Search results for "MEF"

showing 10 items of 96 documents

Class IIa HDACs repressive activities on MEF2-depedent transcription are associated with poor prognosis of ER⁺ breast tumors.

2013

MEF2s transcription factors and class IIa HDACs compose a fundamental axis for several differentiation pathways. Functional relationships between this axis and cancer are largely unexplored. We have found that class IIa HDACs are heterogeneously expressed and display redundant activities in breast cancer cells. Applying gene set enrichment analysis to compare the expression profile of a list of putative MEF2 target genes, we have discovered a correlation between the down-regulation of the MEF2 signature and the aggressiveness of ER(+) breast tumors. Kaplan-Meier analysis in ER(+) breast tumors evidenced an association between increased class IIa HDACs expression and reduced survival. The im…

Mef2Nerve growth factor IBTranscription GeneticCell SurvivalApoptosisBreast NeoplasmsBiologyBiochemistryGene Expression Regulation EnzymologicHistone DeacetylasesTranscription (biology)BREAST CANCERCell Line TumorGeneticsNuclear Receptor Subfamily 4 Group A Member 1Gene silencingHumansGene SilencingMolecular BiologyPsychological repressionTranscription factorHDAC4BREAST CANCER; ERPrognosisNeoplasm ProteinsHDAC4; MEF2; BREAST CANCERGene Expression Regulation NeoplasticERMyogenic Regulatory FactorsReceptors EstrogenApoptosisCell cultureCancer researchFemaleMEF2BiotechnologyFASEB journal : official publication of the Federation of American Societies for Experimental Biology
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Temporal coherency between receptor expression, neural activity and AP-1-dependent transcription regulates Drosophila motoneuron dendrite development.

2013

Neural activity has profound effects on the development of dendritic structure. Mechanisms that link neural activity to nuclear gene expression include activity-regulated factors, such as CREB, Crest or Mef2, as well as activity-regulated immediate-early genes, such as fos and jun. This study investigates the role of the transcriptional regulator AP-1, a Fos-Jun heterodimer, in activity-dependent dendritic structure development. We combine genetic manipulation, imaging and quantitative dendritic architecture analysis in a Drosophila single neuron model, the individually identified motoneuron MN5. First, Dα7 nicotinic acetylcholine receptors (nAChRs) and AP-1 are required for normal MN5 dend…

Mef2Transcriptional ActivationEmbryo NonmammalianTime FactorsTranscription GeneticReceptor expressionReceptors NicotinicCREBSynaptic TransmissionAnimals Genetically ModifiedGenes ReporterCa2+/calmodulin-dependent protein kinaseAnimalsDrosophila ProteinsCholinergic synapseCholinergic neuronMolecular BiologyResearch ArticlesCell NucleusDendritic spikeMicroscopy ConfocalbiologyGene Expression Regulation DevelopmentalDendritesImmunohistochemistryCholinergic NeuronsCell biologyEnzyme ActivationTranscription Factor AP-1Drosophila melanogasterMicroscopy Fluorescencebiology.proteinSignal transductionCalcium-Calmodulin-Dependent Protein Kinase Type 2Developmental BiologySignal TransductionDevelopment (Cambridge, England)
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Tips and turns of bacteriophytochrome photoactivation

2020

Phytochromes are ubiquitous photosensor proteins, which control the growth, reproduction and movement in plants, fungi and bacteria. Phytochromes switch between two photophysical states depending on the light conditions. In analogy to molecular machines, light absorption induces a series of structural changes that are transduced from the bilin chromophore, through the protein, and to the output domains. Recent progress towards understanding this structural mechanism of signal transduction has been manifold. We describe this progress with a focus on bacteriophytochromes. We describe the mechanism along three structural tiers, which are the chromophore-binding pocket, the photosensory module,…

Models MolecularProtein Conformation116 Chemical sciencesHISTIDINE KINASESSIGNAL-TRANSDUCTIONfotobiologiabacteriophytochrome photoactivation010402 general chemistry01 natural sciencesbakteeritPhytochrome B03 medical and health sciencesProtein structureBacterial ProteinsINDUCED PROTON RELEASEPHYTOCHROME-BCRYSTAL-STRUCTUREPhysical and Theoretical Chemistry030304 developmental biologyINDUCED CONFORMATIONAL-CHANGESPhysics0303 health sciencesRESONANCE RAMANMechanism (biology)AGROBACTERIUM-TUMEFACIENSPhotochemical ProcessesMolecular machine0104 chemical sciencesINFRARED FLUORESCENT PROTEINSCHROMOPHORE-BINDING DOMAINBiophysics1182 Biochemistry cell and molecular biologyvalokemiaproteiinitPhytochromeSignal TransductionPhotochemical & Photobiological Sciences
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Microvesicles shed by oligodendroglioma cells and rheumatoid synovial fibroblasts contain aggrecanase activity

