Search results for "cytoskeletal proteins"

showing 10 items of 119 documents

New functions of Semaphorin 3E and its receptor PlexinD1 during developing and adult hippocampal formation

2018

AbstractThe development and maturation of cortical circuits relies on the coordinated actions of long and short range axonal guidance cues. In this regard, the class 3 semaphorins and their receptors have been seen to be involved in the development and maturation of the hippocampal connections. However, although the role of most of their family members have been described, very few data about the participation of Semaphorin 3E (Sema3E) and its receptor PlexinD1 during the development and maturation of the entorhino-hippocampal (EH) connection are available. In the present study, we focused on determining their roles both during development and in adulthood. We determined a relevant role for…

0301 basic medicineNeurobiologia del desenvolupamentScienceHippocampusNerve Tissue ProteinsSemaphorinsBiologyHippocampal formationHippocampusArticle03 medical and health sciencesMice0302 clinical medicineSemaphorinmedicineAnimalsDevelopmental neurobiologyProgenitor cellReceptorCells CulturedGlycoproteinsNeuronsMultidisciplinaryMembrane GlycoproteinsHippocampus properDentate gyrusQRIntracellular Signaling Peptides and ProteinsGene Expression Regulation DevelopmentalMembrane ProteinsProteinsEmbryonic stem cellCytoskeletal Proteins030104 developmental biologymedicine.anatomical_structurenervous systemMutationMedicineNeuroscienceProteïnes030217 neurology & neurosurgerySignal Transduction
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Much More Than a Scaffold: Cytoskeletal Proteins in Neurological Disorders

2020

Recent observations related to the structure of the cytoskeleton in neurons and novel cytoskeletal abnormalities involved in the pathophysiology of some neurological diseases are changing our view on the function of the cytoskeletal proteins in the nervous system. These efforts allow a better understanding of the molecular mechanisms underlying neurological diseases and allow us to see beyond our current knowledge for the development of new treatments. The neuronal cytoskeleton can be described as an organelle formed by the three-dimensional lattice of the three main families of filaments: actin filaments, microtubules, and neurofilaments. This organelle organizes well-defined structures wi…

0301 basic medicineNeurofilamentGrowth ConesReviewneurofilamentsmicrotubules03 medical and health sciences0302 clinical medicineMicrotubuleOrganellemedicineHumansCytoskeletonGrowth conelcsh:QH301-705.5ActinbiologycytoskeletonGeneral MedicineAxonsneurongrowth coneActin CytoskeletonCytoskeletal Proteins030104 developmental biologyTubulinmedicine.anatomical_structuretubulinlcsh:Biology (General)Mutationbiology.proteinNeuronNervous System DiseasesNeuroscienceactin030217 neurology & neurosurgeryneurological diseasesCells
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Precise Somatotopic Thalamocortical Axon Guidance Depends on LPA-Mediated PRG-2/Radixin Signaling

2016

Summary Precise connection of thalamic barreloids with their corresponding cortical barrels is critical for processing of vibrissal sensory information. Here, we show that PRG-2, a phospholipid-interacting molecule, is important for thalamocortical axon guidance. Developing thalamocortical fibers both in PRG-2 full knockout (KO) and in thalamus-specific KO mice prematurely entered the cortical plate, eventually innervating non-corresponding barrels. This misrouting relied on lost axonal sensitivity toward lysophosphatidic acid (LPA), which failed to repel PRG-2-deficient thalamocortical fibers. PRG-2 electroporation in the PRG-2−/− thalamus restored the aberrant cortical innervation. We ide…

0301 basic medicineNeuroscience(all)ThalamusGrowth ConesSensory systemBiologyArticle03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineDiscrimination PsychologicalThalamusRadixinLysophosphatidic acidNeural PathwaysmedicineAnimalsPhosphorylationGrowth coneCerebral CortexMice KnockoutGeneral NeuroscienceMembrane ProteinsAxon GuidanceCytoskeletal Proteins030104 developmental biologymedicine.anatomical_structurechemistryCerebral cortexAxon guidanceSignal transductionLysophospholipidsNeuroscience030217 neurology & neurosurgerySignal TransductionNeuron
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The actin remodeling protein cofilin is crucial for thymic αβ but not γδ T-cell development

