0000000000142900

AUTHOR

Stepan Gambaryan

0000-0002-1470-0791

showing 17 related works from this author

Temporal quantitative phosphoproteomics of ADP stimulation reveals novel central nodes in platelet activation and inhibition

2017

Adenosine diphosphate (ADP) enhances platelet activation by virtually any other stimulant to complete aggregation. It binds specifically to the G-protein-coupled membrane receptors P2Y1 and P2Y12, stimulating intracellular signaling cascades, leading to integrin aIIbb3 activation, a process antagonized by endothelial prostacyclin. P2Y12 inhibitors are among the most successful antiplatelet drugs, however, show remarkable variability in efficacy. We reasoned whether a more detailed molecular understanding of ADP-induced protein phosphorylation could identify (1) critical hubs in platelet signaling toward aggregation and (2) novel molecular targets for antiplatelet treatment strategies. We ap…

0301 basic medicineBlood PlateletsPHOSPHATASEImmunologyBlotting WesternUBIQUITINATIONBINDING PROTEIN STXBP5Biochemistry03 medical and health scienceschemistry.chemical_compoundGTP-binding protein regulatorsP2Y12HumansProtein phosphorylationPlatelet activationIloprostPHOSPHORYLATIONCOMBINATIONChemistryPhosphoproteomicsPATHWAYSCell BiologyHematologyPlatelet ActivationSIGNALING REVEALSCell biologyAdenosine DiphosphateAdenosine diphosphate030104 developmental biologyCLOPIDOGRELPhosphorylationPROTEOMICSSECRETIONSignal transductionPlatelet Aggregation InhibitorsSignal TransductionBlood
researchProduct

Curcumin at Low Doses Potentiates and at High Doses Inhibits ABT-737-Induced Platelet Apoptosis

2021

Curcumin is a natural bioactive component derived from the turmeric plant Curcuma longa, which exhibits a range of beneficial activities on human cells. Previously, an inhibitory effect of curcumin on platelets was demonstrated. However, it is unknown whether this inhibitory effect is due to platelet apoptosis or procoagulant platelet formation. In this study, curcumin did not activate caspase 3-dependent apoptosis of human platelets, but rather induced the formation of procoagulant platelets. Interestingly, curcumin at low concentration (5 µM) potentiated, and at high concentration (50 µM) inhibited ABT-737-induced platelet apoptosis, which was accompanied by inhibition of ABT-737-mediated…

0301 basic medicinePharmacologyPiperazinesNitrophenolschemistry.chemical_compound0302 clinical medicinePlateletBiology (General)SpectroscopyCaspaseSulfonamidesbiologyKinaseapoptosisGeneral MedicinethrombinDrug Resistance Multipleprocoagulant activityComputer Science ApplicationsChemistry030220 oncology & carcinogenesisplateletsmedicine.drugBlood PlateletsAdenosine monophosphateautophagyCurcuminQH301-705.5ArticleCatalysisInorganic Chemistry03 medical and health sciencesCurcumaThrombinmedicineHumansATP Binding Cassette Transporter Subfamily B Member 1Physical and Theoretical ChemistryQD1-999Molecular BiologyProtein kinase BPlant ExtractsBiphenyl CompoundsOrganic ChemistryAdenosine Monophosphate030104 developmental biologychemistryApoptosisbiology.proteinCurcuminProto-Oncogene Proteins c-aktPlatelet Aggregation InhibitorsInternational Journal of Molecular Sciences
researchProduct

Activation of cGMP-dependent Protein Kinase Iβ Inhibits Interleukin 2 Release and Proliferation of T Cell Receptor-stimulated Human Peripheral T Cells

