Search results for "Cathepsins"

showing 10 items of 66 documents

Circulating cathepsin K and cystatin C in patients with cancer related bone disease: clinical and therapeutic implications.

2007

Abstract The clinical significance of serum cathepsin K and cystatin C was assessed in patients with breast cancer (BCa) or prostate cancer (PCa) with confined disease (M0) or bone metastasis (BM). Cathepsin K and cystatin C circulating levels were determined by ELISAs in 63 cancer patients, in 35 patients with nonmalignant diseases and in 42 healthy blood donors (control group). In BCa patients, cathepsin K serum levels were significantly lower than in sex matched control group (HS; p  = 0.0008) or in patients with primary osteoporosis (OP; p  = 0.0009). On the contrary, cystatin C levels were significantly higher in BCa patients than in HS ( p  = 0.0001) or OP ( p  = 0.017). In PCa patien…

CA15-3Malemedicine.medical_specialtyCathepsin KProstatic HyperplasiaBone NeoplasmsBreast NeoplasmsEnzyme-Linked Immunosorbent Assayurologic and male genital diseasesZoledronic AcidProstate cancerInternal medicinemedicineCathepsin KBiomarkers TumorHumansCystatin CAgedPharmacologyAged 80 and overbiologyBone Density Conservation AgentsDiphosphonatesbusiness.industryBone cancerImidazolesCancerBone metastasisProstatic NeoplasmsGeneral MedicineMiddle Agedmedicine.diseaseCathepsinsCystatinsBone metastasis; cathepsin K; Cystatin CEndocrinologyZoledronic acidCystatin CROC CurveBone metastasiCase-Control Studiesbiology.proteinDisease ProgressionOsteoporosisFemaleDrug Monitoringbusinessmedicine.drugBiomedicinepharmacotherapy = Biomedecinepharmacotherapie
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Flexible minerals: self-assembled calcite spicules with extreme bending strength.

2013

Flexi-Fibers Glass or metal fibers can show incredible flexibility. Natalio et al. (p. 1298 ; see the Perspective by Sethmann ) used the protein silicatein-α, which is responsible for the biomineralization of silicates in sponges, to guide the formation of spicules made of calcite. These synthetic spicules could be bent to a high degree because of their inherent elasticity, whilst retaining the ability to guide light.

CalciteSpiculeMultidisciplinaryMaterials scienceCalcareous spongebiologySyconMineralogybiology.organism_classificationCathepsinsAmorphous solidCalcium CarbonatePoriferachemistry.chemical_compoundSponge spiculechemistryFlexural strengthMicroscopy Electron TransmissionSpectroscopy Fourier Transform InfraredAnimalsNanoparticlesStress MechanicalComposite materialBiomineralizationScience (New York, N.Y.)
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Mineralization of SaOS-2 cells on enzymatically (silicatein) modified bioactive osteoblast-stimulating surfaces.

2005

There is a demand for novel bioactive supports in surgery, orthopedics, and tissue engineering. The availability of recombinant silica-synthesizing enzyme (silicatein) opens new possibilities for the synthesis of silica-containing bioactive surfaces under ambient conditions that do not damage biomolecules like proteins. Here it is shown that growth of human osteosarcoma SaOS-2 cells on cluster plates precoated with Type 1 collagen is not affected by additional coating of the plates with the recombinant silicatein and incubation with its enzymatic substrate, tetraethoxysilane (TEOS). However, the enzymatic modification of the plates by biosilica deposition on the protein-coated surface cause…

Calcium PhosphatesMaterials scienceSurface PropertiesBiomedical Engineeringchemistry.chemical_elementBiocompatible MaterialsCalciumMineralization (biology)Collagen Type Ilaw.inventionSubstrate SpecificityBiomaterialsCalcification PhysiologicTissue engineeringIn vivolawCell Line TumormedicineHumansSaos-2 cellsOsteoblastsOsteoblastSilanesCathepsinsIn vitroRecombinant Proteinsmedicine.anatomical_structurechemistryBiochemistryRecombinant DNAJournal of biomedical materials research. Part B, Applied biomaterials
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Partial restoration of pre-transformation levels of lysyl oxidase and transin mRNAs in phenotypic ras revertants.

