Search results for "Stress Fibers"

showing 6 items of 6 documents

Metabotropic glutamate receptors activate phospholipase D in astrocytes through a protein kinase C-dependent and Rho-independent pathway.

2003

Metabotropic glutamate receptors (mGluRs) are G protein-coupled receptors that mediate phospholipase D (PLD) activation in brain, but the mechanism underlying this response remains unclear. Here we used primary cultures of astrocytes as a cell model to explore the mechanism that links mGluRs to PLD. Glutamate activated both phospholipase C (PLC) and PLD with equal potency and this effect was mimicked by L-cysteinesulfinic acid, a putative neurotransmitter previously shown to activate mGluRs coupled to PLD, but not PLC, in adult brain. PLD activation by glutamate was dependent on Ca(2+) mobilization and fully blocked by both protein kinase C (PKC) inhibitors and PKC down-regulation, suggesti…

rho GTP-Binding ProteinsIndolesBacterial ToxinsGlutamic AcidBiologyReceptors Metabotropic GlutamateSulfenic AcidsMaleimidesRats Sprague-DawleyCellular and Molecular NeuroscienceBacterial ProteinsStress FibersmedicinePhospholipase DAnimalsCysteineEgtazic AcidProtein kinase CCells CulturedProtein Kinase CChelating AgentsPharmacologyProtein Synthesis InhibitorsBrefeldin APhospholipase CDose-Response Relationship DrugEndothelin-1Phospholipase DADP-Ribosylation FactorsMetabotropic glutamate receptor 6Glutamate receptorDNAMolecular biologyRatsenzymes and coenzymes (carbohydrates)medicine.anatomical_structureMetabotropic receptorMetabotropic glutamate receptorAstrocytesType C PhospholipasesTetradecanoylphorbol Acetatelipids (amino acids peptides and proteins)AstrocyteNeuropharmacology
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In vivo detection of cytokeratin filament network breakdown in cells treated with the phosphatase inhibitor okadaic acid.

2001

We have previously described vulva carcinoma-derived A-431 subclone AK13-1, which stably expresses fluorescently labeled cytokeratin filaments (CKFs). Time-lapse fluorescence microscopy of these cells permits the continuous monitoring of the dynamics of the CKF cytoskeleton in vivo. To study mechanisms and principles of CKF disassembly as it occurs, e.g., during mitosis and liver disease, we have treated cells with the phosphatase inhibitor okadaic acid (OA), which induces complete CKF network breakdown within 3–5 h without significantly affecting the organization of the actin- and tubulin-based cytofilaments. In time-lapse movies, we find that the network breakdown starts at the cell perip…

HistologyTime FactorsRecombinant Fusion ProteinsGreen Fluorescent ProteinsPathology and Forensic Medicinechemistry.chemical_compoundCytokeratinAdenosine TriphosphateStress FibersOkadaic AcidFluorescence microscopeTumor Cells CulturedHumansEnzyme InhibitorsPhosphorylationCytoskeletonMitosisActinCytoskeletonbiologyVulvar NeoplasmsEpithelial CellsCell BiologyOkadaic acidCell biologyCytoskeletal ProteinsLuminescent ProteinsTubulinchemistryDesmoplakinsMicroscopy FluorescenceCytoplasmbiology.proteinKeratinsFemaleIndicators and ReagentsCell and tissue research
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Focal adhesions are hotspots for keratin filament precursor formation

2006

Recent studies showed that keratin filament (KF) formation originates primarily from sites close to the actin-rich cell cortex. To further characterize these sites, we performed multicolor fluorescence imaging of living cells and found drastically increased KF assembly in regions of elevated actin turnover, i.e., in lamellipodia. Abundant KF precursors (KFPs) appeared within these areas at the distal tips of actin stress fibers, moving alongside the stress fibers until their integration into the peripheral KF network. The earliest KFPs were detected next to actin-anchoring focal adhesions (FAs) and were only seen after the establishment of FAs in emerging lamellipodia. Tight spatiotemporal …

TalinKeratin 14Intermediate Filamentsmacromolecular substancesBiologyTransfectionKeratin 18Cell LineFocal adhesionMiceReportStress FibersCell cortexMetalloproteinsAnimalsHumansRNA AntisensePseudopodiaCytoskeletonActinResearch ArticlesCell Line TransformedFocal AdhesionsKeratin FilamentKeratin-18Keratin-14Cell BiologyBridged Bicyclo Compounds HeterocyclicActinsZyxinCell biologyProtein TransportThiazolesBiochemistryEpidermolysis Bullosa SimplexMutationKeratinsThiazolidinesMarine ToxinsLamellipodiumPaxillinThe Journal of Cell Biology
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Zasp/Cypher internal ZM-motif containing fragments are sufficient to co-localize with α-actinin—Analysis of patient mutations

