Search results for "matrix proteins"

showing 5 items of 125 documents

Tenascin gene expression in rat liver and in rat liver cells. In vivo and in vitro studies.

1991

Tenascin is a major glycoprotein constituent of the extracellular matrix with a strong affinity to fibronectin; its distribution is believed to be temporarily and spatially limited. Tenascin gene expression is increased during wound healing processes. As repair mechanisms in chronic liver diseases resemble wound healing we studied tenascin gene expression in rat liver and in isolated rat liver cells. In normal rat liver a tenascin specific antiserum stains sinusoidal cells with fiber-like prolongations, which at the same time are desmin-positive (ITO-cells). In the CCl4-acutely-damaged liver a strong tenascin staining is detected in cells located among the mononuclear cells of the inflammat…

endocrine systemPathologymedicine.medical_specialtyanimal structuresKupffer CellsCell Adhesion Molecules NeuronalTenascinConnective tissueFluorescent Antibody TechniqueGene ExpressionLiver Cirrhosis Experimentaldigestive systemDesminmedicineAnimalsEndotheliumCarbon TetrachlorideCells CulturedExtracellular Matrix ProteinsbiologyTenascin CMuscle SmoothRats Inbred StrainsTenascinFibroblastsmusculoskeletal systemMolecular biologyRatsFibronectinEndothelial stem cellmedicine.anatomical_structureLiverCell cultureembryonic structuresbiology.proteinHepatic stellate cellWound healingVirchows Archiv. B, Cell pathology including molecular pathology
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A luminal glycoprotein drives dose-dependent diameter expansion of the Drosophila melanogaster hindgut tube

2012

An important step in epithelial organ development is size maturation of the organ lumen to attain correct dimensions. Here we show that the regulated expression of Tenectin (Tnc) is critical to shape the Drosophila melanogaster hindgut tube. Tnc is a secreted protein that fills the embryonic hindgut lumen during tube diameter expansion. Inside the lumen, Tnc contributes to detectable O-Glycans and forms a dense striated matrix. Loss of tnc causes a narrow hindgut tube, while Tnc over-expression drives tube dilation in a dose-dependent manner. Cellular analyses show that luminal accumulation of Tnc causes an increase in inner and outer tube diameter, and cell flattening within the tube wall,…

glycoproteinCancer ResearchhindgutOrganogenesis[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritiontenectinHydrostatic pressureExtracellular matrixlumenMolecular Cell BiologyMorphogenesisDrosophila Proteinslumen;hindgut;tenectin;epithelial tube;glycoproteinGenetics (clinical)Animal biologyExtracellular Matrix ProteinsDrosophila MelanogasterGene Expression Regulation DevelopmentalHindgutAnimal ModelsAnatomymusculoskeletal systemExtracellular MatrixCell biologymedicine.anatomical_structureAlimentation et NutritionResearch Articleepithelial tubelcsh:QH426-470MorphogenesisLumen (anatomy)BiologyModel OrganismsGenetic MutationBiologie animaleGeneticsmedicineAnimalsFood and NutritionBiologyMolecular BiologyEcology Evolution Behavior and SystematicsGlycoproteinsEmbryonic stem cellExtracellular Matrix CompositionEpitheliumGastrointestinal Tractlcsh:GeneticsMutagenesisEctopic expressionGene Function[SDV.AEN]Life Sciences [q-bio]/Food and NutritionOrganism DevelopmentDevelopmental Biology
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Microarray-based mutation analysis of 183 Spanish families with Usher syndrome.

2010

PURPOSE. The purpose of this study was to test the ability of the genotyping microarray for Usher syndrome (USH) to identify the mutations responsible for the disease in a cohort of 183 patients with USH. METHODS. DNA from 183 patients with Usher syndrome from the Spanish population was analyzed using a genotyping microarray containing 429 previously identified disease-associated variants in eight USH genes. Mutations detected by the array were confirmed by direct sequencing. Haplotype analysis was also performed in families carrying common Spanish mutations. RESULTS. The genotyping microarray identified 43 different variants, divided into 32 disease causative and 11 probably non-pathologic…

medicine.medical_specialtyGenotypeMicroarrayUsher syndromeDNA Mutational AnalysisCadherin Related ProteinsCell Cycle ProteinsNerve Tissue ProteinsMyosinsBiologymedicine.disease_causePolymerase Chain ReactionReceptors G-Protein-CoupledMolecular geneticsGenotypemedicineotorhinolaryngologic diseasesHumansGenotypingAllelesAdaptor Proteins Signal TransducingOligonucleotide Array Sequence AnalysisGeneticsExtracellular Matrix ProteinsMutationGene Expression ProfilingHaplotypeMembrane ProteinsCadherinsmedicine.diseaseGene expression profilingCytoskeletal ProteinsSpainMyosin VIIaMutationUsher Syndromes
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Developmental expression of human cartilage matrix protein.

1994

Cartilage matrix protein (CMP) is a non-collagenous component of cartilage with a yet unknown function. In this study we used in situ hybridization to investigate the temporal and sptial distribution of CMP transcripts during human embryonic and early fetal development, and compared it to the pattern of expression observed for collagen types I, II, X, and decorin. The distribution of CMP and collagen type II transcripts followed a similar pattern in the embryonic bone anlage, the fetal growth plate, and the developing vertebral column. Expression was highest in the upper hypertrophic and lower proliferative zone, whereas calcified cartilage was negative throughout the different stages of bo…

medicine.medical_specialtyTranscription GeneticDecorinBiologyMatrix (biology)Cartilage Oligomeric Matrix ProteinKidneyChondrocyteBone and BonesExtracellular matrixEmbryonic and Fetal DevelopmentInternal medicinemedicinePerichondriumHumansMatrilin ProteinsRNA MessengerIn Situ HybridizationGlycoproteinsSkinExtracellular Matrix ProteinsCartilageCell DifferentiationDNAChondrogenesisSpineCell biologycarbohydrates (lipids)Collagen type I alpha 1Endocrinologymedicine.anatomical_structureCartilagePhenotypeJointsProteoglycansCollagenDecorinDevelopmental BiologyDevelopmental dynamics : an official publication of the American Association of Anatomists
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Influence of extracellular matrix proteins on the development of cultured human dendritic cells.

1998

The development of dendritic cells (DC) is still only partly understood. Recently established culture systems using CD34+ cells or monocytes as precursor cells for the generation of DC indicate the necessity of pro-inflammatory cytokines for their development. In vivo the contact to other cells or to the proteins of the extracellular matrix might also be essential for their development. In our experiments we used granulocyte-macrophage colony-stimulating factor- and IL-4-treated human monocytes as precursor cells to investigate the interaction of DC at different maturation stages with the matrix proteins fibronectin, collagen type I and collagen type IV. We demonstrate a strong beta1-integr…

medicine.medical_treatmentCellular differentiationImmunologyCD34Cell CommunicationMatrix (biology)BiologyMonocytesExtracellular matrixPrecursor cellmedicineCell AdhesionImmunology and AllergyHumansCells CulturedExtracellular Matrix ProteinsTumor Necrosis Factor-alphaIntegrin beta1Cell DifferentiationDendritic cellDendritic CellsCell biologyFibronectinsUp-RegulationFibronectinCytokineAntigens Surfacebiology.proteinCollagenLymphocyte Culture Test MixedEuropean journal of immunology
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