2012

Membrane microvesicle shedding is an active process and occurs in viable cells with no signs of apoptosis or necrosis. We report here that microvesicles shed by oligodendroglioma cells contain an ‘aggrecanase’ activity, cleaving aggrecan at sites previously identified as targets for adamalysin metalloproteinases with disintegrin and thrombospondin domains (ADAMTSs). Degradation was inhibited by EDTA, the metalloproteinase inhibitor GM6001 and by tissue inhibitor of metalloproteinases (TIMP)-3, but not by TIMP-1 or TIMP-2. This inhibitor profile indicates that the shed microvesicles contain aggrecanolytic ADAMTS(s) or related TIMP-3-sensitive metalloproteinase(s). The oligodendroglioma cells…

OligodendrogliomaMembrane vesicleRA rheumatoid arthritisADAMTSMatrix metalloproteinaseCell Physiological PhenomenaAdamalysin03 medical and health sciences0302 clinical medicineSettore BIO/10 - BiochimicaEndopeptidasesHumansAggrecansADAM adamalysinADAMTS a disintegrin and metalloproteinase with thrombospondin motifsMolecular BiologyMetalloproteinase030304 developmental biologyAggrecanaseTissue Inhibitor of Metalloproteinase-3MEF mouse embryonic fibroblasts0303 health sciencesMetalloproteinaseChemistryBrief ReportMVs microvesiclesADAMTSMicrovesicleCytoplasmic VesiclesDipeptidesFibroblastsMolecular biologyRecombinant ProteinsMicrovesiclesECM extracellular matrixMembrane vesiclesCell biologyEnzyme ActivationMMP matrix metalloproteinaseADAM ProteinsADAMTS4030220 oncology & carcinogenesisProteolysisADAMTS5 ProteinRheumatic FeverTIMP tissue inhibitor of metalloproteinaseAggrecan
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Energy management of a thermally coupled fuel cell system and metal hydride tank

2019

International audience; Being produced from renewable energy, hydrogen is one of the most efficient energy carriers of the future. Using metal alloys, hydrogen can be stored and transported at a low cost, in a safe and effective manner. However, most metals react with hydrogen to form a compound called metal hydride (MH). This reaction is an exothermic process, and as a result releases heat. With sufficient heat supply, hydrogen can be released from the as-formed metal hydride. In this work, we propose an integrated power system of a proton exchange membrane fuel cell (PEMFC) together with a hydride tank designed for vehicle use. We investigate different aspects for developing metal hydride…

PILE A COMBUSTIBLEMaterials scienceHydrogenExothermic processHYDROGEN TANKIntermetallicEnergy Engineering and Power Technologychemistry.chemical_elementProton exchange membrane fuel cellENERGIE02 engineering and technology010402 general chemistry7. Clean energy01 natural sciences[SPI.MAT]Engineering Sciences [physics]/Materials[SPI.AUTO]Engineering Sciences [physics]/AutomaticHydrogen storage[SPI]Engineering Sciences [physics]Operating temperatureTHERMAL COUPLINGENERGY MANAGEMENT[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Fluid mechanics [physics.class-ph][SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]COUPLAGE[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Mechanics of the fluids [physics.class-ph]Renewable Energy Sustainability and the Environmentbusiness.industryHydride[SPI.NRJ]Engineering Sciences [physics]/Electric power021001 nanoscience & nanotechnologyCondensed Matter PhysicsFUEL CELL0104 chemical sciencesRenewable energyFuel TechnologyChemical engineeringchemistryHYDROGENE[PHYS.MECA.THER]Physics [physics]/Mechanics [physics]/Thermics [physics.class-ph]0210 nano-technologybusiness
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P23. Large demyelinating lesion of the pons as a cause of a locked-in syndrome in multiple sclerosis

2007

Pathologymedicine.medical_specialtybusiness.industryMultiple sclerosismedicine.diseaseSensory SystemsPonsNeurologyPhysiology (medical)Tumefactive demyelinationmedicineNeurology (clinical)Locked-in syndromebusinessClinical Neurophysiology
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Experimental observations of topologically guided water waves within non-hexagonal structures