2005

Z-band alternatively spliced PDZ-containing protein (ZASP/Cypher) has an important role in maintaining Z-disc stability in striated and cardiac muscle. ZASP/Cypher interacts through its PDZ domain with the major Z-disc actin cross-linker, alpha-actinin. ZASP/Cypher also has a conserved sequence called the ZM-motif, and it is found in two alternatively spliced exons 4 and 6. We have shown earlier that the ZM-motif containing internal regions of two related proteins ALP and CLP36 interact with alpha-actinin rod region, and that the ZM-motif is important in targeting ALP to the alpha-actinin containing structures in cell. Here, we show that the ZASP/Cypher internal fragments containing either …

SarcomeresAmino Acid MotifsPDZ domainCHO Cellsmacromolecular substancesBiologyConserved sequenceStress fiber assemblyMyoblastsMiceExonCricetinaeStress FibersmedicineAnimalsHumansMyocyteActininMuscle SkeletalActinAdaptor Proteins Signal TransducingOrganellesGeneticsMyocardiumPoint mutationCardiac muscleExonsIntracellular MembranesCell BiologyLIM Domain Proteinsmusculoskeletal systemPeptide FragmentsCell biologymedicine.anatomical_structureMutationCardiomyopathiesProtein BindingExperimental Cell Research
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In human endothelial cells rapamycin causes mTORC2 inhibition and impairs cell viability and function.

2008

Aim Drug-eluting stents are widely used to prevent restenosis but are associated with late endothelial damage. To understand the basis for this effect, we have studied the consequences of a prolonged incubation with rapamycin on the viability and functions of endothelial cells. Methods and results Human umbilical vein or aorta endothelial cells were exposed to rapamycin in the absence or in the presence of tumour necrosis factor α (TNFα). After a 24 h-incubation, rapamycin (100 nM) caused a significant cell loss associated with the increase of both apoptosis and necrosis, as quantified by propidium iodide staining, caspase 3 activity, and lactate dehydrogenase release. Rapamycin also impair…

Time FactorsPhysiologyApoptosismTORC1Polymerase Chain Reactionchemistry.chemical_compoundCell MovementStress FibersMicroscopy ConfocalCaspase 3TOR Serine-Threonine KinasesNitric Oxide Synthase Type IIIRibosomal Protein S6 Kinases 70-kDaUp-RegulationEndothelial stem cellmedicine.anatomical_structureBiochemistryCardiology and Cardiovascular MedicineE-SelectinEndotheliumNitric Oxide Synthase Type IIICell SurvivalBlotting WesternEnzyme-Linked Immunosorbent AssayBiologyMechanistic Target of Rapamycin Complex 1Nitric OxideTacrolimusNecrosisTheophyllinePhysiology (medical)medicineHumansImmunoprecipitationViability assayPropidium iodideProtein kinase BAdaptor Proteins Signal TransducingSirolimusDose-Response Relationship DrugL-Lactate DehydrogenaseTumor Necrosis Factor-alphaEndothelial CellsProteinsCardiovascular AgentsRegulatory-Associated Protein of mTORMolecular biologyRapamycin-Insensitive Companion of mTOR ProteinchemistryMultiprotein ComplexesTOR Serine-Threonine KinasesCarrier ProteinsProtein KinasesTranscription FactorsCardiovascular research
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B-Raf Acts via the ROCKII/LIMK/Cofilin Pathway To Maintain Actin Stress Fibers in Fibroblasts

2004

Members of the Raf family of serine/threonine protein kinases have been well studied in a variety of organisms ranging from Drosophila to humans. Three raf homologues (raf-1, B-raf, and A-raf) exist in mammals, while a single prototypic homologue exists in lower organisms. A wealth of genetic and biochemical data have indicated that Raf family members are signaling kinases that are integral components of the conserved Ras/Raf/MEK/ERK signaling cascade. Following activation by Ras-dependent mechanisms, Raf protein kinases act as mitogen-activated protein (MAP) kinase kinase kinases, which phosphorylate and activate the type 1/2 MAP kinase kinases, also known as MEK1/2. These dual-specificity…

Proto-Oncogene Proteins B-rafMAPK/ERK pathwaymacromolecular substancesProtein Serine-Threonine KinasesTransfectionCell LineProto-Oncogene Proteins B-rafLim kinaseMiceCell MovementStress FibersAnimalsHumansPhosphorylationKinase activityCell Growth and DevelopmentMolecular BiologyRho-associated protein kinaseCytoskeletonrho-Associated KinasesbiologyKinaseMicrofilament ProteinsIntracellular Signaling Peptides and ProteinsLim KinasesCell BiologyFibroblastsMolecular biologyActinsCell biologyProto-Oncogene Proteins c-rafActin Depolymerizing FactorsMitogen-activated protein kinasebiology.proteinProto-Oncogene Proteins c-rafMitogen-Activated Protein KinasesProtein KinasesSignal TransductionMolecular and Cellular Biology
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