Search results for "Phylogenetics"

showing 10 items of 777 documents

Origin of the prolactin-releasing hormone (PRLH) receptors: evidence of coevolution between PRLH and a redundant neuropeptide Y receptor during verte…

2004

We present seven new vertebrate homologs of the prolactin-releasing hormone receptor (PRLHR) and show that these are found as two separate subtypes, PRLHR1 and PRLHR2. Analysis of a number of vertebrate sequences using phylogeny, pharmacology, and paralogon analysis indicates that the PRLHRs are likely to share a common ancestry with the neuropeptide Y (NPY) receptors. Moreover, a micromolar level of NPY was able to bind and inhibit completely the PRLH-evoked response in PRLHR1-expressing cells. We suggest that an ancestral PRLH peptide started coevolving with a redundant NPY binding receptor, which then became PRLHR, approximately 500 million years ago. The PRLHR1 subtype was shown to have…

Prolactin-releasing hormoneGeneticsBase SequenceMolecular Sequence DataBiologyNeuropeptide Y receptorProlactinReceptors G-Protein-CoupledReceptors Neuropeptide YEvolution MolecularPhylogeneticsMolecular evolutionHormone receptorGene DuplicationGene duplicationVertebratesGeneticsAnimalsHumansReceptorPhylogenyGenomics
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Evolutionary and structural analyses of GDAP1, involved in Charcot-Marie-Tooth disease, characterize a novel class of glutathione transferase-related…

2003

Mutations in the Ganglioside-induced differentiation-associated protein-1 (GDAP1) gene cause autosomal recessive Charcot-Marie-Tooth disease type 4A. The protein encoded by GDAP1 shows clear similarity to glutathione transferases (also known as glutathione S-transferases or GSTs). The human genome contains a paralog of GDAP1 called GDAP1L1. Using comparative genomics, we show that orthologs of GDAP1 and GDAP1L1 are found in mammals, birds, amphibians, and fishes. Likely orthologs of those genes in invertebrates and a low but consistent similarity with some plant and eubacterial genes have also been found. We demonstrate that GDAP1 and GDAP1L1 do not belong to any of the known classes of GST…

Protein ConformationMolecular Sequence DataSequence alignmentNerve Tissue ProteinsBiologyEvolution MolecularProtein structurePhylogeneticsCharcot-Marie-Tooth DiseaseDatabases GeneticGeneticsCluster AnalysisHumansAmino Acid SequenceMolecular BiologyPeptide sequenceGeneEcology Evolution Behavior and SystematicsPhylogenyGlutathione TransferaseComparative genomicsGeneticsTransmembrane domainMultigene FamilyHuman genomeSequence AlignmentMolecular biology and evolution
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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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Do distantly related parasites rely on the same proximate factors to alter the behaviour of their hosts?

2006

Phylogenetically unrelated parasites often increase the chances of their transmission by inducing similar phenotypic changes in their hosts. However, it is not known whether these convergent strategies rely on the same biochemical precursors. In this paper, we explored such aspects by studying two gammarid species ( Gammarus insensibilis and Gammarus pulex ; Crustacea: Amphipoda: Gammaridae) serving as intermediate hosts in the life cycle of two distantly related parasites: the trematode, Microphallus papillorobustus and the acanthocephalan, Polymorphus minutus . Both these parasite species are known to manipulate the behaviour of their amphipod hosts, bringing them towards the water surfa…

Proteomics0106 biological sciences[SDV]Life Sciences [q-bio]MESH : Host-Parasite InteractionsMESH : Behavior Animal[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomyMESH: Peptide Mapping01 natural sciencesAcanthocephalaMESH : ProteomicsMESH: AmphipodatrematodeMESH: Behavior Animal[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisMESH: AnimalsElectrophoresis Gel Two-DimensionalMESH: PhylogenyPhylogenyComputingMilieux_MISCELLANEOUSGeneral Environmental Science0303 health sciencesMESH : Peptide MappingBehavior AnimalbiologyEcologyMESH : AcanthocephalaMESH: ProteomicsGeneral MedicineMESH : Amphipodamanipulative parasiteMESH : TrematodaMESH: TrematodaMicrophallusTrematodaTrematodagammaridGeneral Agricultural and Biological SciencesAcanthocephalaResearch Article[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologymolecular convergenceAmphipodaZoology[ SDV.BBM.BM ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyMESH: Host-Parasite InteractionsPeptide Mapping010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesproteomicsPhylogeneticsAnimals[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAmphipoda030304 developmental biologyGeneral Immunology and MicrobiologyHost (biology)MESH : Phylogeny[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyMESH : Electrophoresis Gel Two-DimensionalMESH: AcanthocephalaMESH: Electrophoresis Gel Two-Dimensionalbiology.organism_classificationacanthocephalanGammarus pulexPulexMESH : Animals[ SDV.BID.SPT ] Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomy[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Phylointeractomics reconstructs functional evolution of protein binding