2018

Cofilin is an essential actin remodeling protein promoting depolymerization and severing of actin filaments. To address the relevance of cofilin for the development and function of T cells in vivo, we generated knock-in mice in which T-cell–specific nonfunctional (nf) cofilin was expressed instead of wild-type (WT) cofilin. Nf cofilin mice lacked peripheral αβ T cells and showed a severe thymus atrophy. This was caused by an early developmental arrest of thymocytes at the double negative (DN) stage. Importantly, even though DN thymocytes expressed the TCRβ chain intracellularly, they completely lacked TCRβ surface expression. In contrast, nf cofilin mice possessed normal numbers of γδ T cel…

0301 basic medicineReceptors Antigen T-Cell alpha-betaT-LymphocytesJurkat cellsenvironment and public healthImmune ReceptorsBiochemistryWhite Blood CellsJurkat CellsMice0302 clinical medicineContractile ProteinsSpectrum Analysis TechniquesShort ReportsAnimal CellsCell MovementT-Lymphocyte SubsetsMedicine and Health SciencesGene Knock-In TechniquesBiology (General)Post-Translational ModificationPhosphorylationThymocytesImmune System ProteinsT CellsGeneral NeuroscienceStem CellsReceptors Antigen T-Cell gamma-deltaTransfectionAnimal ModelsCofilinFlow CytometryCell biologyThymusmedicine.anatomical_structureExperimental Organism SystemsActin Depolymerizing FactorsSpectrophotometry030220 oncology & carcinogenesisPhosphorylationCytophotometryCellular TypesGeneral Agricultural and Biological SciencesSignal TransductionHematopoietic Progenitor CellsProlineQH301-705.5T cellImmune CellsImmunologyDouble negativeMouse Modelsmacromolecular substancesThymus GlandBiologyResearch and Analysis MethodsGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesModel OrganismsmedicineAnimalsHumansActinBlood CellsGeneral Immunology and MicrobiologyActin remodelingBiology and Life SciencesProteinsCell BiologyActinsT Cell ReceptorsCytoskeletal Proteins030104 developmental biologyImmune SystemMutationPLoS Biology
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Progressive Characterization of Visual Phenotype in Bardet-Biedl Syndrome Mutant Mice

2019

Purpose Bardet-Biedl syndrome (BBS) is an archetypical ciliopathy caused by defective ciliary trafficking and consequent function. Insights gained from BBS mouse models are applicable to other syndromic and nonsyndromic retinal diseases. This progressive characterization of the visual phenotype in three BBS mouse models sets a baseline for testing therapeutic interventions. Methods Longitudinal acquisition of electroretinograms, optical coherence tomography scans, and visual acuity using the optomotor reflex in Bbs6/Mkks, Bbs8/Ttc8, and Bbs5 knockout mice. Gene and protein expression analysis in vivo and in vitro. Results Complete loss of BBS5, BBS6, or BBS8 leads to different rates of reti…

0301 basic medicineRetinal degenerationAgingBBSomeGenotyping Techniquesgenetic structuresBlotting WesternGroup II ChaperoninsBBS5030105 genetics & heredityBiologyReal-Time Polymerase Chain ReactionRetinaMKKSMice03 medical and health sciencesBardet–Biedl syndromeElectroretinographymedicineAnimalsBardet-Biedl SyndromeVision OcularMice Knockoutmedicine.diagnostic_testRetinal DegenerationPhosphate-Binding Proteinsmedicine.diseaseImmunohistochemistryMice Mutant StrainsCytoskeletal ProteinsDisease Models AnimalCiliopathyPhenotype030104 developmental biologyKnockout mouseCarrier ProteinsMicrotubule-Associated ProteinsNeuroscienceTomography Optical CoherenceSignal TransductionElectroretinographyInvestigative Opthalmology & Visual Science
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The Stress-Inducible Protein DRR1 Exerts Distinct Effects on Actin Dynamics.