2000

Several major functions of type I cGMP-dependent protein kinase (cGK I) have been established in smooth muscle cells, platelets, endothelial cells, and cardiac myocytes. Here we demonstrate that cGK Ibeta is endogenously expressed in freshly purified human peripheral blood T lymphocytes and inhibits their proliferation and interleukin 2 release. Incubation of human T cells with the NO donor, sodium nitroprusside, or the membrane-permeant cGMP analogs PET-cGMP and 8-pCPT-cGMP, activated cGK I and produced (i) a distinct pattern of phosphorylation of vasodilator-stimulated phosphoprotein, (ii) stimulation of the mitogen-activated protein kinases ERK1/2 and p38 kinase, and, upon anti-CD3 stimu…

Blood PlateletsNitroprussideInterleukin 2Cell Membrane PermeabilityCD3 ComplexT-Lymphocytesp38 mitogen-activated protein kinasesT cellReceptors Antigen T-CellCell SeparationBiologyLymphocyte ActivationBiochemistryJurkat cellsJurkat CellsCyclic AMPCyclic GMP-Dependent Protein KinasesmedicineHumansProtein kinase ACyclic GMPMolecular BiologyCyclic GMP-Dependent Protein Kinase Type IKinaseCell growthMicrofilament ProteinsCell BiologyPhosphoproteinsMolecular biologyCell biologyEnzyme ActivationAlternative Splicingmedicine.anatomical_structureInterleukin-2Mitogen-Activated Protein KinasesCell Adhesion MoleculescGMP-dependent protein kinasemedicine.drugJournal of Biological Chemistry
researchProduct

Phosphorylation of CalDAG-GEFI by protein kinase A prevents Rap1b activation.

2013

Summary Background Signaling via protein kinase A (PKA) and protein kinase G (PKG) is critical for maintaining platelets in the resting state. Both kinases down-regulate the activity of the small GTPase Rap1b, a critical signaling switch for integrin activation and platelet aggregation. However, the mechanism of Rap1b regulation by PKA and PKG is largely unknown. Objective To identify the PKA phosphorylation sites in calcium and diacylglycerol-regulated guanine nucleotide exchange factor I (CalDAG-GEFI), the main GEF for Rap1b in platelets, and the effect of CalDAG-GEFI phosphorylation in Rap1b activation. Methods The phosphorylation sites in CalDAG-GEFI were identified by radio-active phos…

Blood PlateletsPlatelet AggregationMolecular Sequence DataBiologyMass SpectrometryPhosphorylation cascadeCyclic AMPGuanine Nucleotide Exchange FactorsHumansImmunoprecipitationProtein phosphorylationAmino Acid SequenceCalcium SignalingPhosphorylationProtein kinase ACalcium signalingAlanineSequence Homology Amino AcidKinaseHematologyCyclic AMP-Dependent Protein KinasesEnzyme Activationrab1 GTP-Binding ProteinsHEK293 CellsBiochemistryMutationPhosphorylationGuanine nucleotide exchange factorGuanosine TriphosphatecGMP-dependent protein kinasePlasmidsSignal TransductionJournal of thrombosis and haemostasis : JTH
researchProduct

The sGC stimulator riociguat inhibits platelet function in washed platelets but not in whole blood

2015

Background and Purpose Stimulation of soluble guanylyl cyclase (sGC) is a valuable therapeutic strategy for the treatment of several cardiovascular diseases. The sGC stimulator riociguat has been approved for the treatment of two forms of pulmonary hypertension. Platelets contain large amounts of sGC and play a key role in the regulation of haemostasis. Therefore, we investigated the effects of riociguat on platelet function. Experimental Approach The effect of riociguat treatment on human platelet activation and aggregation was investigated. The sGC-specific effects of riociguat were determined by comparing wild-type and platelet-specific sGC-knockout mice. Key Results Riociguat induced cG…

Pharmacologymedicine.medical_specialtyChemistrymedicine.diseaseRiociguatPulmonary hypertensionEndocrinologyInternal medicinecardiovascular systemmedicinePlateletPlatelet activationSoluble guanylyl cyclaseReceptorIloprostmedicine.drugWhole bloodBritish Journal of Pharmacology
researchProduct

What Can Proteomics Tell Us About Platelets?

