Search results for "sequence data"

showing 10 items of 1952 documents

LASS6, an additional member of the longevity assurance gene family

2005

Longevity assurance genes (LAGs) represent a subgroup of the homeobox gene family. Five mammalian homologs have been reported, and the corresponding proteins have previously been investigated with respect to their key role in ceramide synthesis. However, members of the LAG family have been shown to be involved in cell growth regulation and cancer differentiation. In an effort to characterize additional members of the LAG family, we have screened the latest releases of genomic databases and report on the bioinformatic characterization of yet another member, LAG1 longevity assurance homolog 6 (LASS6). Like other LAG family members, the LASS6 protein contained a homeodomain and LAG1 domain. In…

Protein familyProtein ConformationIn silicoLongevityMolecular Sequence DataBiologyHomology (biology)MiceDatabases GeneticSphingosine N-AcyltransferaseGeneticsAnimalsHumansGene familyAmino Acid SequenceGeneZebrafishPhylogenyZebrafishHomeodomain ProteinsGeneticsBase SequenceGenome HumanMicroarray analysis techniquesGenes HomeoboxMembrane ProteinsGeneral Medicinebiology.organism_classificationRatsChromosomes Human Pair 2HomeoboxInternational Journal of Molecular Medicine
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Novel avidin-like protein from a root nodule symbiotic bacterium, Bradyrhizobium japonicum.

2005

Bradyrhizobium japonicum is an important nitrogenfixing symbiotic bacterium, which can form root nodules on soybeans. These bacteria have a gene encoding a putative avidin- and streptavidin-like protein, which bears an amino acid sequence identity of only about 30% over the core regions with both of them. We produced this protein in Escherichia coli both as the full-length wild type and as a C-terminally truncated core form and showed that it is indeed a high affinity biotin-binding protein that resembles (strept)avidin structurally and functionally. Because of the considerable dissimilarity in the amino acid sequence, however, it is immunologically very different, and polyclonal rabbit and…

Protein familyProtein ConformationMolecular Sequence DataBiotinmedicine.disease_causeBiochemistryBacterial ProteinsmedicineAnimalsHumansAmino Acid SequenceBradyrhizobiumAntigensMolecular BiologyGeneEscherichia coliPeptide sequencebiologyCell Biologybiology.organism_classificationAvidinBiochemistryPolyclonal antibodiesbiology.proteinRabbitsCarrier ProteinsSequence AlignmentBacteriaBradyrhizobium japonicumAvidinThe Journal of biological chemistry
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A vertebrate globin expressed in the brain.

2000

Haemoglobins and myoglobins constitute related protein families that function in oxygen transport and storage in humans and other vertebrates. Here we report the identification of a third globin type in man and mouse. This protein is predominantly expressed in the brain, and therefore we have called it neuroglobin. Mouse neuroglobin is a monomer with a high oxygen affinity (half saturation pressure, P50 approximately 2 torr). Analogous to myoglobin, neuroglobin may increase the availability of oxygen to brain tissue. The human neuroglobin gene (NGB), located on chromosome 14q24, has a unique exon-intron structure. Neuroglobin represents a distinct protein family that diverged early in metaz…

Protein familyRecombinant Fusion ProteinsMolecular Sequence DataNeuroglobinNerve Tissue ProteinsBiologyMiceAnimalsHumansGlobinAmino Acid SequenceCloning MolecularChromosomes Human Pair 14Expressed Sequence TagsMice Inbred BALB CMultidisciplinarySequence Homology Amino AcidGene Expression ProfilingCytoglobinOxygen transportNitric oxide dioxygenaseBrainChromosome MappingExonsMolecular biologyIntronsGlobin foldCell biologyGlobinsRespiratory proteinOxygenNeuroglobinNature
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Bioinformatic flowchart and database to investigate the origins and diversity of Clan AA peptidases

2009

Abstract Background Clan AA of aspartic peptidases relates the family of pepsin monomers evolutionarily with all dimeric peptidases encoded by eukaryotic LTR retroelements. Recent findings describing various pools of single-domain nonviral host peptidases, in prokaryotes and eukaryotes, indicate that the diversity of clan AA is larger than previously thought. The ensuing approach to investigate this enzyme group is by studying its phylogeny. However, clan AA is a difficult case to study due to the low similarity and different rates of evolution. This work is an ongoing attempt to investigate the different clan AA families to understand the cause of their diversity. Results In this paper, we…

