Search results for "Drosophila melanogaster"

showing 10 items of 426 documents

The transcription factor Zfh1 is involved in the regulation of neuropeptide expression and growth of larval neuromuscular junctions in Drosophila mel…

2008

AbstractDifferent aspects of neural development are tightly regulated and the underlying mechanisms have to be transcriptionally well controlled. Here we present evidence that the transcription factor Zfh1, the Drosophila member of the conserved zfh1 gene family, is important for different steps of neuronal differentiation. First, we show that late larval expression of the neuropeptide FMRFamide is dependent on correct levels of Zfh1 and that this regulation is presumably direct via a conserved zfh1 homeodomain binding site in the FMRFamide enhancer. Using MARCM analysis we additionally examined the requirement for Zfh1 during embryonic and larval stages of motoneuron development. We could …

Neuromuscular JunctionAxonal outgrowthAnimalsDrosophila ProteinsFMRFamideFMRFamideFRMFaEnhancerMolecular BiologyTranscription factorMotor NeuronsZfh1biologyEffectorfungiMARCMCell DifferentiationCell Biologybiology.organism_classificationSynapseMolecular biologyAxonsMotoneuronCell biologyDNA-Binding ProteinsRepressor ProteinsDrosophila melanogasternervous systemMARCMLarvaHomeoboxDrosophila melanogasterNeural developmentDevelopment NeurogenesisDevelopmental BiologyDevelopmental biology
researchProduct

Analysis of a spatial orientation memory in Drosophila.

2008

Flexible goal-driven orientation requires that the position of a target be stored, especially in case the target moves out of sight. The capability to retain, recall and integrate such positional information into guiding behaviour has been summarized under the term spatial working memory. This kind of memory contains specific details of the presence that are not necessarily part of a long-term memory. Neurophysiological studies in primates indicate that sustained activity of neurons encodes the sensory information even though the object is no longer present. Furthermore they suggest that dopamine transmits the respective input to the prefrontal cortex, and simultaneous suppression by GABA s…

NeuronsMultidisciplinaryRecallfungiModels NeurologicalSensory systemBiologybiology.organism_classificationSpatial memoryRibosomal Protein S6 Kinases 90-kDaDrosophila melanogasterOrientation (mental)MemoryDrosophilidaeOrientationSpace PerceptionPremovement neuronal activityGABAergicAnimalsPrefrontal cortexNeuroscienceLocomotiongamma-Aminobutyric AcidSignal TransductionNature
researchProduct

The

2016

ABSTRACT Members of the Junctophilin (JPH) protein family have emerged as key actors in all excitable cells, with crucial implications for human pathophysiology. In mammals, this family consists of four members (JPH1-JPH4) that are differentially expressed throughout excitable cells. The analysis of knockout mice lacking JPH subtypes has demonstrated their essential contribution to physiological functions in skeletal and cardiac muscles and in neurons. Moreover, mutations in the human JPH2 gene are associated with hypertrophic and dilated cardiomyopathies; mutations in JPH3 are responsible for the neurodegenerative Huntington's disease-like-2 (HDL2), whereas JPH1 acts as a genetic modifier …

NotchGenotypeCardiomyopathyGenes InsectAnimals Genetically ModifiedAnimalsDrosophila ProteinsAllelesMammalsNeuronsHuntingtin ProteinReceptors NotchMusclesMyocardiumMembrane ProteinsReproducibility of ResultsDrosHuntington's diseaseDisease Models AnimalDrosophila melanogasterPhenotypeGene Knockdown TechniquesMutationNerve DegenerationPhotoreceptor Cells InvertebrateRNA InterferenceJunctophilinDrosophilaTrinucleotide Repeat ExpansionSignal TransductionResearch ArticleDisease modelsmechanisms
researchProduct

Age-dependent changes in the transcription profile of long-lived Drosophila over-expressing glutamate cysteine ligase

2011

Abstract In our prior studies ( Orr et al., 2005 ) we achieved a 30–50% increase in the life span of Drosophila by manipulating glutathione (GSH) production in neuronal tissues, through over-expression of glutamate-cysteine ligase (GCL), a key enzyme in glutathione biosynthesis. In the present study, we identified gene response patterns from which plausible mechanisms responsible for the observed effects on life span might be inferred. Functional clustering analysis of the transcriptome data revealed that biological processes affected by GCLc in young flies (10 days) were generally related to cell morphogenesis and differentiation, while those in older flies were associated with nucleosome …