2014

More than 130 years ago, it was recognized that platelets are key mediators of hemostasis. Nowadays, it is established that platelets participate in additional physiological processes and contribute to the genesis and progression of cardiovascular diseases. Recent data indicate that the platelet proteome, defined as the complete set of expressed proteins, comprises >5000 proteins and is highly similar between different healthy individuals. Owing to their anucleate nature, platelets have limited protein synthesis. By implication, in patients experiencing platelet disorders, platelet (dys)function is almost completely attributable to alterations in protein expression and dynamic difference…

PhysiologyPlatelet disorderblood plateletsproteomeBlood ProteinsDiseaseBiologyProteomicsBioinformaticsbleedingcardiovascular diseasesproteomicsHemostasisImmunologyProteomeAnimalsHumansPlatelethemorrhageTranscriptomeCardiology and Cardiovascular MedicineHomeostasisFunction (biology)Signal TransductionCirculation Research
researchProduct

Activation of Cardiac c-Jun NH 2 -Terminal Kinases and p38-Mitogen–Activated Protein Kinases With Abrupt Changes in Hemodynamic Load

2001

Abstract —The role of mitogen-activated protein kinase (MAPK) pathways as signal transduction intermediates of hemodynamic stress leading to cardiac hypertrophy in the adult heart is not fully established. In a rat model of pressure-overload hypertrophy, we examined whether activation of MAPK pathways, namely, the extracellular signal–regulated protein kinase (ERK), c-Jun NH 2 -terminal kinase (JNK), and the p38-MAPK pathways, occurs during rapid changes in hemodynamic load in vivo. A slight activation of ERK2 and marked increases in JNK1 and p38-MAPK activities were observed 30 minutes after aortic banding. The increase in p38-MAPK activity was accompanied by an increase in the phosphoryl…

MAPK/ERK pathwaymedicine.medical_specialtyProto-Oncogene Proteins c-junp38 mitogen-activated protein kinasesp38 Mitogen-Activated Protein KinasesVentricular Function LeftStress PhysiologicalInternal medicineInternal MedicinemedicineAnimalsASK1PhosphorylationRats WistarCyclic AMP Response Element-Binding ProteinProtein kinase AProtein kinase CMAPK14Activating Transcription Factor 2biologyKinaseMyocardiumJNK Mitogen-Activated Protein KinasesRatsCell biologyEnzyme ActivationTranscription Factor AP-1Disease Models AnimalEndocrinologyMitogen-activated protein kinasebiology.proteinFemaleMitogen-Activated Protein KinasesTranscription FactorsHypertension
researchProduct

Potential and limitations of PKA/ PKG inhibitors for platelet studies

2021

Cyclic nucleotides (cAMP and cGMP) and corresponding protein kinases, protein kinase A (PKA) and protein kinase G (PKG), are the main intracellular mediators of endothelium-derived platelet inhibitors. Pharmacological PKA/PKG inhibitors are often used to discriminate between these two kinase activities and to analyze their underlying mechanisms. Previously we showed that all widely used PKG inhibitors (KT5823, DT3, RP isomers) either did not inhibit PKG or inhibited and even activated platelets independently from PKG. In this study, we examined several PKA inhibitors as well as inhibitors of adenylate and guanylate cyclases to reveal their effects on platelets and establish whether they are…

Blood PlateletsKinaseIntracellular Signaling Peptides and ProteinsAdenylate kinaseHematologyGeneral MedicineKT5720Cyclic AMP-Dependent Protein Kinaseschemistry.chemical_compoundchemistryBiochemistryCyclic AMPCyclic GMP-Dependent Protein Kinasescardiovascular systemHumansPlateletPlatelet activationProtein kinase ACyclic GMPcGMP-dependent protein kinaseIntracellularPlatelets
researchProduct

Does the NO/sGC/cGMP/PKG pathway play a stimulatory role in platelets?

