Search results for "MIMICRY"

showing 10 items of 120 documents

Warning signalling in European vipers and their mimics : implications for conservation of the smooth snake

2014

smooth snakekyykäärmeetsuojautuminenaposematismiCoronella austricaconservationVipera berusvaroitusväritsaalistussuojaväritkangaskäärmevaroitussignaalitmatkiminenaposematismsignaalitsaalistuksenvälttämisstrategiatmimicrymalli-matkijasysteemitviper
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Expression of the Acetylcholine Receptor α-Subunit Gene is Associated with Paraneoplastic Myasthenia Gravis in Mixed Thymoma

2000

Myasthenia gravis (MG) is an autoimmune disease caused by autoantibodies against the acetylcholine receptor (AChR) at the neuromuscular junction [1]. The muscular AChR has been extensively characterized [2], but the etiology of MG is still obscure. Whether the muscular AChR or another (auto)antigen plays a role during the initiation of MG is unknown [3]. The muscular AChR is a pentameric ion channel composed of four different subunits. The α-subunit contains the acetylcholine binding site and the main epitopes recognized by MG autoantibodies [2]. The human muscle AChR α-subunit exists as two isoforms, P3A- and P3A+ [4]. This is a result of alternative splicing of the P3A exon located betwee…

Gene isoformanimal structuresChemistryAlternative splicingmusculoskeletal systemmedicine.diseasemedicine.disease_causeMolecular biologyNeuromuscular junctionMyasthenia gravisAcetylcholine bindingMolecular mimicrymedicine.anatomical_structureNicotinic agonistmedicinetissuesAcetylcholine receptor
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Cross-recognition of a myelin peptide by CD8+ T cells in the CNS is not sufficient to promote neuronal damage.

2015

Multiple sclerosis (MS) is an inflammatory disease of the CNS thought to be driven by CNS-specific T lymphocytes. Although CD8+T cells are frequently found in multiple sclerosis lesions, their distinct role remains controversial because direct signs of cytotoxicity have not been confirmedin vivo. In the present work, we determined that murine ovalbumin-transgenic (OT-1) CD8+T cells recognize the myelin peptide myelin oligodendrocyte glycoprotein 40–54 (MOG40–54) bothin vitroandin vivo. The aim of this study was to investigate whether such cross-recognizing CD8+T cells are capable of inducing CNS damagein vivo. Using intravital two-photon microscopy in the mouse model of multiple sclerosis, …

CD4-Positive T-LymphocytesCentral Nervous SystemMaleEncephalomyelitis Autoimmune ExperimentalMultiple SclerosisAutoimmunityMice TransgenicCD8-Positive T-Lymphocytesmedicine.disease_causeMyelin oligodendrocyte glycoproteinMyelinMiceIn vivomedicineCytotoxic T cellAnimalsCells CulturedCell ProliferationbiologyCell DeathGeneral NeuroscienceMultiple sclerosisArticlesmedicine.diseaseMolecular mimicrymedicine.anatomical_structureImmunologyNerve Degenerationbiology.proteinFemaleMyelin-Oligodendrocyte GlycoproteinCD8Intravital microscopyThe Journal of neuroscience : the official journal of the Society for Neuroscience
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Autoimmunity to the p53 protein is a feature of systemic lupus erythematosus (SLE) related to anti-DNA antibodies.

2001

The induction of anti-DNA autoantibodies in systemic lupus erythematosus (SLE) patients is problematic because mammalian DNA is poorly immunogenic at best. Here we demonstrate a chain of connected antibodies in SLE patient sera that could account for the induction of anti-DNA antibody, and possibly for some of the pathogenic features of SLE. We now report that SLE patients, in addition to anti-DNA, produce antibodies to the carboxy-terminal domain of the tumour suppressor molecule p53; this p53 domain recognizes damaged DNA. Hence, these anti-p53 antibodies could mimic damaged DNA immunologically. Indeed, SLE sera do contain anti-idiotypic antibodies to a prototypic anti-p53 antibody. Moreo…

Systemic diseaseAnti-nuclear antibodyImmunologyBiologymedicine.disease_causeProtein Structure SecondaryAutoimmunityImmunoglobulin Idiotypesimmune system diseasesmedicineImmunology and AllergyHumansLupus Erythematosus Systemicskin and connective tissue diseasesAutoantibodiesAutoimmune diseaseLupus erythematosusMolecular MimicryAutoantibodymedicine.diseaseDNA-Binding ProteinsMolecular mimicryAntibodies AntinuclearImmunologyCancer researchbiology.proteinAntibodyTumor Suppressor Protein p53PeptidesJournal of autoimmunity
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Can experienced birds select for Müllerian mimicry?

