Search results for "mechanotransduction"

showing 9 items of 29 documents

Polycystin-1 downregulation induces ERK-dependent mTOR pathway activation in a cellular model of psoriasis

2018

Psoriatic plaques tend to localize to the knees and elbows, areas that are particularly subject to mechanical stress resulting from bending and friction. Moreover, plaques often develop at sites of mechanical trauma or injury (Koebner phenomenon). Nevertheless, mechanotransduction has never been linked to psoriasis. Polycystins (polycystin-1, PC1; polycystin-2, PC2) are mechanosensitive molecules that function as key regulators of cellular mechanosensitivity and mechanotransduction. The aim of this in vitro study was to investigate the role of polycystins in the development of psoriasis. We showed that PC1 knockdown in HaCaT cells led to an elevated mRNA expression of psoriasis-related biom…

Genetic Markers0301 basic medicineMAPK/ERK pathwayendocrine systemTRPP Cation ChannelsMAP Kinase Signaling SystemDown-RegulationModels BiologicalCell Line03 medical and health sciences0302 clinical medicineDownregulation and upregulationCell MovementPsoriasismedicineHumansPsoriasisMechanotransductionMolecular BiologyPI3K/AKT/mTOR pathwayCell ProliferationGene knockdownCell growthChemistryTOR Serine-Threonine Kinasesmedicine.diseaseCell biologyHaCaT030104 developmental biologyGene Knockdown Techniques030220 oncology & carcinogenesisMolecular MedicineBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
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Prestress in the extracellular matrix sensitizes latent TGF-β1 for activation

2014

A mild strain induced by matrix remodeling mechanically primes latent TGF-β1 for its subsequent activation and release in response to contractile forces.

IntegrinsAnimals; Cell Differentiation; Cells Cultured; Extracellular Matrix/metabolism; HEK293 Cells; Humans; Integrins/metabolism; Integrins/physiology; Mechanotransduction Cellular; Myofibroblasts/cytology; Myofibroblasts/metabolism; Rats Wistar; Transforming Growth Factor beta1/metabolismmedicine.medical_treatmentCellular differentiationCèl·lulesIntegrinContext (language use)BiologyMechanotransduction CellularArticleExtracellular matrixTransforming Growth Factor beta1Membranes (Biologia)medicineAnimalsHumansRats WistarMyofibroblastsCells CulturedResearch ArticlesGrowth factorHEK 293 cellsCell DifferentiationCell BiologyExtracellular MatrixHEK293 Cellsbiology.proteinBiophysicsMyofibroblastTransforming growth factor
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Dynamic Tuning of Viscoelastic Hydrogels with Carbonyl Iron Microparticles Reveals the Rapid Response of Cells to Three-Dimensional Substrate Mechani…

2021

Current methods to dynamically tune three-dimensional hydrogel mechanics require specific chemistries and substrates that make modest, slow, and often irreversible changes to their mechanical properties, exclude the use of protein-based scaffolds, or alter hydrogel microstructure and pore size. Here, we rapidly and reversibly alter the mechanical properties of hydrogels consisting of extracellular matrix proteins and proteoglycans by adding carbonyl iron microparticles (MP) and applying external magnetic fields. This approach drastically alters hydrogel mechanics: rheology reveals that application of a 4,000 Oe magnetic field to a 5 mg/mL collagen hydrogel containing 10 wt% MPs increases th…

Materials science02 engineering and technologyCell morphologyMechanotransduction CellularViscoelasticityArticleExtracellular matrix03 medical and health sciencesMagneticsCarbonyl ironRheologyHumansGeneral Materials ScienceMechanotransductionParticle Sizeskin and connective tissue diseasesCells Cultured030304 developmental biologyCell Nucleus0303 health sciencesExtracellular Matrix ProteinsViscositytechnology industry and agricultureHydrogelsDynamic mechanical analysisMechanics021001 nanoscience & nanotechnologyElasticityExtracellular MatrixSelf-healing hydrogelsCalciumCollagen0210 nano-technologyIron CompoundsACS applied materialsinterfaces
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G protein-coupled odorant receptors underlie mechanosensitivity in mammalian olfactory sensory neurons