Nucleosome organizationAgingGlutamate-Cysteine LigaseLongevityBiologyTranscriptomechemistry.chemical_compoundTranscription (biology)MorphogenesisAnimalsGeneOligonucleotide Array Sequence AnalysisGeneticschemistry.chemical_classificationDNA ligaseCell morphogenesisGene Expression ProfilingfungiCell DifferentiationGlutathioneGlutathioneImmunity HumoralNucleosomesDrosophila melanogasterGCLCchemistryDevelopmental BiologyMechanisms of Ageing and Development
researchProduct

Baculovirus infection affects caterpillar chemoperception

2021

International audience; Baculoviruses are double-stranded DNA entomopathogenic viruses that infect predominantly insects of the order Lepidoptera. Research in the last decade has started to disentangle the mechanisms underlying the insect-virus interaction, particularly focusing on the effects of the baculovirus infection in the host's physiology. Among crucial physiological functions, olfaction has a key role in reproductive tasks, food source detection and enemy avoidance. In this work, we describe that Spodoptera exigua multiple nucleopolyhedrovirus (SeMNPV) induces expression changes in some odorant receptors (ORs)-the centrepiece of insect's olfaction-when infecting larvae from its nat…

OlfactionSpodopteraSpodopteraReceptors OdorantBiochemistryLepidoptera genitalia03 medical and health sciences0302 clinical medicineExiguaAnimalsBehaviour[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyBaculovirusMolecular Biology030304 developmental biologyNeuronsGenetics0303 health sciencesbiologyOdorant receptorsHost (biology)fungibiology.organism_classificationOlfactionNucleopolyhedrovirusesBeet armywormDrosophila melanogasterLarvaInsect ScienceInsect ProteinsNoctuidaeCaterpillarHeterologous expressionDrosophila melanogaster030217 neurology & neurosurgeryInsect Biochemistry and Molecular Biology
researchProduct

Nemo regulates cell dynamics and represses the expression of miple, a midkine/pleiotrophin cytokine, during ommatidial rotation

2013

AbstractOmmatidial rotation is one of the most important events for correct patterning of the Drosophila eye. Although several signaling pathways are involved in this process, few genes have been shown to specifically affect it. One of them is nemo (nmo), which encodes a MAP-like protein kinase that regulates the rate of rotation throughout the entire process, and serves as a link between core planar cell polarity (PCP) factors and the E-cadherin–β-catenin complex. To determine more precisely the role of nmo in ommatidial rotation, live-imaging analyses in nmo mutant and wild-type early pupal eye discs were performed. We demonstrate that ommatidial rotation is not a continuous process, and …

Ommatidial rotationRotationCellMutantEyePleiotrophinModels BiologicalArticleImaging Three-DimensionalmedicineAnimalsDrosophila ProteinsMipleProtein kinase AMolecular BiologyGenetic Association Studiesbeta CateninBody PatterningMidkineLive-imagingbiologyGene Expression ProfilingMidkineGene Expression Regulation DevelopmentalCell BiologyCadherinsPhenotypeMolecular biologyCell biologyDrosophila melanogasterPhenotypemedicine.anatomical_structureImaginal DiscsNemoMutationbiology.proteinCytokinesDrosophila eyeFemaleGene expressionMitogen-Activated Protein KinasesSignal transductionOmmatidial rotationDevelopmental BiologyDevelopmental Biology
researchProduct

Roving Robots Gain from an Orientation Algorithm of Fruit Flies and Predict a Fly Decision-Making Algorithm

2014

Simple organisms like bacteria are directly influenced by momentary changes in concentration or strength of sensory signals. In noisy sensory gradients frequent zigzagging reduces the performance of the cell or organism. Drosophila melanogaster flies significantly deviate from a direct response to sensory input when orienting in gradients. A dynamical model has been derived which reproduces fly behaviour. Here we report on an emergent property of the model. Implemented in a robot, the algorithm is sustaining decisions between visual targets. The behaviour was consequently found in wild-type flies, which stay with a once-chosen visual target for considerable longer times than mutant flies wi…

Orientation (computer vision)Property (programming)fungiDirect responseSensory systemBiologybiology.organism_classificationworking memoryinsect orientationbiomimetic robotsIntegratorRobotDrosophila melanogasterVisibilityAlgorithmbiomimetic robots; insect orientation; working memory
researchProduct

Sequential acquisition of cacophony calcium currents, sodium channels and voltage-dependent potassium currents affects spike shape and dendrite growt…

