Search results for "actions"

showing 10 items of 2898 documents

MiasDB: A Database of Molecular Interactions Associated with Alternative Splicing of Human Pre-mRNAs.

2016

Alternative splicing (AS) is pervasive in human multi-exon genes and is a major contributor to expansion of the transcriptome and proteome diversity. The accurate recognition of alternative splice sites is regulated by information contained in networks of protein-protein and protein-RNA interactions. However, the mechanisms leading to splice site selection are not fully understood. Although numerous databases have been built to describe AS, molecular interaction databases associated with AS have only recently emerged. In this study, we present a new database, MiasDB, that provides a description of molecular interactions associated with human AS events. This database covers 938 interactions …

0301 basic medicineGene regulatory networklcsh:MedicineRNA-binding proteinRNA-binding proteinscomputer.software_genreBiochemistryHistonesExonDatabase and Informatics MethodsDatabases GeneticProtein Interaction MappingRNA PrecursorsGene Regulatory NetworksDatabase Searchinglcsh:ScienceMultidisciplinaryDatabaseExonsGenomicsGenomic DatabasesNucleic acidsRNA splicingProteomeSequence AnalysisResearch ArticleSequence DatabasesBiologyResponse ElementsResearch and Analysis MethodsGenome Complexity03 medical and health sciencesGeneticsHumansMolecular Biology TechniquesSequencing TechniquesProtein InteractionsGeneMolecular BiologyInternetlcsh:RAlternative splicingIntronBiology and Life SciencesComputational BiologyProteinsGenome AnalysisIntronsAlternative Splicing030104 developmental biologyBiological DatabasesRNA processingRNAlcsh:QRNA Splice SitesGene expressioncomputerProtein KinasesTranscription FactorsPloS one
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Exploiting Helminth–Host Interactomes through Big Data

2017

Helminths facilitate their parasitic existence through the production and secretion of different molecules, including proteins. Some helminth proteins can manipulate the host's immune system, a phenomenon that is now being exploited with a view to developing therapeutics for inflammatory diseases. In recent years, hundreds of helminth genomes have been sequenced, but as a community we are still taking baby steps when it comes to identifying proteins that govern host-helminth interactions. The information generated from genomic, immunomic, and proteomic studies, as well as from cutting-edge approaches such as proteogenomics, is leading to a substantial volume of big data that can be utilised…

0301 basic medicineGenome HelminthVaccinesHost (biology)business.industryHelminth proteinBig dataComputational BiologyHelminth ProteinsComputational biologyBiologyProteogenomicsHelminth GenomesProteomicsBioinformaticsHost-Parasite Interactions03 medical and health sciences030104 developmental biologyInfectious Diseasesparasitic diseasesAnimalsHumansParasitologybusinessTrends in Parasitology
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Coinfection outcome in an opportunistic pathogen depends on the inter-strain interactions

2017

Background In nature, organisms are commonly coinfected by two or more parasite strains, which has been shown to influence disease virulence. Yet, the effects of coinfections of environmental opportunistic pathogens on disease outcome are still poorly known, although as host-generalists they are highly likely to participate in coinfections. We asked whether coinfection with conspecific opportunistic strains leads to changes in virulence, and if these changes are associated with bacterial growth or interference competition. We infected zebra fish (Danio rerio) with three geographically and/or temporally distant environmental opportunist Flavobacterium columnare strains in single and in coinf…

0301 basic medicineGenotypemedia_common.quotation_subjectVirulencecooperationgenotyyppiFlavobacteriumIntraspecific competitionCompetition (biology)Host SpecificityMicrobiology03 medical and health sciencesFlavobacterium columnareFish DiseasesgenotypesGenotypemedicineAnimalsseeprakalaPathogenZebrafishEcology Evolution Behavior and Systematicsmedia_commonInhibitionbiologyCompetitionVirulenceHost (biology)Zebra fishCoinfectionvirulenssibiology.organism_classificationmedicine.diseaseinhibitionCooperation030104 developmental biologyFlavobacterium columnareHost-Pathogen InteractionsCoinfectioncompetitionResearch ArticleBMC Evolutionary Biology
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Microvesicles released from Giardia intestinalis disturb host-pathogen response in vitro

2017

Giardia intestinalis (G.I), is an anaerobic protozoan and the aetiological agent of giardiasis, a diarrhoea present worldwide and associated with poverty. G.I has a simple life cycle alternating between cyst and trophozoite. Cysts are transmitted orally to the stomach and transform to trophozoites in the intestine by a multifactorial process. Recently, microvesicles (MVs) have been found to be released from a wide range of eukaryotic cells. We have observed a release of MVs during the life cycle of G.I., identifying MVs from active trophozoites and from trophozoites differentiating to the cyst form. The aim of the current work was to investigate the role of MVs from G.I in the pathogenesis …