2018

Cytoskeletal dynamics are pivotal to memory, learning, and stress physiology, and thus psychiatric diseases. Downregulated in renal cell carcinoma 1 (DRR1) protein was characterized as the link between stress, actin dynamics, neuronal function, and cognition. To elucidate the underlying molecular mechanisms, we undertook a domain analysis of DRR1 and probed the effects on actin binding, polymerization, and bundling, as well as on actin-dependent cellular processes. Methods: DRR1 domains were cloned and expressed as recombinant proteins to perform in vitro analysis of actin dynamics (binding, bundling, polymerization, and nucleation). Cellular actin-dependent processes were analyzed in trans…

0301 basic medicineTU3ADRR1macromolecular substancesCatalysisArticleInorganic Chemistrylcsh:Chemistryactin dynamics03 medical and health sciencesSerum response factorCitosqueletProteïnes citosquelètiquesFAM107AHumansGenes Tumor SuppressorPhysical and Theoretical ChemistryCytoskeletonMolecular Biologylcsh:QH301-705.5SpectroscopyActinCytoskeletonstress physiologyMicroscopy ConfocalbiologyChemistryOrganic ChemistryFluorescence recovery after photobleachingNuclear ProteinscytoskeletonGeneral Medicinestress physiology ; cytoskeleton ; actin dynamics ; DRR1 ; TU3A ; FAM107AActinsComputer Science ApplicationsCell biologyddc:Cytoskeletal proteinsActinin alpha 1030104 developmental biologyTreadmillingProfilinlcsh:Biology (General)lcsh:QD1-999biology.proteinGelsolinFluorescence Recovery After PhotobleachingHeLa CellsInternational journal of molecular sciences
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Impact of the Usher syndrome on olfaction

2015

Usher syndrome is a genetically and clinically heterogeneous disease in humans, characterized by sensorineural hearing loss, retinitis pigmentosa and vestibular dysfunction. This disease is caused by mutations in genes encoding proteins that form complex networks in different cellular compartments. Currently, it remains unclear whether the Usher proteins also form networks within the olfactory epithelium (OE). Here, we describe Usher gene expression at the mRNA and protein level in the OE of mice and showed interactions between these proteins and olfactory signaling proteins. Additionally, we analyzed the odor sensitivity of different Usher syndrome mouse models using electro-olfactogram re…

0301 basic medicineUsher syndromeCell Cycle ProteinsMice TransgenicNerve Tissue ProteinsOlfactionMyosinsBiologyCell LineMice03 medical and health sciencesOlfactory MucosaGene expressionRetinitis pigmentosaotorhinolaryngologic diseasesGeneticsmedicineAnimalsHumansCiliaMolecular BiologyGeneGenetics (clinical)GeneticsExtracellular Matrix ProteinsMessenger RNAGene Expression ProfilingEpithelial CellsGeneral MedicineCadherinsmedicine.diseaseeye diseasesSmellCytoskeletal ProteinsDisease Models Animal030104 developmental biologymedicine.anatomical_structureGene Expression RegulationMyosin VIIaMutationOdorantsSignal transductionCarrier ProteinsUsher SyndromesOlfactory epitheliumSignal TransductionHuman Molecular Genetics
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Age affects myosin relaxation states in skeletal muscle fibers of female but not male mice

2018

The recent discovery that myosin has two distinct states in relaxed muscle–disordered relaxed (DRX) and super-relaxed (SRX)–provides another factor to consider in our fundamental understanding of the aging mechanism in skeletal muscle, since myosin is thought to be a potential contributor to dynapenia (age-associated loss of muscle strength independent of atrophy). The primary goal of this study was to determine the effects of age on DRX and SRX states and to examine their sex specificity. We have used quantitative fluorescence microscopy of the fluorescent nucleotide analog 2′/3′-O-(N-methylanthraniloyl) ATP (mantATP) to measure single-nucleotide turnover kinetics of myosin in skinned skel…