1995

Neoplastic transformation mediated by ras oncogenes is associated with deregulated expression of genes encoding, for example, various proteases, lysyl oxidase, and smooth-muscle α-actin. To define the role of these genes in the initiation or maintenance of the ras-transformed state, we compared their steady-state mRNA levels in two different sets of preneoplastic fibroblast lines, ras-transformed clones, and phenotypic revertants derived from them. Compared with the preneoplastic fibroblasts, the ras-transformed derivatives exhibited elevated levels of cathepsin L (major excreted protein), transin (stromelysin I, matrix metalloproteinase–3), and collagenase I (matrix metalloproteinase–1) mR…

Cancer ResearchTranscription GeneticCathepsin LBlotting WesternGene ExpressionLysyl oxidaseCell LineCathepsin LProtein-Lysine 6-OxidaseProto-Oncogene Proteins c-mycDownregulation and upregulationEndopeptidasesmedicineAnimalsNeoplastic transformationCollagenasesRNA MessengerFibroblastMolecular BiologyGeneMessenger RNAbiologyMetalloendopeptidasesPhenotypeMolecular biologyCathepsinsNeoplasm ProteinsRatsCysteine Endopeptidasesmedicine.anatomical_structureCell Transformation NeoplasticGenes rasPhenotypebiology.proteinMatrix Metalloproteinase 3Matrix Metalloproteinase 1Precancerous ConditionsMolecular carcinogenesis
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Silicateins, the major biosilica forming enzymes present in demosponges: protein analysis and phylogenetic relationship.

2007

Silicateins are enzymes, which are restricted to sponges (phylum Porifera), that mediate the catalytic formation of biosilica from monomeric silicon compounds. The silicatein protein is compartmented in the sponges in the axial filaments which reside in the axial canals of the siliceous spicules. In the present study silicatein has been isolated from the freshwater sponge Lubomirskia baicalensis where it occurs in isoforms with sizes of 23 kDa, 24 kDa and 26 kDa. Since the larger protein is glycosylated we posit that it is a processed form of one of the smaller size forms. The silicatein isoforms are post-translationally modified by phosphorylation; at least four isoforms exist with pI's of…

Cathepsin LMolecular Sequence DataCathepsin LDemospongeCatalytic triadGeneticsAnimalsAmino Acid SequenceGenePeptide sequencePhylogenyCathepsinbiologySequence Homology Amino AcidGeneral MedicineExonsbiology.organism_classificationSilicon DioxideCathepsinsIntronsPoriferaSuberites domunculaSpongeCysteine EndopeptidasesMicroscopy ElectronBiochemistrybiology.proteinGene
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Bioinspired self-assembly of tyrosinase-modified silicatein and fluorescent core-shell silica spheres.

2014

Inspired by the intermolecular cross-linking of mussel foot proteins and their adhesive properties, tyrosinase has been used to modify recombinant silicatein. DOPA/DOPAquinone-mediated cross-linking and interfacial interactions enhanced both self-assembly of silicatein building blocks and templating of core–shell silica spheres, resulting in fluorescent biomimetic silicatein–silica hybrid mesofibers.

ChemistryMonophenol MonooxygenaseTyrosinaseBiophysicsNanotechnologySilicon DioxideBiochemistryFluorescenceCathepsinsPoriferaCore shellNanoporesBiomimetic MaterialsMaterials TestingMolecular MedicineAnimalsSelf-assemblyAdhesiveEngineering (miscellaneous)NanospheresBiotechnologyFluorescent DyesBioinspirationbiomimetics
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Biofabrication of biosilica-glass by living organisms

2008

Biosilicification is an evolutionarily old and widespread type of biomineralization both in unicellular and multicellular organisms, including sponges, diatoms, radiolarians, choanoflagellates, and higher plants. In the last few years combined efforts in molecular biology, cell biology, and inorganic and analytical chemistry have allowed the first insight into the molecular mechanisms by which these organisms form an astonishing variety of siliceous structures that cannot be achieved by chemical methods. Here we report about the present stage of knowledge on structure, biochemical composition, and mechanisms of biosilica formation, focusing our attention particularly on sponges because of t…