0301 basic medicineGiardiasisHistologydewey610Biologymedicine.disease_causePathology and Forensic MedicineMicrobiologyPathogenesis03 medical and health sciencesExtracellular VesiclesCell-Derived MicroparticlesmedicineGiardia lambliaAnimalsHumansPathogenLipid raftdewey570Innate immunityInnate immune systemParasite-host cell interactionsCell BiologyGeneral Medicine030108 mycology & parasitologyGiardia intestinalisExtracellular vesiclesIn vitroMicrovesiclesImmunity InnateDiarrhoea030104 developmental biologyHost-Pathogen InteractionsCaco-2 CellsGiardia lambliaBiogenesisMicrovesicles
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In vivo fluorescent cercariae reveal the entry portals of Cardiocephaloides longicollis (Rudolphi, 1819) Dubois, 1982 (Strigeidae) into the gilthead …

2019

Background Despite their complex life-cycles involving various types of hosts and free-living stages, digenean trematodes are becoming recurrent model systems. The infection and penetration strategy of the larval stages, i.e. cercariae, into the fish host is poorly understood and information regarding their entry portals is not well-known for most species. Cardiocephaloides longicollis (Rudolphi, 1819) Dubois, 1982 (Digenea, Strigeidae) uses the gilthead seabream (Sparus aurata L.), an important marine fish in Mediterranean aquaculture, as a second intermediate host, where they encyst in the brain as metacercariae. Labelling the cercariae with in vivo fluorescent dyes helped us to track the…

0301 basic medicineGillCardiocephaloides longicollis030231 tropical medicineSuccinimidesZoologyAquacultureTrematode InfectionsCarboxyfluorescein diacetate succinimidyl esterDigeneaHost-Parasite Interactionslcsh:Infectious and parasitic diseasesFish Diseases03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCercarial penetration patternCercarial survival and activityMetacercarial encystmentAnimalsHelminthsMetacercariaelcsh:RC109-216CercariaCardiocephaloides longicollisFluorescent DyesInfectivityLife Cycle StagesbiologyResearchIntermediate hostAquatic animalFluoresceinsbiology.organism_classificationSea Bream030104 developmental biologyInfectious DiseaseschemistryLarvaBenzimidazolesParasitologyTrematodaDigeneaParasites & Vectors
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Specificity of human natural antibodies referred to as anti-Tn

2020

International audience; To understand the role of human natural IgM known as antibodies against the carbohydrate epitope Tn, the antibodies were isolated using GalNAcα−Sepharose affinity chromatography, and their specificity was profiled using microarrays (a glycan array printed with oligosaccharides and bacterial polysaccharides, as well as a glycopeptide array), flow cytometry, and inhibition ELISA. The antibodies bound a restricted number of GalNAcα-terminated oligosaccharides better than the parent monosaccharide, e.g., 6-O-Su-GalNAcα and GalNAcα1−3Galβ1−3(4)GlcNAcβ. The binding with several bacterial polysaccharides that have no structural resemblance to the affinity ligand GalNAcα was…

0301 basic medicineGlycanGlycansImmunologyTn antigenAntibody Affinity[SDV.CAN]Life Sciences [q-bio]/CancerAnti-Glycan antibodiesEpitopeAntigen-Antibody ReactionsEpitopesJurkat Cells03 medical and health sciences0302 clinical medicineAffinity chromatography[SDV.CAN] Life Sciences [q-bio]/CancerAntibody SpecificityNeoplasmsTn antigenHumansAntigens Tumor-Associated CarbohydrateAmino Acid SequenceMolecular BiologyPeptide sequenceCancerbiologyChemistryBacterial polysaccharideImmunity Innate3. Good health030104 developmental biologyCarbohydrate SequenceImmunoglobulin MBiochemistryNatural antibodiesbiology.proteinParatopeAntibody030215 immunology
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Disentangling the effect of host genetics and gut microbiota on resistance to an intestinal parasite

2019

11 pages; International audience; Resistance to infection is a multifactorial trait, and recent work has suggested that the gut microbiota can also contribute to resistance. Here, we performed a fecal microbiota transplant to disentangle the contribution of the gut microbiota and host genetics as drivers of resistance to the intestinal nematode Heligmosomoides polygyrus. We transplanted the microbiota of a strain of mice (SJL), resistant to H. polygyrus, into a susceptible strain (CBA) and vice-versa. We predicted that if the microbiota shapes resistance to H. polygyrus, the FMT should reverse the pattern of resistance between the two host strains. The two host strains had different microbi…