Adenosine TriphosphataseMale0301 basic medicineAgingMuscle PhysiologyPhysiologyMuscle RelaxationATPaseMuscle Fibers Skeletallcsh:MedicineMale miceSkeletal Muscle FibersBiochemistrymyosinsMiceMyosin headContractile Proteins0302 clinical medicineAnimal Cellsskeletal muscle fibresMyosinMedicine and Health SciencesgenderLipid HormonesPost-Translational ModificationPhosphorylationlcsh:Scienceta315Musculoskeletal SystemSex Characteristics0303 health sciencesMultidisciplinaryEstradiolRelaxation (psychology)biologyChemistryMusclesanimal experimentsEnzymesmedicine.anatomical_structurePhosphorylationFemaleCellular TypesAnatomyResearch ArticleMuscle ContractionSex characteristicsmedicine.medical_specialtyMotor ProteinssukupuolierotActin MotorseläinkokeetMuscle Fibersmyosiinitsukupuoli03 medical and health sciencesAtrophyMolecular MotorsInternal medicinemedicineAnimalslihassolut030304 developmental biology030102 biochemistry & molecular biologylcsh:RPhosphatasesBiology and Life SciencesProteinsSkeletal muscleCell BiologySkeletal Muscle Fibersmedicine.diseaseHormonesCytoskeletal Proteins030104 developmental biologyEndocrinologySkeletal MusclesageEnzymologybiology.proteinlcsh:QSteady state (chemistry)ikä030217 neurology & neurosurgery
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Redox lipidomics to better understand brain aging and function

2019

Human prefrontal cortex (PFC) is a recently evolutionary emerged brain region involved in cognitive functions. Human cognitive abilities decline during aging. Yet the molecular mechanisms that sustain the preservation or deterioration of neurons and PFC functions are unknown. In this review, we focus on the role of lipids in human PFC aging. As the evolution of brain lipid concentrations is particularly accelerated in the human PFC, conferring a specific lipid profile, a brief approach to the lipidome of PFC was consider along with the relationship between lipids and lipoxidative damage, and the role of lipids in human PFC aging. In addition, the specific targets of lipoxidative damage in h…

AdultAgingPrefrontal CortexGlycerophospholipidsBiologymedicine.disease_causeBiochemistryCognitionPhysiology (medical)LipidomicsmedicineHumansCognitive DysfunctionCognitive declineMitochondrionPrefrontal cortexExerciseCaloric RestrictionNeuronsSphingolipidsCognitionEnergy metabolismMiddle AgedLipidomeAdvanced lipoxidation end productsLipid MetabolismCytoskeletal ProteinsOxidative StressProteostasisnervous systemLipidomicsFatty Acids UnsaturatedEnergy MetabolismNeuroscienceFunction (biology)Oxidative stress
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The transcription factor ZEB1 (deltaEF1) promotes tumour cell dedifferentiation by repressing master regulators of epithelial polarity.

2007

Epithelial to mesenchymal transition (EMT) is implicated in the progression of primary tumours towards metastasis and is likely caused by a pathological activation of transcription factors regulating EMT in embryonic development. To analyse EMT-causing pathways in tumouri-genesis, we identified transcriptional targets of the E-cadherin repressor ZEB1 in invasive human cancer cells. We show that ZEB1 repressed multiple key determinants of epithelial differentiation and cell–cell adhesion, including the cell polarity genes Crumbs3, HUGL2 and Pals1-associated tight junction protein. ZEB1 associated with their endogenous promoters in vivo, and strongly repressed promotor activities in reporter …

AdultCancer ResearchChromatin ImmunoprecipitationCellular differentiationImmunoblottingDown-RegulationBreast NeoplasmsBiologymedicine.disease_causeEpitheliumArticleCell polarityGeneticsmedicineTumor Cells CulturedHumansNeoplasm InvasivenessEpithelial–mesenchymal transitionCell adhesionPromoter Regions GeneticMolecular BiologyTranscription factorEpithelial polarityAgedOligonucleotide Array Sequence AnalysisHomeodomain ProteinsMembrane GlycoproteinsReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingCell PolarityMembrane ProteinsZinc Finger E-box-Binding Homeobox 1Cell DifferentiationMiddle AgedCadherinsCytoskeletal ProteinsMicroscopy FluorescenceCancer cellColonic NeoplasmsCancer researchDisease ProgressionSnail Family Transcription FactorsCarcinogenesisNucleoside-Phosphate KinaseTranscription FactorsOncogene
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