DiatomsModels MolecularSequence Homology Amino AcidProtein ConformationMolecular Sequence DataOrganic ChemistryBiologySilicon DioxideCathepsinsBiochemistryPoriferaMulticellular organismSequence homologyEvolutionary biologyDrug DiscoveryBiochemical compositionAnimalsGlassBiomineralizationBiofabricationNatural Product Reports
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Siliceous spicules in marine demosponges (example Suberites domuncula)

2005

All metazoan animals comprise a body plan of different complexity. Since-especially based on molecular and cell biological data-it is well established that all metazoan phyla, including the Porifera (sponges), evolved from a common ancestor the search for common, basic principles of pattern formation (body plan) in all phyla began. Common to all metazoan body plans is the formation of at least one axis that runs from the apical to the basal region; examples for this type of organization are the Porifera and the Cnidaria (diploblastic animals). It seems conceivable that the basis for the formation of the Bauplan in sponges is the construction of their skeleton by spicules. In Demospongiae (w…

EXPRESSIONCnidariaSpiculeGENESPROTEINGeneral Physics and AstronomyPaleontologySponge spiculeStructural BiologyevolutionSturtian glaciationAnimalsGeneral Materials ScienceDEPOSITIONbiosilicaBody PatterningbiologyPhylumsilicateinsilica formationSPONGESCell BiologySilicon Dioxidebiology.organism_classificationCathepsinsSuberites domunculaspiculesPoriferaSuberites domunculaBody planEvolutionary biologyMORPHOGENESISSuberitesMicron
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Self-healing, an intrinsic property of biomineralization processes

2013

The sponge siliceous spicules are formed enzymatically via silicatein, in contrast to other siliceous biominerals. Originally, silicatein had been described as a major structural protein of the spicules that has the property to allow a specific deposition of silica onto their surface. More recently, it had been unequivocally demonstrated that silicatein displays a genuine enzyme activity, initiating and maintaining silica biopolycondensation at low precursor concentrations (<2 mM). Even more, as silicatein becomes embedded into the biosilica polymer, formed by the enzyme, it retains its functionality to enable a controlled biosilica deposition. The protection of silicatein through the biosi…

Enzyme functionMolecular Sequence DataClinical BiochemistryNanotechnology02 engineering and technologyBiochemistry03 medical and health sciencesSponge spiculeGeneticsAnimalsAmino Acid SequenceMolecular Biology030304 developmental biologyMinerals0303 health sciencesbiologyChemistryStructural proteinCell BiologySilicon Dioxide021001 nanoscience & nanotechnologybiology.organism_classificationCathepsinsPoriferaPhysical stressSpongeSelf-healingBiophysics0210 nano-technologyHybrid materialSequence AlignmentBiomineralizationIUBMB Life
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Analysis of the axial filament in spicules of the demosponge Geodia cydonium: different silicatein composition in microscleres (asters) and megascler…

2007

The skeleton of the siliceous sponges (Porifera: Hexactinellida and Demospongiae) is supported by spicules composed of bio-silica. In the axial canals of megascleres, harboring the axial filaments, three isoforms of the enzyme silicatein (-alpha, -beta and -gamma) have been identified until now, using the demosponges Tethya aurantium and Suberites domuncula. Here we describe the composition of the proteinaceous components of the axial filament from small spicules, the microscleres, in the demosponge Geodia cydonium that possesses megascleres and microscleres. The morphology of the different spicule types is described. Also in G. cydonium the synthesis of the spicules starts intracellularly …

Gene isoformSpiculeHistologyMorphology (linguistics)Molecular Sequence DataFlagellumPathology and Forensic MedicineDemospongeSponge spiculeSequence Analysis ProteinAnimalsAmino Acid SequenceTethya aurantiumCloning MolecularCytoskeletonPhylogenybiologyAnimal StructuresCell BiologyGeneral MedicineAnatomybiology.organism_classificationSilicon DioxideCathepsinsSuberites domunculaSolubilityGeodiaBiophysicsEuropean journal of cell biology
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