Protein familySequence analysisImmunologyProtein domainMolecular Sequence DataBiologycomputer.software_genreGeneral Biochemistry Genetics and Molecular BiologyProtein Structure SecondaryPhylogeneticsSequence Analysis ProteinSoftware DesignConsensus SequenceConsensus sequenceAspartic Acid EndopeptidasesClanAmino Acid SequenceDatabases ProteinPeptide sequencelcsh:QH301-705.5Ecology Evolution Behavior and SystematicsPhylogenyDatabaseAgricultural and Biological Sciences(all)Biochemistry Genetics and Molecular Biology(all)Applied MathematicsResearchComputational BiologyGenetic VariationGene AnnotationTemplates GeneticMarkov ChainsProtein Structure Tertiarylcsh:Biology (General)Modeling and SimulationGeneral Agricultural and Biological SciencescomputerBiology Direct
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Red blood with blue-blood ancestry: Intriguing structure of a snail hemoglobin

2006

The phylogenetic enigma of snail hemoglobin, its isolated occurrence in a single gastropod family, the Planorbidae, and the lack of sequence data, stimulated the present study. We present here the complete cDNA and predicted amino acid sequence of two hemoglobin polypeptides from the planorbid Biomphalaria glabrata (intermediate host snail for the human parasite Schistosoma mansoni ). Both isoforms contain 13 different, cysteine-free globin domains, plus a small N-terminal nonglobin “plug” domain with three cysteines for subunit dimerization (total M r ≈ 238 kDa). We also identified the native hemoglobin molecule and present here a preliminary 3D reconstruction from electron microscopical …

Protein subunitmedicine.medical_treatmentMolecular Sequence DataBiologyEvolution MolecularHemoglobinschemistry.chemical_compoundImaging Three-DimensionalHemolymphHemolymphImage Processing Computer-AssistedmedicineAnimalsProtein IsoformsBiomphalaria glabrataAmino Acid SequenceGlobinPhylogenyMultidisciplinaryBiomphalariaSequence Homology Amino AcidHemocyaninBiological Sciencesbiology.organism_classificationMolecular biologyProtein Structure TertiaryRespiratory proteinMyoglobinchemistryHemoglobinProceedings of the National Academy of Sciences
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Molecular cloning and evolution of lobster hemocyanin.

2001

In the American lobster, Homarus americanus, oxygen is transported by a hemocyanin that is composed 2 x 6 subunits. N-terminal sequencing show the presence of three distinct subunit types (alpha, beta and gamma). We cloned the cDNA of one of these subunits that belong to the alpha-type. It encodes a hemocyanin subunit of 654 amino acids with a molecular mass of 84.8 kDa, which is synthesized in the hepatopancreas. Phylogenetic analyses of the crustacean hemocyanin sequences show two well-separated clades, which correspond to the alpha and gamma-type subunits. Sequences of beta-type subunits are still unknown. The gamma-sequences have evolved about 15% faster than the alpha-subunits, consist…

Protein subunitmedicine.medical_treatmentMolecular Sequence DataBiophysicsMolecular cloningBiochemistryEvolution MolecularComplementary DNAmedicineAnimalsTissue DistributionAmino Acid SequenceRNA MessengerCloning MolecularMolecular clockMolecular BiologyPhylogenyHomarusMolecular massbiologySequence Homology Amino AcidHemocyaninCell BiologyAmerican lobsterbiology.organism_classificationMolecular biologyNephropidaeProtein SubunitsHemocyaninsBiochemical and biophysical research communications
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Pathogens and host immunity in the ancient human oral cavity.

2014

Calcified dental plaque (dental calculus) preserves for millennia and entraps biomolecules from all domains of life and viruses. We report the first high-resolution taxonomic and protein functional characterization of the ancient oral microbiome and demonstrate that the oral cavity has long served as a reservoir for bacteria implicated in both local and systemic disease. We characterize: (i) the ancient oral microbiome in a diseased state, (ii) 40 opportunistic pathogens, (iii) the first evidence of ancient human-associated putative antibiotic resistance genes, (iv) a genome reconstruction of the periodontal pathogen Tannerella forsythia, (v) 239 bacterial and 43 human proteins, allowing co…

ProteomeMolecular Sequence Data610 Medicine & health10071 Functional Genomics Center ZurichDental plaqueArticlePrehistòriaBacterial geneticsPeriodontal pathogenMicrobiology1311 GeneticsTandem Mass SpectrometryGermanyRNA Ribosomal 16SGeneticsmedicineTannerella forsythiaHumansDental CalculusMicrobiomePathogenPhylogenyMouthbiologyBase SequenceEcologyBacteroidetesMicrobiotaSequence Analysis DNAbiology.organism_classificationmedicine.diseaseRed complexHistory Medieval10182 Institute of Oral Biologystomatognathic diseasesArchaeology10076 Center for Integrative Human Physiology11294 Institute of Evolutionary Medicine570 Life sciences; biologyOral MicrobiomeFood AnalysisGenome BacterialNature genetics
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Proteome-Wide Characterization of the RNA-Binding Protein RALY-Interactome Using the in Vivo-Biotinylation-Pulldown-Quant (iBioPQ) Approach

