Search results for "Lampreys"

showing 5 items of 5 documents

The Globin Gene Repertoire of Lampreys: Convergent Evolution of Hemoglobin and Myoglobin in Jawed and Jawless Vertebrates

2014

Agnathans (jawless vertebrates) occupy a key phylogenetic position for illuminating the evolution of vertebrate anatomy and physiology. Evaluation of the agnathan globin gene repertoire can thus aid efforts to reconstruct the origin and evolution of the globin genes of vertebrates, a superfamily that includes the well-known model proteins hemoglobin and myoglobin. Here, we report a comprehensive analysis of the genome of the sea lamprey (Petromyzon marinus )w hich revealed 23 intact globin genes and two hemoglobin pseudogenes. Analyses of the genome of the Arctic lamprey (Lethenteron camtschaticum) identified 18 full length and five partial globin gene sequences. The majority of the globin …

PseudogeneEvolution Molecularbiology.animalGene DuplicationGeneticsAnimalsGlobinMolecular BiologyEcology Evolution Behavior and SystematicsDiscoveriesPhylogenyAgnathaGeneticsGenomebiologyLampreyMyocardiumCytoglobinVertebrateLampreysGnathostomatabiology.organism_classificationArctic lampreyGlobinsOrgan SpecificityVertebratesPseudogenes
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Genes coding for intermediate filament proteins closely related to the hagfish "thread keratins (TK)" alpha and gamma also exist in lamprey, teleosts…

2005

The "thread keratins (TK)" alpha and gamma so far have been considered highly specialized intermediate filament (IF) proteins restricted to hagfish. From lamprey, we now have sequenced five novel IF proteins closely related to TKalpha and TKgamma, respectively. Moreover, we have detected corresponding sequences in EST and genomic databases of teleosts and amphibians. The structure of the TKalpha genes and the positions of their deduced amino acid sequences in a phylogenetic tree clearly support their classification as type II keratins. The genes encoding TKgamma show a structure typical for type III IF proteins, whereas their positions in phylogenetic trees favor a close relationship to the…

MaleBranchiostomaDNA ComplementaryLanceletXenopusMolecular Sequence DataAmphibiansIntermediate Filament Proteinsbiology.animalKeratinAnimalsProtein IsoformsElectrophoresis Gel Two-DimensionalAmino Acid SequenceIntermediate filamentGenePhylogenyZebrafishchemistry.chemical_classificationintegumentary systembiologyPhylogenetic treeSequence Homology Amino AcidEcologyLampreyGene Expression ProfilingFishesGene Expression Regulation DevelopmentalLampreysCell BiologyExonsSequence Analysis DNAbiology.organism_classificationIntronschemistryEvolutionary biologyKeratinsFemaleHagfishesHagfishExperimental cell research
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Vitellogenin from female and estradiol-stimulated male river lampreys (Lampetra fluviatilis L.)

2001

The influence of estradiol-17β (E2) on vitellogenesis is well documented for a number of oviparous craniates. We have examined the role that estradiol-17β plays in the induction and regulation of vitellogenin synthesis in the maturing European river lamprey, Lampetra fluviatilis. In both females and males the estradiol-17β concentrations in the plasma reached comparable maximum values in March, only a few weeks before spawning. Throughout the spawning run, the vitellogenin titer in the blood of females remains rather constant while the ovary volume increases. In contrast, we never found circulating VTG in untreated male lampreys. The synthesis and secretion of the yolk precursor molecule ca…

Malemedicine.medical_specialtyfood.ingredientOvaryBiologyVitellogeninsVitellogeninSex FactorsfoodLampetraInternal medicineYolkbiology.animalBlood plasmamedicineAnimalsEstradiolReproductionLampreyVitellogenesisLampreysGeneral Medicinebiology.organism_classificationMolecular WeightEndocrinologymedicine.anatomical_structurebiology.proteinFemaleAnimal Science and ZoologyEuropean river lampreySeasonsVitellogenesisJournal of Experimental Zoology
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Type I keratin cDNAs from the rainbow trout: independent radiation of keratins in fish

2002

Five different type I keratins from a teleost fish, the rainbow trout Oncorhynchus mykiss, have been sequenced by cDNA cloning and identified at the protein level by peptide mass mapping using MALDI-MS. This showed that the entire range of type I keratins detected biochemically in this fish has now been sequenced. Three of the keratins are expressed in the epidermis (subtype Ie), whereas the other two occur in simple epithelia and mesenchymal cells (subtype Is). Among the Is keratins is an ortholog of human K18; the second Is polypeptide is clearly distinct from K18. We raised a new monoclonal antibody (F1F2, subclass IgG1) that specifically recognizes trout Is keratins, with negative react…

Cancer ResearchDNA Complementaryanimal structuresType I keratinMolecular Sequence Datamacromolecular substancesBiologyPeptide MappingEvolution MolecularMesodermSpecies SpecificityAntibody SpecificityKeratinAnimalsHumansProtein IsoformsAmino Acid SequenceCloning MolecularMolecular BiologyZebrafishPhylogenyZebrafishMammalschemistry.chemical_classificationGeneticsMultiple sequence alignmentSequence Homology Amino Acidintegumentary systemPhylogenetic treeLampreyAntibodies MonoclonalLampreysEpithelial CellsCell Biologybiology.organism_classificationProtein Structure TertiaryTroutchemistryOrgan SpecificityOncorhynchus mykissSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationSharksKeratinsRainbow troutEpidermisSequence AlignmentDevelopmental BiologyDifferentiation
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Type II keratin cDNAs from the rainbow trout: implications for keratin evolution.

2002

From a teleost fish, the rainbow trout Oncorhynchus mykiss, we have cloned and sequenced cDNAs encoding five different type II keratins. The corresponding protein spots, as separated by 2D-PAGE of trout cytoskeletal preparations, have been identified by peptide mass mapping using MALDI mass spectrometry. Three of the sequenced keratins are expressed in the epidermis (subtype IIe), and two in simple epithelia and mesenchymal cells (subtype IIs). The IIs keratins are both orthologs of human K8. This leaves unsequenced only the trace component S3 of the biochemically established trout keratin catalog. A phylogenetic tree has been constructed from a multiple alignment of the rod domains of the …

endocrine systemCancer Researchanimal structuresDNA ComplementaryMolecular Sequence Datamacromolecular substancesPeptide MappingType II keratinEvolution MolecularMesodermSpecies SpecificityAntibody SpecificityKeratinAnimalsHumansProtein IsoformsAmino Acid SequenceCloning MolecularMolecular BiologyZebrafishPhylogenyZebrafishchemistry.chemical_classificationGeneticsMammalsMultiple sequence alignmentintegumentary systembiologyPhylogenetic treeSequence Homology Amino AcidLampreyAntibodies MonoclonalLampreysEpithelial CellsCell Biologybiology.organism_classificationProtein Structure TertiaryTroutchemistryOrgan SpecificityOncorhynchus mykissSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationSharksKeratinsRainbow troutEpidermisSequence AlignmentDevelopmental BiologyDifferentiation; research in biological diversity
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