2014

During metamorphosis the CNS undergoes profound changes to accommodate the switch from larval to adult behaviors. In Drosophila and other holometabolous insects, adult neurons differentiate either from respecified larval neurons, newly born neurons, or are born embryonically but remain developmentally arrested until differentiation during pupal life. This study addresses the latter in the identified Drosophila flight motoneuron 5. In situ patch-clamp recordings, intracellular dye fills and immunocytochemistry address the interplay between dendritic shape, excitability and ionic current development. During pupal life, changes in excitability and spike shape correspond to a stereotyped, progr…

Patch-Clamp Techniquesmedia_common.quotation_subjectAction Potentialschemistry.chemical_elementCell EnlargementBiologyCalciumSodium ChannelsArticleMembrane PotentialsAnimalsPatch clampMetamorphosisIon channelmedia_commonMotor NeuronsMembrane potentialMicroscopy ConfocalGeneral NeuroscienceSodium channelOptical ImagingfungiMetamorphosis BiologicalDendritesImmunohistochemistryPotassium channelCell biologyDrosophila melanogasterchemistryPotassium Channels Voltage-GatedPotassiumCalciumNeuroscienceIntracellularEuropean Journal of Neuroscience
researchProduct

Htid-1, the human homolog of the Drosophila melanogaster l(2)tid tumor suppressor, defines a novel physiological role of APC.

2007

Htid-1, the human counterpart of the Drosophila tumor suppressor gene lethal(2)tumorous imaginal discs (l(2)tid) encodes three splice forms translated into three cytosolic - Tid50, Tid48 and Tid46 - and three mitochondrial - Tid43, Tid40 and Tid38 - proteins. Here we provide evidence for the association of the endogenous Tid50/Tid48 proteins with the adenomatous polyposis coli (APC) tumor suppressor in normal colon epithelium, colorectal cancer cells and mouse NIH3T3 fibroblasts. Using the Glutathione S-transferase binding assay we show that the N-terminal region including the Armadillo domain (ARM) of APC is sufficient to bind the Tid molecules. Using immunoprecipitation and confocal micro…

Patched ReceptorsBeta-cateninTumor suppressor geneAdenomatous polyposis coliAdenomatous Polyposis Coli ProteinReceptors Cell SurfacePlasma protein bindingLigandsMitochondrial ProteinsMiceCytosolCell Line TumorAnimalsDrosophila ProteinsGuanine Nucleotide Exchange FactorsHumansIntestinal MucosaActinHeat-Shock Proteinsbeta CateninPatched ReceptorsbiologySequence Homology Amino AcidGene Expression ProfilingTumor Suppressor ProteinsWnt signaling pathwayGene Expression Regulation DevelopmentalCell BiologyHSP40 Heat-Shock ProteinsActin cytoskeletonMolecular biologyCell biologyMitochondriaDrosophila melanogasterras GTPase-Activating ProteinsMultiprotein Complexesbiology.proteinNIH 3T3 CellsRho Guanine Nucleotide Exchange FactorsProtein BindingCellular signalling
researchProduct

Modulation of Hedgehog target gene expression by the Fused serine-threonine kinase in wing imaginal discs

1998

0925-4773 doi: DOI: 10.1016/S0925-4773(98)00130-0; The Fused (Fu) serine–threonine kinase and the Suppressor of fused (Su(fu)) product are part of the Hedgehog (Hh) signalling pathway both in embryos and in imaginal discs. In wing imaginal discs, the Hh signal induces Cubitus interruptus (Ci) accumulation and activates patched (ptc) and decapentaplegic (dpp) expression along the anterior/posterior (A/P) boundary. In this paper, we have examined the role of the Fu and Su(fu) proteins in the regulation of Hh target gene expression in wing imaginal discs, by using different classes of fu alleles and an amorphic Su(fu) mutation. We show that, at the A/P boundary, Fu kinase activity is involved …

PatchedEmbryologyanimal structuresReceptors Cell SurfaceBiologyProtein Serine-Threonine KinasesSignal transductionCubitus interruptusImaginal disc developmentMorphogenesisAnimalsDrosophila ProteinsWings AnimalHedgehog ProteinsKinase activitySuppressor of fusedGeneticsSerine/threonine-specific protein kinaseHomeodomain ProteinsDecapentaplegicFusedGene Expression Regulation DevelopmentalMembrane ProteinsCi proteinHedgehog signaling pathwayCell biologyDNA-Binding ProteinsRepressor ProteinsImaginal discDrosophila melanogasterInsect ProteinsDrosophilaHedgehogMorphogenTranscription FactorsDevelopmental Biology
researchProduct