2017

Molecular phylogenomics investigates evolutionary relationships based on genomic data. However, despite genomic sequence conservation, changes in protein interactions can occur relatively rapidly and may cause strong functional diversification. To investigate such functional evolution, we here combine phylogenomics with interaction proteomics. We develop this concept by investigating the molecular evolution of the shelterin complex, which protects telomeres, across 16 vertebrate species from zebrafish to humans covering 450 million years of evolution. Our phylointeractomics screen discovers previously unknown telomere-associated proteins and reveals how homologous proteins undergo functiona…

Proteomics0301 basic medicineLineage (evolution)ScienceTelomere-Binding ProteinsGeneral Physics and AstronomyGenomicsBiologyProteomicsArticleGeneral Biochemistry Genetics and Molecular BiologyConserved sequenceEvolution Molecular03 medical and health sciencesPhylogeneticsMolecular evolutionPhylogenomicsAnimalsCells CulturedConserved SequencePhylogenyGeneticsGenomeMultidisciplinaryQComputational BiologyGenomicsSequence Analysis DNAGeneral ChemistryTelomereProtein superfamily030104 developmental biologyEvolutionary biologyVertebratesSequence AlignmentProtein Binding
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Exceptional Heterogeneity in Viral Evolutionary Dynamics Characterises Chronic Hepatitis C Virus Infection.

2016

The treatment of HCV infection has seen significant progress, particularly since the approval of new direct-acting antiviral drugs. However these clinical achievements have been made despite an incomplete understanding of HCV replication and within-host evolution, especially compared with HIV-1. Here, we undertake a comprehensive analysis of HCV within-host evolution during chronic infection by investigating over 4000 viral sequences sampled longitudinally from 15 HCV-infected patients. We compare our HCV results to those from a well-studied HIV-1 cohort, revealing key differences in the evolutionary behaviour of these two chronic-infecting pathogens. Notably, we find an exceptional level o…

RNA viruses0301 basic medicineMaleHepacivirusHIV InfectionsHepacivirusPathology and Laboratory Medicinemedicine.disease_causeVirus ReplicationHepatitis0302 clinical medicineImmunodeficiency VirusesMedicine and Health Sciences2.2 Factors relating to the physical environmentChronicAetiologylcsh:QH301-705.5Data Managementeducation.field_of_studybiologyHepatitis C virusLiver Diseasevirus diseasesHepatitis C3. Good healthPhylogeneticsInfectious DiseasesMedical MicrobiologyViral PathogensViral evolutionVirusesEvolutionary RateHIV/AIDS030211 gastroenterology & hepatologyFemalePathogensInfectionResearch Articlelcsh:Immunologic diseases. AllergyComputer and Information SciencesEvolutionary ProcessesEvolutionHepatitis C virusPopulationChronic Liver Disease and CirrhosisImmunologyMicrobiologyViral EvolutionVirusEvolution Molecular03 medical and health sciencesHepatitis - CVirologyRetrovirusesGeneticsmedicineHumansEvolutionary SystematicsEvolutionary dynamicseducationMicrobial PathogensMolecular BiologyTaxonomyEvolutionary BiologyFlavivirusesPopulation BiologyLentivirusOrganismsBiology and Life SciencesHIVMolecularHepatitis C Chronicbiology.organism_classificationVirologyHepatitis virusesOrganismal EvolutionViral ReplicationChronic infection030104 developmental biologyEmerging Infectious Diseaseslcsh:Biology (General)Viral replicationMicrobial EvolutionImmunologyHIV-1Parasitologylcsh:RC581-607Digestive DiseasesPopulation GeneticsFollow-Up Studies
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An unusually high substitution rate in transplant-associated BK polyomavirus in vivo is further concentrated in HLA-C-bound viral peptides

2018

Infection with human BK polyomavirus, a small double-stranded DNA virus, potentially results in severe complications in immunocompromised patients. Here, we describe the in vivo variability and evolution of the BK polyomavirus by deep sequencing. Our data reveal the highest genomic evolutionary rate described in double-stranded DNA viruses, i.e., 10−3–10−5 substitutions per nucleotide site per year. High mutation rates in viruses allow their escape from immune surveillance and adaptation to new hosts. By combining mutational landscapes across viral genomes with in silico prediction of viral peptides, we demonstrate the presence of significantly more coding substitutions within predicted cog…