2008

Field experiments have shown that avian predators in the wild can select for similarity of warning signals in aposematic prey (Müllerian mimicry) because a common signal is better protected than a signal that is novel and rare. The original theory of Müllerian mimicry assumes that the mechanism promoting mimicry is predator learning; by sharing a signal, the comimic species share the mortality that is due to sampling by inexperienced predators. Predation events have not been observed in the wild, and learning experiments with naive bird predators in a laboratory have not unambiguously shown a benefit of a uniform signal compared with different signals. As predators in the field experiments …

ParusbiologyEcologyAposematismbiology.organism_classificationMüllerian mimicryPredationEvolutionary biologyGeneralization (learning)MimicryAnimal Science and ZoologyPredatorEcology Evolution Behavior and SystematicsSelection (genetic algorithm)Behavioral Ecology
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When more is less: the fitness consequences of predators attacking more unpalatable prey when more are presented

2010

In 1879, Fritz Müller hypothesized that mimetic resemblance in which defended prey display the same warning signal would share the costs of predator education. Although Müller argued that predators would need to ingest a fixed number of prey with a given visual signal when learning to avoid unpalatable prey, this assumption lacks empirical support. We report an experiment which shows that, as the number of unpalatable prey presented to them increased, avian predators attacked higher numbers of those prey. We calculated that, when predators increase attacks, the fitness costs incurred by unpalatable prey can be substantial. This suggests that the survival benefits of mimicry could be lower t…

Food ChainBehavior AnimalEcologyGallus gallus domesticusBiologyAgricultural and Biological Sciences (miscellaneous)Models BiologicalMüllerian mimicryPredationFood chainPredatory behaviorPredatory BehaviorMimicryAnimalsLearningAnimal BehaviourFemaleGeneral Agricultural and Biological SciencesPredatorChickens
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T Cell Receptor Mimic Peptidesand Their Potential Application in T-Cell-Mediated Diseas e

2001

<i>Background:</i> A T cell receptor (TCR) peptide was designed that mimics the intramembranous amino acid sequence of the TCR chain. Prior studies had shown that this mimic peptide would inhibit TCR signaling. This study was designed to investigate the use of this mimic peptide for the treatment of T-cell-mediated skin diseases. <i>Methods:</i> Synthesized mimic peptides were first tested for their T-cell-inhibitory effect in proliferation assays. Afterwards, mimic peptides were applied to murine ear skin prior to application of a contact allergen and tested for their inhibitory effect in the model of murine allergic contact sensitivity. The effect of epicutaneous t…

Receptors Antigen T-Cell alpha-betaT-LymphocytesT cellmedicine.medical_treatmentImmunologyPeptideBiologyTransfectionmedicine.disease_causeSkin DiseasesMiceImmune systemmedicineAnimalsHumansImmunology and AllergyAmino Acid SequencePeptide sequencechemistry.chemical_classificationMolecular MimicryT-cell receptorGeneral MedicineImmunotherapyPeptide FragmentsMolecular mimicrymedicine.anatomical_structureImmune System DiseaseschemistryImmunologyImmunosuppressive AgentsCD8International Archives of Allergy and Immunology
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Ecological conditions alter cooperative behaviour and its costs in a chemically defended sawfly

2018

The evolution of cooperation and social behaviour is often studied in isolation from the ecology of organisms. Yet, the selective environment under which individuals evolve is much more complex in nature, consisting of ecological and abiotic interactions in addition to social ones. Here, we measured the life-history costs of cooperative chemical defence in a gregarious social herbivore, Diprion pini pine sawfly larvae, and how these costs vary under different ecological conditions. We ran a rearing experiment where we manipulated diet (resin content) and attack intensity by repeatedly harassing larvae to produce a chemical defence. We show that forcing individuals to allocate more to coope…