2013

RALY is a member of the heterogeneous nuclear ribonucleoproteins, a family of RNA-binding proteins generally involved in many processes of mRNA metabolism. No quantitative proteomic analysis of RALY-containing ribonucleoparticles (RNPs) has been performed so far, and the biological role of RALY remains elusive. Here, we present a workflow for the characterization of RALY's interaction partners, termed iBioPQ, that involves in vivo biotinylation of biotin acceptor peptide (BAP)-fused protein in the presence of the prokaryotic biotin holoenzyme synthetase of BirA so that it can be purified using streptavidin-coated magnetic beads, circumventing the need for specific antibodies and providing e…

ProteomeRecombinant Fusion ProteinsMolecular Sequence DataBiotinRNA-binding proteinBiologyHeterogeneous ribonucleoprotein particleProteomicsPoly(A)-Binding Protein IBiochemistryInteractomeELAV-Like Protein 103 medical and health scienceschemistry.chemical_compound0302 clinical medicineNuclear Matrix-Associated ProteinsBiotinProtein Interaction MappingHumansCarbon-Nitrogen LigasesAmino Acid SequenceProtein Interaction MapsPeptide sequence030304 developmental biology0303 health sciencesEscherichia coli ProteinsHeterogeneous-Nuclear Ribonucleoprotein Group CRNA-Binding ProteinsGeneral ChemistryRepressor ProteinsHEK293 CellsELAV ProteinsGene Expression RegulationBiochemistrychemistryProtein Biosynthesis030220 oncology & carcinogenesisBiotinylationProteomeBiological AssayStreptavidinHeLa CellsProtein BindingJournal of Proteome Research
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Identification of enolase as a plasminogen-binding protein in excretory-secretory products ofFasciola hepatica

2004

AbstractWe have followed a combined proteomic approach to identify proteins of Fasciola hepatica that could be involved in host–parasite interactions. Using two-dimensional gel electrophoresis, far Western immunoblot and mass spectrometry analyses, we have identified the enolase enzyme, present in the excretory/secretory materials of F. hepatica, as a human plasminogen-binding protein. This enzyme has an apparent molecular weight of 47 kDa with pI ranging from 6.2 to 7.2. These results suggest that enolase could act as a plasminogen receptor.

ProteomicsAmino Acid MotifsBlotting WesternMolecular Sequence DataEnolaseEnolaseBiophysicsProteomicsBiochemistryMass SpectrometryHost-Parasite InteractionsStructural BiologyHepaticaparasitic diseasesGeneticsAnimalsFasciola hepaticaElectrophoresis Gel Two-DimensionalAmino Acid SequenceIsoelectric PointPlasminogen bindingMolecular BiologyConserved Sequencechemistry.chemical_classificationGel electrophoresisSheepbiologyExcretory–secretoryPlasminogenHelminth ProteinsCell BiologyFasciola hepaticaHydrogen-Ion Concentrationbiology.organism_classificationMolecular biologyMolecular WeightBlotEnzymeLiverchemistryBiochemistryExcretory systemAntigens HelminthPhosphopyruvate HydrataseCarrier ProteinsFEBS Letters
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Identification of Rothia Bacteria as Gluten-Degrading Natural Colonizers of the Upper Gastro-Intestinal Tract

2011

Background Gluten proteins, prominent constituents of barley, wheat and rye, cause celiac disease in genetically predisposed subjects. Gluten is notoriously difficult to digest by mammalian proteolytic enzymes and the protease-resistant domains contain multiple immunogenic epitopes. The aim of this study was to identify novel sources of gluten-digesting microbial enzymes from the upper gastro-intestinal tract with the potential to neutralize gluten epitopes. Methodology/Principal Findings Oral microorganisms with gluten-degrading capacity were obtained by a selective plating strategy using gluten agar. Microbial speciations were carried out by 16S rDNA gene sequencing. Enzyme activities wer…

ProteomicsApplied Microbiologylcsh:MedicineBiochemistryGliadinEpitopeSubstrate SpecificityUpper Gastrointestinal Tractlcsh:ScienceBifidobacterium2. Zero hungerchemistry.chemical_classification0303 health sciencesAniline CompoundsMultidisciplinarymedicine.diagnostic_testbiologyHydrolysisProteolytic enzymesfood and beveragesHydrogen-Ion ConcentrationEnzymes3. Good healthSolutionsBiochemistryMedical MicrobiologyMedicineSmall IntestineResearch ArticleProteasesGlutensProteolysisMolecular Sequence DataDental PlaqueGastroenterology and HepatologyMicrobiologydigestive systemMicrobiology03 medical and health sciencesAntigenmedicineHumansAmino Acid SequenceSalivaBiology030304 developmental biologyBinding Sites030306 microbiologylcsh:Rnutritional and metabolic diseasesbiology.organism_classificationGlutenPeptide Fragmentsdigestive system diseasesMolecular WeightCeliac DiseasechemistryProteolysisbiology.proteinlcsh:QGliadinMicrococcaceaePLoS ONE
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