2012

Nitric oxide (NO) stimulates cGMP synthesis by activating its intracellular receptor, soluble guanylyl cyclase (sGC). It is a currently prevailing concept that No and cGMP inhibits platelet function. However, the data supporting the inhibitory role of NO/sGC/cGMP in platelets have been obtained either in vitro or using whole body gene deletion that affects vessel wall function. Here we have generated mice with sGC gene deleted only in megakaryocytes and platelets. Using the megakaryocyte- and platelet-specific sGC-deficient mice, we identify a stimulatory role of sGC in platelet activation and in thrombosis in vivo. Deletion of sGC in platelets abolished cGMP production induced by either NO…

Maleinorganic chemicalsbusiness.industryImmunologyReceptors Cytoplasmic and NuclearCell BiologyHematologyPlatelet ActivationPlatelets and ThrombopoiesisBiochemistryCell biologyCyclic gmpGuanylate Cyclasecardiovascular systemAnimalsMedicineFemaleheterocyclic compoundsPlateletbusinessSoluble guanylyl cyclaseBlood
researchProduct

Immune escape of AKT overexpressing ovarian cancer cells

2012

Platinum-resistance is the most crucial problem for treatment of ovarian cancer. There is a clinical need for new treatment strategies which overcome platinum resistance. As survival is strongly influenced by immunological parameters, immunotherapeutic strategies appear promising. Therefore a better understanding of the interaction between ovarian tumour cells and cells of the immune system is a necessary prerequisite. In the present study we aimed to enlighten the interactions between platinum resistant and platinum sensitive ovarian cancer cells and natural-killer (NK)-cells. Modified FATAL assay was used for determining the killing efficiency of NK-cells for the parental A2780 cells and …

Cancer Researchendocrine system diseasesUbiquitin-Protein LigasesCellApoptosisBiologymedicine.disease_causeInhibitor of Apoptosis ProteinsImmune systemCell Line TumormedicineHumansPlatinumOvarian NeoplasmsCancerCell cyclemedicine.diseaseBaculoviral IAP Repeat-Containing 3 Proteinfemale genital diseases and pregnancy complicationsGene Expression Regulation NeoplasticKiller Cells Naturalmedicine.anatomical_structureOncologyDrug Resistance NeoplasmCell cultureApoptosisCancer researchFemaleOvarian cancerCarcinogenesisProto-Oncogene Proteins c-aktInternational Journal of Oncology
researchProduct

Differential roles of cAMP and cGMP in megakaryocyte maturation and platelet biogenesis

2012

The cyclic nucleotides cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP) regulate the activity of protein kinase A (PKA) and protein kinase G (PKG), respectively. This process helps maintain circulating platelets in a resting state. Here we studied the role of cAMP and cGMP in the regulation of megakaryocyte (MK) differentiation and platelet formation. Cultured, platelet-producing MKs were differentiated from fetal livers harvested from 13.5 days postcoital mouse embryos. MK development was accompanied by a dramatic increase in cAMP production and expression of soluble guanylate cyclase, PKG, and PKA as well as their downstream targets vasodilator-stimulated ph…

Blood PlateletsCancer Researchmegakaryocytes; cAMP; cGMP; plateletsPhosphodiesterase 3BiologyArticleAdenylyl cyclaseMicechemistry.chemical_compoundPregnancyCyclic AMPGeneticsAnimalsCyclic adenosine monophosphatePhosphorylationProtein kinase ACyclic GMPMolecular BiologyCyclic guanosine monophosphateMicrofilament ProteinsCell DifferentiationCell BiologyHematologyPhosphoproteinsCyclic AMP-Dependent Protein KinasesCell biologyMice Inbred C57BLCytoskeletal ProteinsThrombopoietinchemistrycAMP-dependent pathwayFemalePDE10ASignal transductionCell Adhesion MoleculesMegakaryocytesExperimental Hematology
researchProduct

