Search results for "Porifera"

showing 10 items of 196 documents

Src proteins/src genes: from sponges to mammals

2004

The genome of marine sponge Suberites domuncula, a member of the most ancient and most simple metazoan phylum Porifera, encodes at least five genes for Src-type proteins, more than, i.e., Caenorhabditis elegans or Drosophila melanogaster (two in each). Three proteins, SRC1SD, SRC2SD and SRC3SD, were fully characterized. The overall homology (identity+similarity) among the three S. domuncula Srcs (68-71%) is much lower than the sequence conservation between orthologous Src proteins from freshwater sponges (82-85%). It is therefore very likely that several src genes/proteins were already present in the genome of Urmetazoa, the hypothetical metazoan ancestor. We have identified in the S. domun…

DNA Complementaryanimal structuresMolecular Sequence DataProto-Oncogene Proteins pp60(c-src)SH2 domainHomology (biology)SH3 domainEvolution Molecularsrc Homology DomainsExonGeneticsAnimalsProtein IsoformsAmino Acid SequenceCloning MolecularGenePhylogenyMammalsGeneticsSequence Homology Amino AcidbiologyIntronDNASequence Analysis DNAGeneral Medicinebiology.organism_classificationIntronsPoriferaSuberites domunculaSequence AlignmentProto-oncogene tyrosine-protein kinase SrcGene
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Immunoglobulin-like domain is present in the extracellular part of the receptor tyrosine kinase from the marine sponge Geodia cydonium.

1994

We have isolated and characterized two cDNAs from the marine sponge Geodia cydonium coding for a new member of a receptor tyrosine kinase of class II. The deduced amino acid sequence shows two characteristic domains: (i) the tyrosine kinase domain; and (ii) and immunoglobulin-like domain. The latter part shows high homology to the vertebrate C2 type immunoglobulin domain. This result demonstrates that immunoglobulin domains are not recent achievements of higher animals but exist also in those animals which have diverged from other organisms about 800 million years ago.

DNA ComplementarybiologySequence Homology Amino AcidMolecular Sequence DatamyrImmunoglobulinsReceptor Protein-Tyrosine KinasesImmunoglobulin domainSH2 domainBiological EvolutionReceptor tyrosine kinasePoriferaProtein Structure TertiaryBiochemistryStructural BiologyPhylogeneticsMultigene FamilyROR1biology.proteinAnimalsAmino Acid SequenceMolecular BiologyPeptide sequenceTyrosine kinaseSequence AlignmentJournal of molecular recognition : JMR
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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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Novel mechanism for the radiation-induced bystander effect: nitric oxide and ethylene determine the response in sponge cells.

2006

Until now the bystander effect had only been described in vertebrates. In the present study the existence of this effect has been demonstrated for the phylogenetically oldest metazoan phylum, the Porifera. We used the demosponge Suberites domuncula for the experiments in the two-chamber-system. The lower dish contained irradiated "donor" cells (single cells) and the upper dish the primmorphs ("recipient" primmorphs). The "donor" cells were treated with UV-B light (40 mJ/cm2) and 100 microM hydrogen peroxide (H2O2), factors that exist also in the natural marine aquatic environment of sponges; these factors caused a high level of DNA strand breaks followed by a reduced viability of the cells.…

EthyleneDNA ComplementaryDNA damageCell SurvivalUltraviolet RaysHealth Toxicology and MutagenesisMolecular Sequence DataGene ExpressionApoptosisBiologyNitric OxideModels BiologicalNitric oxideAmidohydrolaseschemistry.chemical_compoundGene expressionGeneticsBystander effectAnimalsAmino Acid SequenceCloning MolecularMolecular BiologyNitriteschemistry.chemical_classificationBase SequenceSequence Homology Amino AcidEthylenesbiology.organism_classificationCell biologyAmino acidPoriferaSuberites domunculachemistryBiochemistryApoptosisDNA DamageMutation research
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Polarity factor 'Frizzled' in the demosponge Suberites domuncula: identification, expression and localization of the receptor in the epithelium/pinac…

2003

Until recently, it was assumed that polarity and axis formation have evolved only in metazoan phyla higher than Cnidaria. One key molecule involved in the signal transduction causing tissue polarity is Frizzled, a seven-transmembrane receptor that is activated by the Wnt family of secreted proteins. We report the isolation and characterization of a Frizzled gene from the demosponge Suberites domuncula (Sd-Fz). The deduced polypeptide comprises all characteristic domains known from Frizzled receptors of higher metazoans. In situ hybridization studies show that Sd-Fz is expressed in cells close to the surface of the sponges and in the pinacocytes of some canals. Northern blot analysis demonst…