RNA viruses0301 basic medicineMutation ratePhysiologyvirusesUrinePathology and Laboratory Medicinemedicine.disease_causeBiochemistryMedicine and Health SciencesBiology (General)Amino AcidsGenome EvolutionPhylogenyData ManagementMutationOrganic CompoundsHigh-Throughput Nucleotide SequencingPhylogenetic AnalysisDNA virusGenomicsBody FluidsBK virusPhylogeneticsChemistryMedical MicrobiologyViral PathogensViral evolutionVirusesPhysical SciencesEvolutionary RatePathogensAnatomyResearch ArticleComputer and Information SciencesEvolutionary ProcessesQH301-705.5ImmunologyGenome ViralHLA-C AntigensBiologyMicrobiologyMolecular EvolutionViral EvolutionVirusDeep sequencing03 medical and health sciencesVirologyGeneticsmedicineHumansEvolutionary SystematicsMicrobial PathogensMolecular BiologyTaxonomyEvolutionary BiologyPolyomavirus InfectionsOrganic ChemistryOrganismsChemical CompoundsBiology and Life SciencesComputational BiologyProteinsOrgan TransplantationRC581-607030112 virologyVirologyOrganismal EvolutionPeptide FragmentsPolyomaviruses030104 developmental biologyAmino Acid SubstitutionBK VirusMicrobial EvolutionMutationParasitologyImmunologic diseases. AllergyDNA virusesPolyomavirus Infections
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Thorny-Headed Worms (Acanthocephala): Jaw-Less Members of Jaw-Bearing Worms That Parasitize Jawed Arthropods and Jawed Vertebrates

2021

Stem-acanthocephalans in the millimeter range might already have parasitized mandibulates in the Cambrian, while larger body sizes presumably evolved along with the upward-inclusion of gnathostome hosts. The characteristic morphology of modern acanthocephalans including the mostly hooked attachment organ (proboscis) should have emerged in the same context. Due to their rigidity, acanthocephalan hooks and copulatory caps are candidates for fossilization, but soft-tissue preservation might also have occurred under exceptional circumstances. Nonetheless, eggs represent the only ancient remains assigned to acanthocephalans to date. These were mostly retrieved from dried mammalian coprolites of …

Range (biology)PhylogeneticsProboscisCoproliteZoologyMorphology (biology)Context (language use)BiologyAcanthocephalabiology.organism_classificationFossilization
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The unique complexity of the CYP3A4 upstream region suggests a nongenetic explanation of its expression variability.

2010

The individually variable and unpredictable expression of CYP3A4 compromises therapies with 50% of contemporary drugs. Gene variants explain only a fraction of this variability.We investigated the evolution of CYP3A4 transcriptional regulation by nuclear receptors such as the xenobiotics sensors PXR and CAR.The combination of a proximal ER6 element with XREM and CLEM represents the original scheme of CYP3A regulation by nuclear receptors in placental mammals. Among human CYP3A genes, this scheme is retained only in CYP3A4, whereas non-CYP3A4 genes lost these elements to a variable extent during primate evolution. In parallel, the number of elements outside XREM and CLEM potentially responsi…

Receptors SteroidMolecular Sequence DataReceptors Cytoplasmic and NuclearBiologyLigandsTransfectionGene Expression Regulation EnzymologicXenobioticsTranscription (biology)PhylogeneticsLuciferases FireflyGeneticsTranscriptional regulationCytochrome P-450 CYP3AHumansGeneral Pharmacology Toxicology and PharmaceuticsReceptorPromoter Regions GeneticMolecular BiologyGeneGenetics (clinical)Constitutive Androstane ReceptorRegulation of gene expressionGeneticsPregnane X receptorBinding SitesBase SequencePregnane X ReceptorNuclear receptorMolecular MedicineSequence AnalysisProtein BindingPharmacogenetics and genomics
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Relationships of gag-pol diversity between Ty3/Gypsy and Retroviridae LTR retroelements and the three kings hypothesis

2008

Abstract Background The origin of vertebrate retroviruses (Retroviridae) is yet to be thoroughly investigated, but due to their similarity and identical gag-pol (and env) genome structure, it is accepted that they evolve from Ty3/Gypsy LTR retroelements the retrotransposons and retroviruses of plants, fungi and animals. These 2 groups of LTR retroelements code for 3 proteins rarely studied due to the high variability – gag polyprotein, protease and GPY/F module. In relation to 3 previously proposed Retroviridae classes I, II and II, investigation of the above proteins conclusively uncovers important insights regarding the ancient history of Ty3/Gypsy and Retroviridae LTR retroelements. Resu…

RetroelementsEvolutionSequence analysisvirusesMolecular Sequence DataRetroviridae ProteinsTy3/Gypsy; Retroviridae; LTR retroelements; Gag-polGene Products gagGene Products polSequence alignmentRetrotransposonEvolution MolecularMonophylySequence Analysis ProteinPhylogeneticsbiology.animalQH359-425Amino Acid SequenceRetroviridae ProteinsPhylogenyEcology Evolution Behavior and SystematicsGenetics:CIENCIAS DE LA VIDA::Genética ::Otras [UNESCO]Polymorphism GeneticPhylogenetic treebiologyTerminal Repeat SequencesVertebratefood and beveragesUNESCO::CIENCIAS DE LA VIDA::Genética ::OtrasIsoenzymesGag-polPhenotypeTy3/GypsyRetroviridaeLTR retroelementsSequence AlignmentResearch Article
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