Neuroprotection elicited by P2Y13 receptors against genotoxic stress by inducing DUSP2 expression and MAPK signaling recovery.

2014

AbstractNucleotides activating P2Y13 receptors display neuroprotective actions against different apoptotic stimuli in cerebellar granule neurons. In the present study, P2Y13 neuroprotection was analyzed in conditions of genotoxic stress. Exposure to cisplatin and UV radiation induced caspase-3-dependent apoptotic cell death, and p38 MAPK signaling de-regulation. Pre-treatment with P2Y13 nucleotide agonist, 2methyl-thio-ADP (2MeSADP), restored granule neuron survival and prevented p38 long-lasting activation induced by cytotoxic treatments. Microarray gene expression analysis in 2MeSADP-stimulated cells revealed over-representation of genes related to protein phosphatase activity. Among them…

MAPK/ERK pathwayAgonistmedicine.drug_classMAP Kinase Signaling SystemUltraviolet Raysp38 mitogen-activated protein kinasesDUSPp38Genotoxic StressCREBNeuroprotectionMAPK protein phosphataseModels Biologicalp38 Mitogen-Activated Protein KinasesNucleotide receptorP2Y13 receptorCa2+/calmodulin-dependent protein kinaseCerebellummedicineAnimalsPhosphorylationRats WistarReceptorMolecular BiologyCell NucleusNeuronsbiologyCell DeathCaspase 3Receptors Purinergic P2Dual Specificity Phosphatase 2Cell BiologyThionucleotidesNeuroprotectionCell biologyRatsAdenosine DiphosphateEnzyme ActivationNeuroprotective AgentsCytoprotectionbiology.proteinCisplatinDNA DamageBiochimica et biophysica acta
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8-Azido-adenosine 5'-triphosphate as a Photoaffinity Label for Bacterial F1 ATPase

1978

1. 8-Azido-adenosine 5'-triphosphate (n83ATP) is a suitable photoaffinity label for F1 ATPase from Micrococcus luteus. The nucleotide is a substrate in the presence of bivalent cations and inhibits the enzyme irreversibly upon irradiation with ultraviolet light above 300 nm. 2. More than 80% of the label is covalently bound to the beta subunits in the presence of bivalent cations. Labeling and inactivation is decreased by protection with ADP, ATP or adenyl-5'-yl imidodiphosphate. To a much smaller degree the alpha subunits also become labeled. 3. n83AMP does not specifically bind to the beta subunits upon irradiation. Like n83ATP and n83ADP, it also labels the alpha subunits to a small exte…

Macromolecular SubstancesUltraviolet RaysATPaseAffinity labelCooperativityBiochemistryMicrococcuschemistry.chemical_compoundAdenosine TriphosphateAdenine nucleotideUltraviolet lightMagnesiumNucleotideEdetic AcidAdenosine Triphosphataseschemistry.chemical_classificationPhotolysisbiologyAdenine NucleotidesChemistryAffinity LabelsBiochemistrybiology.proteinCalciumAdenosine triphosphateATP synthase alpha/beta subunitsEuropean Journal of Biochemistry
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Effects of nucleotide binding to LmrA: A combined MAS-NMR and solution NMR study

2015

ABC transporters are fascinating examples of fine-tuned molecular machines that use the energy from ATP hydrolysis to translocate a multitude of substrates across biological membranes. While structural details have emerged on many members of this large protein superfamily, a number of functional details are still under debate. High resolution structures yield valuable insights into protein function, but it is the combination of structural, functional and dynamic insights that facilitates a complete understanding of the workings of their complex molecular mechanisms. NMR is a technique well-suited to investigate proteins in atomic resolution while taking their dynamic properties into account…

Magnetic Resonance SpectroscopyBiophysicsATP-binding cassette transporterProtein dynamicsCrystallography X-RayBiochemistryLmrABacterial ProteinsNucleotide bindingMagic angle spinningSolution NMRNucleotidesChemistryWalker motifsCell BiologyNuclear magnetic resonance spectroscopyProtein superfamilyBiochemistryCyclic nucleotide-binding domainBiophysicsMAS NMRABC transporterMultidrug Resistance-Associated ProteinsMultidrug Resistance-Associated ProteinsHeteronuclear single quantum coherence spectroscopyProtein BindingBiochimica et Biophysica Acta (BBA) - Biomembranes
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5-Methoxyuridine, a new modified constituent in tRNAs of Bacillaceae.