0301 basic medicineHeligmosomoides polygyrusGut floramedicine.disease_causeFecal microbiota transplant0302 clinical medicinefluids and secretionsMESH: Fecal Microbiota TransplantationParasite hostingColonizationMESH: AnimalsMESH: Strongylida InfectionsDisease ResistanceGeneticsNematospiroides dubiusbiology[SDV.BA]Life Sciences [q-bio]/Animal biologyFecal Microbiota Transplantation3. Good healthInfectious DiseasesMESH: Nematospiroides dubiusGenetic Background030231 tropical medicineIntestinal parasiteHeterologousMice Inbred StrainsMESH: Disease ResistanceMESH: Host-Parasite InteractionsMESH: Mice Inbred Strainsdigestive systemMESH: Gastrointestinal MicrobiomeHost-Parasite Interactions03 medical and health sciencesImmunityparasitic diseasesmedicineAnimals[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyStrongylida InfectionsHost (biology)ImmunityLife history traitsMESH: Genetic Backgroundbiology.organism_classificationGastrointestinal MicrobiomeDisease Models Animalstomatognathic diseases030104 developmental biologyParasitologyHeligmosomoides polygyrusMESH: Disease Models Animal[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Gut-microbiota-derived extracellular vesicles: Overlooked mediators in host–helminth interactions?

2021

Helminth infections impact the composition of the mammalian gut microbiota; however, the mechanisms underpinning these interactions are, thus far, unknown. In this article, we propose that microbiota-derived extracellular vesicles might represent key players in host-helminth-microbiome crosstalk, and outline future directions to elucidate their role(s) in host-parasite relationships.

0301 basic medicineHelminth infectionsHost (biology)030231 tropical medicineHelminthiasisBiologyGut florabiology.organism_classificationdigestive systemExtracellular vesiclesGastrointestinal MicrobiomeHost-Parasite InteractionsCell biologyExtracellular Vesicles03 medical and health sciencesCrosstalk (biology)fluids and secretions030104 developmental biology0302 clinical medicineInfectious DiseasesHelminthsparasitic diseasesAnimalsHumansParasitologyTrends in Parasitology
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Th2 and Th1 Responses: Clear and Hidden Sides of Immunity Against Intestinal Helminths.

2017

Intestinal helminthiases affect millions of people worldwide, mainly in developing regions, where they cause a significant negative impact on human health and socioeconomic growth of affected populations. However, intestinal helminthiases are still among the most neglected tropical diseases. Protective immunity against intestinal helminths is associated with development of type 2 responses. Nevertheless, in some host–intestinal helminth combinations, local Th1 responses are initiated, inducing chronicity. The usage of helminth–mouse models is useful for elucidating the mechanisms behind the initiation of each type of response. Herein, the current knowledge on these topics is reviewed, payin…

0301 basic medicineHelminthiasisHelminthiasisBiologyHost-Parasite Interactions03 medical and health sciencesHuman health0302 clinical medicineImmune systemTh2 CellsImmunityHelminthsmedicineHelminthsAnimalsHumansDeveloping regionsIntestinal Diseases ParasiticTh1 Cellsmedicine.diseaseImmunity Humoral030104 developmental biologyInfectious DiseasesImmunologyNeglected tropical diseasesParasitologyTh1 response030215 immunologyTrends in parasitology
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Classic Models for New Perspectives: Delving into Helminth–Microbiota–Immune System Interactions

2018

Whilst a wealth of data indicate that infections by gastrointestinal helminths are accompanied by significant alterations in the composition of the vertebrate gut flora, little is known of the immune-molecular mechanisms that regulate host-parasite-microbiota interactions. 'Traditional' experimental models of gastrointestinal helminthiases, in which the role(s) of each of the components of this triad can be tested, provide an opportunity to advance research in this area. In this article, we propose the Echinostoma caproni-mouse system as a potentially useful tool for studies of the role of the host gut microbiota in preventing pathology and inducing parasite clearance via interleukin (IL)-2…

0301 basic medicineHelminthiasisHelminthiasisInterleukinBiologyGut floramedicine.diseasebiology.organism_classificationModels BiologicalHost-Parasite Interactions03 medical and health sciences030104 developmental biologyInfectious DiseasesImmune systemImmunological FactorsImmunityImmunologymedicineAnimalsHumansHelminthsParasitologyGut homeostasisTrends in Parasitology
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