2014

Mechanosensitive cells are essential for organisms to sense the external and internal environments, and a variety of molecules have been implicated as mechanical sensors. Here we report that odorant receptors (ORs), a large family of G protein-coupled receptors, underlie the responses to both chemical and mechanical stimuli in mouse olfactory sensory neurons (OSNs). Genetic ablation of key signaling proteins in odor transduction or disruption of OR–G protein coupling eliminates mechanical responses. Curiously, OSNs expressing different OR types display significantly different responses to mechanical stimuli. Genetic swap of putatively mechanosensitive ORs abolishes or reduces mechanical res…

Mice 129 StrainPatch-Clamp TechniquesG protein[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionSensory systemMice Transgenicodorant receptorsBiologyReceptors OdorantMechanotransduction CellularOlfactory Receptor NeuronsMiceg protein-coupled receptorsAnimalsHumansCalcium SignalingMechanotransductionReceptorG protein-coupled receptormechanotransductionMice KnockoutMultidisciplinaryheterologous expressionBiological SciencesRecombinant ProteinsMice Inbred C57BLHEK293 CellsMice Inbred DBA[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Mutagenesis Site-DirectedEctopic expressionMechanosensitive channels[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]NeuroscienceTransduction (physiology)Mechanoreceptors[SDV.AEN]Life Sciences [q-bio]/Food and Nutritionmechanical sensorsSignal Transduction
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Tension Causes Unfolding of Intracellular Vimentin Intermediate Filaments

2020

Intermediate filament (IF) proteins are a class of proteins that constitute different filamentous structures in mammalian cells. As such, IF proteins are part of the load-bearing cytoskeleton and support the nuclear envelope. Molecular dynamics simulations show that IF proteins undergo secondary structural changes to compensate mechanical loads, which is confirmed by experimental in vitro studies on IF hydrogels. However, the structural response of intracellular IF to mechanical load is yet to be elucidated in cellulo. Here, in situ nonlinear Raman imaging combined with multivariate data analysis is used to quantify the intracellular secondary structure of the IF cytoskeletal protein viment…

MicroscopybiologyChemistryIntermediate FilamentsBiomedical EngineeringVimentinSpectrum Analysis RamanMechanotransduction CellularProtein Structure SecondaryGeneral Biochemistry Genetics and Molecular BiologyBiomaterialsMolecular dynamicsSelf-healing hydrogelsBiophysicsbiology.proteinHumansVimentinMechanotransductionIntermediate filamentCytoskeletonProtein secondary structureIntracellularHeLa CellsProtein UnfoldingAdvanced Biosystems
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A core cochlear phenotype in USH1 mouse mutants implicates fibrous links of the hair bundle in its cohesion, orientation and differential growth

2008

The planar polarity and staircase-like pattern of the hair bundle are essential to the mechanoelectrical transduction function of inner ear sensory cells. Mutations in genes encoding myosin VIIa, harmonin, cadherin 23,protocadherin 15 or sans cause Usher syndrome type I (USH1, characterized by congenital deafness, vestibular dysfunction and retinitis pigmentosa leading to blindness) in humans and hair bundle disorganization in mice. Whether the USH1 proteins are involved in common hair bundle morphogenetic processes is unknown. Here, we show that mouse models for the five USH1 genetic forms share hair bundle morphological defects. Hair bundle fragmentation and misorientation (25-52° mean ki…

Stereocilia (inner ear)Cadherin Related ProteinsProtocadherinCell Cycle ProteinsNerve Tissue ProteinsMyosinsBiologyMechanotransduction CellularMiceCDH23Pregnancyotorhinolaryngologic diseasesmedicineAnimalsHumansInner earProtein PrecursorsMolecular BiologyActinMice KnockoutCadherinDyneinsAnatomyCadherinsMice Mutant StrainsCochleaCell biologyCytoskeletal ProteinsDisease Models AnimalPhenotypemedicine.anatomical_structureMyosin VIIaMicroscopy Electron ScanningFemalesense organsCarrier ProteinsUsher SyndromesTip linkPCDH15Developmental BiologyDevelopment
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Fibronectin-bound α5β1 integrins sense load and signal to reinforce adhesion in less than a second