0106 biological sciences0301 basic medicineMaleautomimicrygenetic structures[SDV]Life Sciences [q-bio]Social behaviourTrade-offlife-history costs01 natural sciencesantipredator defencesocial behavioursahapistiäisetCooperative BehaviorComputingMilieux_MISCELLANEOUSGeneral Environmental ScienceAbiotic componentbiologyBehavior AnimalEcology[SDV.BA]Life Sciences [q-bio]/Animal biologyPinus sylvestrisGeneral MedicineSawflyLarvaFemaleGeneral Agricultural and Biological SciencesDiprion piniAdaptive valueCheatingeläinten käyttäytyminen010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesAnimalsBehaviourpuolustusmekanismit (biologia)Social BehaviorHerbivoreGeneral Immunology and Microbiologymimikryfungibiology.organism_classificationHymenopteraImmunity InnateDiet030104 developmental biologyPredatory Behaviorta1181Resins Plant
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Biased predation could promote convergence yet maintain diversity within Müllerian mimicry rings of Oreina leaf beetles.

2019

Mullerian mimicry is a classic example of adaptation, yet Muller's original theory does not account for the diversity often observed in mimicry rings. Here, we aimed to assess how well classical Mullerian mimicry can account for the colour polymorphism found in chemically defended Oreina leaf beetles by using field data and laboratory assays of predator behaviour. We also evaluated the hypothesis that thermoregulation can explain diversity between Oreina mimicry rings. We found that frequencies of each colour morph were positively correlated among species, a critical prediction of Mullerian mimicry. Predators learned to associate colour with chemical defences. Learned avoidance of the green…

0106 biological sciences0301 basic medicineMaleFrequency-dependent selectioncolor polymorphismlehtikuoriaisetFREQUENCY-DEPENDENT SELECTIONAVOIDANCEPREYAsteraceae01 natural sciencesMüllerian mimicryPredationPYRROLIZIDINE ALKALOIDSConvergent evolutionPigmentationBiological MimicryOreinaColeopteraWARNING COLORATIONPHYLOGENETIC EVIDENCECHEMICAL DEFENSE1181 Ecology evolutionary biologyFemalevaroitusvärievoluutioZoologyAposematismBiology010603 evolutionary biologyBirds03 medical and health sciencescolour polymorphismmonimuotoisuusAnimalsaposematismconvergent evolutionSelection GeneticEcology Evolution Behavior and SystematicsEcosystemkonvergenssimimikrybiology.organism_classificationEVOLUTIONPATTERN030104 developmental biologyMimicrywarning signalSHIFTING BALANCEAdaptationApiaceaeJournal of evolutionary biologyREFERENCES
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Mixed company : a framework for understanding the composition and organization of mixed‐species animal groups

2020

Mixed‐species animal groups (MSGs) are widely acknowledged to increase predator avoidance and foraging efficiency, among other benefits, and thereby increase participants' fitness. Diversity in MSG composition ranges from two to 70 species of very similar or completely different phenotypes. Yet consistency in organization is also observable in that one or a few species usually have disproportionate importance for MSG formation and/or maintenance. We propose a two‐dimensional framework for understanding this diversity and consistency, concentrating on the types of interactions possible between two individuals, usually of different species. One axis represents the similarity of benefit types …

0106 biological sciencesevolution of socialityTime Factorsmutualismspecies networksForagingSpatial Behavior010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyBirdsMicroeconomicsinterspecific communicationEating03 medical and health sciencesMixed speciesddc:570Animalsco‐evolutionSocial informationKeystone species030304 developmental biologyMammalsMutualism (biology)0303 health sciencesBehavior AnimalFishesReptilesGroup compositionOriginal ArticlesBiodiversityFeeding BehaviorBiological EvolutionAnimal groupsPredatory BehaviorMimicrypublic informationOriginal ArticleBusinessGeneral Agricultural and Biological SciencesBehavior Observation Techniquesmimicrykeystone species
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