FrizzledMolecular Sequence DataBiophysicsPinacodermReceptors Cell SurfaceBiochemistryEpitheliumDemospongeStructural BiologyGeneticsAnimalsNorthern blotAmino Acid SequenceMolecular BiologyIn Situ HybridizationPhylogenyCell AggregationbiologySequence Homology Amino AcidWnt signaling pathwayCell BiologyAnatomybiology.organism_classificationBlotting NorthernCell biologyPoriferaProtein Structure TertiaryUp-RegulationSuberites domunculaSpongeSignal transductionSignal TransductionFEBS letters
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Isolation and characterization of Wnt pathway-related genes from Porifera.

2006

The Wnt signal acts by binding to Frizzled receptors, with the subsequent activation of two different signal transduction cascades, the canonical and the non-canonical Wnt pathways, involved in cell growth, differentiation, migration and fate. The canonical pathway functions through the translocation of beta-catenin to the nucleus and the activation of TCF/LEF transcription factors; it plays an important role in developmental patterning and cell fate decisions during embryogenesis. The non-canonical Wnt pathway is responsible for the planar cell polarity process in invertebrates, and for the convergent-extension movements during vertebrate gastrulation. The final effect of the non-canonical…

FrizzledMyosin Light ChainsMolecular Sequence DataGTPaseCell fate determinationGlycogen Synthase Kinase 3AnimalsAmino Acid Sequencecdc42 GTP-Binding ProteinCells CulturedPhylogenybiologyGene Expression ProfilingWnt signaling pathwayIntracellular Signaling Peptides and ProteinsLRP6LRP5Cell BiologyGeneral Medicinebiology.organism_classificationFrizzled ReceptorsCell biologyPoriferaSuberites domunculaWnt ProteinsGene Expression RegulationSignal transductionTCF Transcription FactorsrhoA GTP-Binding ProteinCell biology international
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Regional and modular expression of morphogenetic factors in the demosponge Lubomirskia baicalensis

2008

Some sponges [phylum Porifera], e.g. the demosponges Lubomirskia baicalensis or Axinella polypoides, show an arborescent growth form. In the freshwater sponge L. baicalensis this morphotype is seen mostly in depths below 4 m while in more shallow regions it grows as a crust. The different growth forms are determined in nature very likely by water current and/or light. The branches of this species are composed of modules, arranged along the apical-basal axis. The modules are delimited by a precise architecture of the spicule bundles; longitudinal bundles originate from the apex of the earlier module, while at the basis of each module these bundles are cross-linked by traverse bundles under f…

FrizzledSpiculeMolecular Sequence DataGeneral Physics and AstronomyMyotrophinDemospongeStructural BiologyEpidermal growth factorBotanyMorphogenesisAnimalsGeneral Materials ScienceAmino Acid SequenceeducationGeneeducation.field_of_studyEpidermal Growth FactorbiologyReverse Transcriptase Polymerase Chain ReactionWnt signaling pathwayCell BiologyBlotting Northernbiology.organism_classificationFrizzled ReceptorsPoriferaCell biologySpongeIntercellular Signaling Peptides and ProteinsMicron
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Bio-sintering processes in hexactinellid sponges: Fusion of bio-silica in giant basal spicules from Monorhaphis chuni☆

2009

The two sponge classes, Hexactinellida and Demospongiae, comprise a skeleton that is composed of siliceous skeletal elements (spicules). Spicule growth proceeds by appositional layering of lamellae that consist of silica nanoparticles, which are synthesized via the sponge-specific enzyme silicatein. While in demosponges during maturation the lamellae consolidate to a solid rod, the lamellar organization of hexactinellid spicules largely persists. However, the innermost lamellae, near the spicule core, can also fuse to a solid axial cylinder. Similar to the fusion of siliceous nanoparticles and lamella, in several hexactinellid species individual spicules unify during sintering-like processe…

FusionSpiculebiologyHexactinellidMolecular Sequence DataAnimal StructuresAnatomyBlotting NorthernSilicon Dioxidebiology.organism_classificationPoriferaSpongeLamella (surface anatomy)Sponge spiculeStructural BiologySpectrometry Mass Matrix-Assisted Laser Desorption-IonizationComplementary DNAMicroscopy Electron ScanningBiophysicsAnimalsLamellar structureJournal of Structural Biology
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