1976

Magnetic Resonance SpectroscopyBiophysicsBacillusBacillus subtilisMass spectrometryBiochemistryMass Spectrometrychemistry.chemical_compoundRNA TransferSpecies SpecificityStructural BiologyGeneticsMolecular BiologyUridineBacillus (shape)BacillaceaebiologyCell BiologyNuclear magnetic resonance spectroscopyRibonucleotidesbiology.organism_classificationChromatography Ion ExchangeUridinechemistryBiochemistrySpectrophotometry UltravioletBacillus subtilisFEBS letters
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Targeting PCSK9 for therapeutic gains: Have we addressed all the concerns?

2016

Proprotein Convertase Subtilisin/Kexin Type 9 (PCSK9) regulates the expression of low-density lipoprotein (LDL)-receptors, through reducing their recycling by binding to the receptor along with LDL and targeting it for lysosomal destruction. PCSK9 also enhances the degradation of very-low-density-lipoprotein receptor (VLDLR) and lipoprotein receptor-related protein 1 (LRP-1) in a LDL-receptor independent manner. This role in lipid homeostasis presents PCSK9 as an attractive target for the therapeutic management of familial hypercholesterolemia as well as other refractory dyslipidaemias. However, PCSK9 mediates multifarious functions independent of its role in lipid homeostasis, which can be…

Male0301 basic medicineCell signalingHIPERCOLESTEROLEMIALow-density lipoprotein receptor gene familyHypercholesterolemiaMice TransgenicFamilial hypercholesterolemiaBiologyAntiviral AgentsPermeabilityMice03 medical and health sciencesAlzheimer DiseasemedicineAnimalsHomeostasisHumansGlucose homeostasisRNA Small InterferingEpithelial Sodium ChannelsGlycoproteinsNeuronsPCSK9PCSK9 InhibitorsAntibodies MonoclonalCell DifferentiationOligonucleotides Antisensemedicine.diseaseProprotein convertaseLipidsCircadian RhythmLiver RegenerationCell biology030104 developmental biologyReceptors LDLBiochemistryLDL receptorKexinFemalelipids (amino acids peptides and proteins)CRISPR-Cas SystemsProprotein Convertase 9Cardiology and Cardiovascular MedicineAtherosclerosis
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Induction of the peroxisome proliferator activated receptor by fenofibrate in rat liver

1992

AbstractThe process of peroxisome proliferation in rodent liver by hypolipidemic compounds and related substances has recently been shown to be receptor-madiated. In the present study, we have examined the effect of oral administration of the strong peroxisome proliferator fenofibrate on the hepatic expression level of the peroxisome proliferator activated receptor (PPAR) in rats. Immunoblots of rat liver cytosols and nuclear extracs using antibodies raised against recombinant PPAR/β-galactosidase fusion proteins revealed a pronounced increase in the amount of PPAR protein in response to fenofibrate treatment. This induction could also be confirmed at the level or RNA by Northern blotting. …

Male1303 BiochemistryReceptors Cytoplasmic and Nuclear10050 Institute of Pharmacology and ToxicologyPeroxisome proliferator-activated receptorPPARMicrobodiesPolymerase Chain ReactionBiochemistryPPAR agonist1307 Cell BiologyMiceCytosol1315 Structural BiologyFenofibrateStructural Biologychemistry.chemical_classificationMice Inbred BALB CFenofibrateOligodeoxyribonucleotidesPeroxisome proliferator-activated receptor alphaFusion proteinmedicine.drugmedicine.medical_specialtyPeroxisome proliferator-activated receptor gammamRNAMolecular Sequence DataBiophysicsPeroxisome ProliferationReceptors Cell Surface610 Medicine & healthBiology1311 GeneticsInternal medicine1312 Molecular BiologyGeneticsmedicineAnimalsNorthern blotMolecular BiologyAntibodyHypolipidemic compoundCell NucleusMessenger RNABase SequenceImmune SeraCell BiologyBlotting NorthernRatsMice Inbred C57BLEndocrinologychemistry570 Life sciences; biologyTranscription Factors1304 BiophysicsFEBS Letters
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Neurotransmitters involved in the fast inhibitory junction potentials in mouse distal colon