2017

Integrin-mediated mechanosensing of the extracellular environment allows cells to control adhesion and signalling. Whether cells sense and respond to force immediately upon ligand-binding is unknown. Here, we report that during adhesion initiation, fibroblasts respond to mechanical load by strengthening integrin-mediated adhesion to fibronectin (FN) in a biphasic manner. In the first phase, which depends on talin and kindlin as well as on the actin nucleators Arp2/3 and mDia, FN-engaged α5β1 integrins activate focal adhesion kinase (FAK) and c-Src in less than 0.5 s to steeply strengthen α5β1- and αV-class integrin-mediated adhesion. When the mechanical load exceeds a certain threshold, fib…

Talin0301 basic medicineTime FactorsMaterials scienceIntegrinNanotechnologyMechanotransduction CellularActin-Related Protein 2-3 ComplexCSK Tyrosine-Protein KinaseFocal adhesionMice03 medical and health sciencesCell AdhesionAnimalsGeneral Materials ScienceMechanotransductionCell adhesionActinMice KnockoutbiologyCell adhesion moleculeMechanical EngineeringGeneral ChemistryAdhesionFibroblastsCondensed Matter PhysicsFibronectinsCell biologyFibronectinsrc-Family Kinases030104 developmental biologyMechanics of MaterialsFocal Adhesion Kinase 1biology.proteinApplications of AFM; integrins; Mechanotransduction; Microscopy; Nanoscale biophysicsIntegrin alpha5beta1Nature Materials
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Stretch-induced Intussuceptive and Sprouting Angiogenesis in the Chick Chorioallantoic Membrane

2014

Vascular systems grow and remodel in response to not only metabolic needs, but also mechanical influences as well. Here, we investigated the influence of tissue-level mechanical forces on the patterning and structure of the chick chorioallantoic membrane (CAM) microcirculation. A dipole stretch field was applied to the CAM using custom computer-controlled servomotors. The topography of the stretch field was mapped using finite element models. After 3 days of stretch, Sholl analysis of the CAM demonstrated a 7-fold increase in conducting vessel intersections within the stretch field (p 0.05). In contrast, corrosion casting and SEM of the stretch field capillary meshwork demonstrated intense …

animal structuresTime FactorsCapillary actionFinite Element AnalysisNeovascularization PhysiologicChick EmbryoCorrosion CastingBiochemistryMechanotransduction CellularArticleChorioallantoic MembraneChick chorioallantoic membraneMicrocirculationSholl analysisFluorescence microscopeAnimalsIntussusceptive angiogenesisSprouting angiogenesisMicroscopy VideoChemistryMicrocirculationModels CardiovascularCell BiologyAnatomyCapillariesChorioallantoic membraneMicroscopy FluorescenceBiophysicsMicroscopy Electrochemical ScanningStress MechanicalCardiology and Cardiovascular Medicine
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Stimuli and sensors that initiate skeletal muscle hypertrophy following resistance exercise

2018

One of the most striking adaptations to exercise is the skeletal muscle hypertrophy that occurs in response to resistance exercise. A large body of work shows that a mammalian target of rapamycin complex 1 (mTORC1)-mediated increase of muscle protein synthesis is the key, but not sole, mechanism by which resistance exercise causes muscle hypertrophy. While much of the hypertrophy signaling cascade has been identified, the initiating, resistance exercise-induced and hypertrophy-stimulating stimuli have remained elusive. For the purpose of this review, we define an initiating, resistance exercise-induced and hypertrophy-stimulating signal as “hypertrophy stimulus,” and the sensor of such a s…

medicine.medical_specialtyPhysiologySkeletal muscle hypertrophylihaksetmuscle protein030204 cardiovascular system & hematologyMechanotransduction CellularMuscle hypertrophyWeight-Bearing03 medical and health sciencesskeletal muscle hypertrophy0302 clinical medicineStress PhysiologicalPhysiology (medical)Internal medicinemedicineAnimalsHumansMechanotransductionta315Muscle Skeletalbusiness.industryResistance trainingSkeletal muscleResistance Training030229 sport sciencesHypertrophyhypertrophy sensorEndocrinologymedicine.anatomical_structurelihasmassahypertrophy stimulusvoimaharjoitteluproteiinitSignal transductionbusiness
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