Response: platelet transcriptome and proteome—relation rather than correlation

2013

We have demonstrated by a detailed statistical analysis of proteome and transcriptome data of human platelets and human cell lines that protein and transcript abundance in platelets, if at all, are only weakly correlated.[1][1] This analysis appears to be in contradiction to previous claims made

TranscriptomeCorrelationImmunologyProteomeStatistical analysisPlateletCell BiologyHematologyHuman cellBiologyProteomicsBiochemistryCell biologyBlood
researchProduct

Microvesicle Formation Induced by Oxidative Stress in Human Erythrocytes

2020

Extracellular vesicles (EVs) released by different cell types play an important role in many physiological and pathophysiological processes. In physiological conditions, red blood cell (RBC)-derived EVs compose 4&ndash

0301 basic medicinePhysiologyClinical BiochemistryCell<i>tert-</i>Bytyl hydroperoxide t-BOOHmedicine.disease_causeBiochemistryband 3ArticleFlow cytometry03 medical and health sciences0302 clinical medicinecalcium ionophore A23187medicineoxidative stressViability assay<i>tert</i>-Bytyl hydroperoxide t-BOOHnitric oxide donorMolecular BiologyBand 3Hemichromemicroparticlesbiologymedicine.diagnostic_testChemistryMicrovesiclelcsh:RM1-950Cell Biologytert-Bytyl hydroperoxide t-BOOHvesiculationRed blood cell030104 developmental biologymedicine.anatomical_structurelcsh:Therapeutics. Pharmacology030220 oncology & carcinogenesisphysiologybiology.proteinBiophysicserythrocytesOxidative stressAntioxidants
researchProduct

The first comprehensive and quantitative analysis of human platelet protein composition allows the comparative analysis of structural and functional …

2012

AbstractAntiplatelet treatment is of fundamental importance in combatting functions/dysfunction of platelets in the pathogenesis of cardiovascular and inflammatory diseases. Dysfunction of anucleate platelets is likely to be completely attributable to alterations in posttranslational modifications and protein expression. We therefore examined the proteome of platelets highly purified from fresh blood donations, using elaborate protocols to ensure negligible contamination by leukocytes, erythrocytes, and plasma. Using quantitative mass spectrometry, we created the first comprehensive and quantitative human platelet proteome, comprising almost 4000 unique proteins, estimated copy numbers for …

Blood PlateletsProteomicsProteomeImmunologyIntegrinCell BiologyHematologyBlood ProteinsBiologyProteomicsBiochemistryPathogenesisBiochemistrySpectrometry Mass Matrix-Assisted Laser Desorption-IonizationImmunologyProteomebiology.proteinPhosphorylationHumansPlateletElectrophoresis Gel Two-DimensionalPlatelet activationQuantitative analysis (chemistry)Protein Processing Post-TranslationalChromatography LiquidBlood
researchProduct

Time-resolved characterization of cAMP/PKA-dependent signaling reveals that platelet inhibition is a concerted process involving multiple signaling p…

2014

One of the most important physiological platelet inhibitors is endothelium-derived prostacyclin which stimulates the platelet cyclic adenosine monophosphate/protein kinase A (cAMP/PKA)-signaling cascade and inhibits virtually all platelet-activating key mechanisms. Using quantitative mass spectrometry, we analyzed time-resolved phosphorylation patterns in human platelets after treatment with iloprost, a stable prostacyclin analog, for 0, 10, 30, and 60 seconds to characterize key mediators of platelet inhibition and activation in 3 independent biological replicates. We quantified over 2700 different phosphorylated peptides of which 360 were significantly regulated upon stimulation. This com…