2003

We investigated, in murine colon circular muscle, the role of adenosine 5′-triphosphate (ATP) and pituitary adenylate cyclase activating peptide (PACAP) as inhibitory neurotransmitters of the fast component of nerve-evoked inhibitory junction potential (fast IJP). Fast IJP was antagonised by apamin or suramin, abolished by desensitisation with the P2Y receptor agonist, adenosine 5′-O-2-thiodiphosphate (ADPβS), unaffected by desensitisation with P2X receptor agonist, α,β-methylene ATP (α,β-meATP), and reduced by PACAP-(6-38), a PACAP receptor antagonist. ATP induced membrane hyperpolarization resistant to tetrodotoxin, Nω-nitro-L-arginine methyl ester (L-NAME) or PACAP-(6-38), but antagonise…

MaleAgonistendocrine systemmedicine.medical_specialtyP2Y receptorColonmedicine.drug_classPurinoceptorNeuromuscular JunctionSuraminTetrodotoxinBiologyApaminSettore BIO/09 - FisiologiaMembrane PotentialsCellular and Molecular NeuroscienceMicechemistry.chemical_compoundAdenosine TriphosphateInternal medicinemedicineAnimalsMurinePharmacologyNeurotransmitter AgentsDose-Response Relationship Drugmusculoskeletal neural and ocular physiologyNeuropeptidesMembrane hyperpolarizationThionucleotidesHyperpolarization (biology)Receptor antagonistAdenosinePeptide FragmentsATPAdenosine DiphosphatePituitary adenylate cyclase-activating peptideNG-Nitroarginine Methyl EsterEndocrinologyApaminchemistryPituitary Adenylate Cyclase-Activating PolypeptideFast inhibitory junction potentialPACAP (pituitary adenylate cyclase activating peptide)hormones hormone substitutes and hormone antagonistsmedicine.drugEuropean Journal of Pharmacology
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Functional evidence of multidrug resistance transporters (MDR) in rodent olfactory epithelium.

2012

WOS: 000305340700029; International audience; BACKGROUND: P-glycoprotein (Pgp) and multidrug resistance-associated protein (MRP1) are membrane transporter proteins which function as efflux pumps at cell membranes and are considered to exert a protective function against the entry of xenobiotics. While evidence for Pgp and MRP transporter activity is reported for olfactory tissue, their possible interaction and participation in the olfactory response has not been investigated. PRINCIPAL FINDINGS: Functional activity of putative MDR transporters was assessed by means of the fluorometric calcein acetoxymethyl ester (calcein-AM) accumulation assay on acute rat and mouse olfactory tissue slices.…

MaleAnatomy and Physiology[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionGene Expressionlcsh:MedicineATP-binding cassette transporterPharmacologyMicechemistry.chemical_compoundMolecular Cell Biologypolycyclic compoundslcsh:ScienceMice Inbred BALB CMultidisciplinaryNeuromodulationProbenecidReverse Transcriptase Polymerase Chain ReactionNeurochemistryFluoresceinsSensory SystemsCell biologyElectrophysiologymedicine.anatomical_structureAlimentation et NutritionCyclosporineQuinolinesMedicineFemaleEffluxCellular TypesMultidrug Resistance-Associated Proteinsproduct p-glycoprotein;blood-brain-barrier;receptor neurons;cyclic-nucleotides;tumor-cells;expression;localization;protein;gene;tissuesMultidrug Resistance-Associated ProteinsResearch ArticleATP Binding Cassette Transporter Subfamily BNeurophysiologyBiologyOlfactory Receptor NeuronsOlfactory mucosaPsychologie (Sciences cognitives)Olfactory MucosaPeripheral Nervous SystemmedicineAnimalsFood and NutritionRats WistarBiologyOlfactory SystemOlfactory receptorlcsh:RNeurosciencesEpithelial CellsBiological TransportTransporterRatsCalceinMicroscopy FluorescenceVerapamilchemistryNeurons and Cognitionlcsh:QPropionates[SDV.AEN]Life Sciences [q-bio]/Food and NutritionOlfactory epitheliumNeuroscience
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