2020

International audience; We investigate symmetry-protected topological water waves within a strategically engineered square lattice system. Thus far, symmetry protected topological modes in hexagonal systems have primarily been studied in electromagnetism and acoustics, i.e., dispersionless media. Herein, we show experimentally how crucial geometrical properties of square structures allow for topological transport that is ordinarily forbidden within conventional hexagonal structures. We perform numerical simulations that take into account the inherent dispersion within water waves and devise a topological insulator that supports symmetry-protected transport along the domain walls. Our measur…

Physics and Astronomy (miscellaneous)Structure (category theory)FOS: Physical sciences02 engineering and technology01 natural sciences09 EngineeringSquare (algebra)[SPI.MECA.MEFL]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Fluids mechanics [physics.class-ph][SPI.MAT]Engineering Sciences [physics]/MaterialsElectromagnetism10 Technologycond-mat.mes-hallMesoscale and Nanoscale Physics (cond-mat.mes-hall)0103 physical sciences[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsDispersion (water waves)ComputingMilieux_MISCELLANEOUSApplied Physics010302 applied physicsPhysics[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]02 Physical SciencesCondensed Matter - Mesoscale and Nanoscale PhysicsFluid Dynamics (physics.flu-dyn)Physics - Fluid Dynamics021001 nanoscience & nanotechnologySquare latticeComputational physicsphysics.flu-dynTopological insulatorDomain (ring theory)0210 nano-technologyEnergy (signal processing)
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Influence of electromagnetic boundary conditions onto the onset of dynamo action in laboratory experiments

2009

We study the onset of dynamo action of the Riga and Karlsruhe experiments with the addition of an external wall, the electro-magnetic properties of which being different from those of the fluid in motion. We consider a wall of different thickness, conductivity and permeability. We also consider the case of a ferro-fluid in motion.

PhysicsFerrofluid[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Mechanics of the fluids [physics.class-ph][SDU.STU.GP]Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph]Fluid Dynamics (physics.flu-dyn)FOS: Physical sciences[PHYS.PHYS.PHYS-GEO-PH]Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph]Physics - Fluid DynamicsConductivity01 natural sciences010305 fluids & plasmas[SPI.MECA.MEFL]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Fluids mechanics [physics.class-ph]Physics::GeophysicsGeophysics (physics.geo-ph)Physics - GeophysicsPhysics::Fluid DynamicsClassical mechanicsPermeability (electromagnetism)0103 physical sciencesBoundary value problem[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Fluid mechanics [physics.class-ph]010306 general physicsDynamo
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Induction mechanisms in a von Kármán swirling flows of liquid Gallium

2004

International audience; Using in situ magnetic field measurements, we study the induction mechanisms in a swirling flow of liquid Gallium generated inside a cylinder, in the gap between two coaxial rotating discs. The von Kármán flow generated in this manner has both helicity and differential rotation. Magnetic Reynolds numbers Rm up to 7 (based on the disc rim speed) are generated. We study the magnetic induction when an external field is applied successively along the axis, in the azimuthal direction or tranverse to the axis of rotation. In the first two cases, both the flow and the magnetic field are axisymmetric, and an effective mechanism of conversion from poloidal to toroidal field e…

Physics[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Mechanics of the fluids [physics.class-ph]TurbulenceRotational symmetryGeneral Physics and AstronomyReynolds numberGeometryMechanics01 natural sciences010305 fluids & plasmasElectromagnetic inductionMagnetic field[SPI.MECA.MEFL]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Fluids mechanics [physics.class-ph]Physics::Fluid Dynamicssymbols.namesake0103 physical sciencessymbolsDifferential rotationMean flow[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Fluid mechanics [physics.class-ph]Electrical and Electronic Engineering010306 general physicsAxial symmetry
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Open questions about homogeneous fluid dynamos: The VKS experiment

2002

International audience; We consider several problems that arise in the context of homogeneous fluid dynamos such as the effect of turbulence on the dynamo threshold, the saturation level of the generated magnetic field above the threshold and its dynamics. We compare some of our predictions with the recent experimental results of the Karlsruhe and Riga experiments. Finally, we present the VKS experiment that we have designed to answer some of the remaining open questions. We study, in particular, the response of a turbulent flow to an external magnetic field.

Physics[PHYS]Physics [physics]TurbulenceGeneral Physics and AstronomyContext (language use)Mechanics01 natural sciences010305 fluids & plasmasMagnetic field[PHYS] Physics [physics][SPI.MECA.MEFL]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Fluids mechanics [physics.class-ph]Physics::GeophysicsPhysics::Fluid DynamicsTheoretical physicsHomogeneous0103 physical sciencesSaturation level[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Fluid mechanics [physics.class-ph]Electrical and Electronic Engineering010306 general physicsDynamo
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