Blood PlateletsImmunologyProstacyclinBiologyBiochemistrychemistry.chemical_compoundCyclic AMPmedicineHumansCyclic adenosine monophosphateIloprostProtein Interaction MapsPlatelet activationPhosphorylationProtein kinase AKinaseCell BiologyHematologyPlatelet ActivationCyclic AMP-Dependent Protein KinaseschemistryBiochemistryPlatelet aggregation inhibitorPhosphorylationSignal transductionPlatelet Aggregation InhibitorsSignal Transductionmedicine.drugBlood
researchProduct

Feedback Regulation of Syk by Protein Kinase C in Human Platelets

2019

The spleen tyrosine kinase (Syk) is essential for immunoreceptor tyrosine-based activation motif (ITAM)-dependent platelet activation, and it is stimulated by Src-family kinase (SFK)-/Syk-mediated phosphorylation of Y352 (interdomain-B) and Y525/526 (kinase domain). Additional sites for Syk phosphorylation and protein interactions are known but remain elusive. Since Syk S297 phosphorylation (interdomain-B) was detected in platelets, we hypothesized that this phosphorylation site regulates Syk activity via protein kinase C (PKC)-and cyclic adenosine monophosphate (cAMP)-dependent pathways. ADP, the GPVI-agonist convulxin, and the GPIb&alpha

0301 basic medicineIndolesPlatelet AggregationSyk030204 cardiovascular system & hematologyenvironment and public healthMaleimideslcsh:Chemistrychemistry.chemical_compound0302 clinical medicinePhosphorylationlcsh:QH301-705.5SpectroscopyFeedback PhysiologicalKinaseConvulxinhemic and immune systemsGeneral MedicineComputer Science ApplicationsCell biologyAdenosine DiphosphateplateletsPhosphorylationbiological phenomena cell phenomena and immunityBlood Plateletschemical and pharmacologic phenomenaViper Venomsspleen tyrosine kinase (Syk)CatalysisArticleInorganic Chemistryglycoprotein VIglycoprotein Ibα03 medical and health sciencesCrotalid VenomsHumansSyk KinaseCyclic adenosine monophosphateLectins C-TypePlatelet activationPhysical and Theoretical ChemistryMolecular BiologyProtein kinase CPhospholipase C gammaOrganic Chemistryenzymes and coenzymes (carbohydrates)030104 developmental biologyProtein kinase domainchemistrylcsh:Biology (General)lcsh:QD1-999Calciumcyclic adenosine monophosphate (cAMP)protein kinase CInternational Journal of Molecular Sciences
researchProduct

Dual role of the p38 MAPK/cPLA2 pathway in the regulation of platelet apoptosis induced by ABT-737 and strong platelet agonists.

2013

p38 Mitogen-activated protein (MAP) kinase is involved in the apoptosis of nucleated cells. Although platelets are anucleated cells, apoptotic proteins have been shown to regulate platelet lifespan. However, the involvement of p38 MAP kinase in platelet apoptosis is not yet clearly defined. Therefore, we investigated the role of p38 MAP kinase in apoptosis induced by a mimetic of BH3-only proteins, ABT-737, and in apoptosis-like events induced by such strong platelet agonists as thrombin in combination with convulxin (Thr/Cvx), both of which result in p38 MAP kinase phosphorylation and activation. A p38 inhibitor (SB202190) inhibited the apoptotic events induced by ABT-737 but did not influ…

Blood PlateletsCancer ResearchcPLA2p38 mitogen-activated protein kinasesImmunologyBlotting Westernp38 Mitogen-Activated Protein KinasesPiperazinesNitrophenolsCellular and Molecular NeurosciencePhospholipase A2Crotalid VenomsHumansLectins C-Typeddc:610Cells CulturedMembrane Potential MitochondrialplateletSulfonamidesbiologyKinaseGroup IV Phospholipases A2Biphenyl CompoundsapoptosisConvulxinCell BiologyFlow Cytometryp38 MAP kinaseCell biologyApoptosisMitogen-activated protein kinasebiology.proteinPhosphorylationOriginal ArticleSignal transductionReactive Oxygen SpeciesSignal TransductionCell deathdisease
researchProduct