Search results for "DROSOPHILA MELANOGASTER"

showing 10 items of 426 documents

Oligodendrocytes Provide Antioxidant Defense Function for Neurons by Secreting Ferritin Heavy Chain.

2020

An evolutionarily conserved function of glia is to provide metabolic and structural support for neurons. To identify molecules generated by glia and with vital functions for neurons, we used Drosophila melanogaster as a screening tool, and subsequently translated the findings to mice. We found that a cargo receptor operating in the secretory pathway of glia was essential to maintain axonal integrity by regulating iron buffering. Ferritin heavy chain was identified as the critical secretory cargo, required for the protection against iron-mediated ferroptotic axonal damage. In mice, ferritin heavy chain is highly expressed by oligodendrocytes and secreted by employing an unconventional secret…

0301 basic medicineMalePhysiologyAntioxidantsArticlemetabolism [Oligodendroglia]03 medical and health sciencesMyelinMice0302 clinical medicineddc:570medicineAnimalsSecretionReceptorCytotoxicityMolecular BiologySecretory pathwayNeuronsbiologyChemistrymetabolism [Apoferritins]Cell Biologybiology.organism_classificationCell biologyFerritinMice Inbred C57BLOligodendroglia030104 developmental biologymedicine.anatomical_structurenervous systemmetabolism [Neurons]Apoferritinsbiology.proteinmetabolism [Antioxidants]Drosophila melanogaster030217 neurology & neurosurgeryFunction (biology)Cell metabolism
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Divergent roles of the Drosophila melanogaster globins.

2018

In contrast to long-held assumptions, the gene repertoire of most insects includes hemoglobins. Analyses of the genome of the fruitfly Drosophila melanogaster identified three distinct hemoglobin genes (glob1, glob2, and glob3). While glob1 is predominantly associated with the tracheal system and fat body, glob2 and glob3 are almost exclusively expressed in the testis. The physiological role of globins in Drosophila is uncertain. Here, we studied the functions of the three globins in a cell culture system. Drosophila Schneider 2 (S2) cells were stably transfected with each of the three globins and the empty vector as control. Under hypoxia (1% atmospheric O2), only glob1 overexpression enha…

0301 basic medicineMalePhysiologyIn silicoCell Line03 medical and health sciences0302 clinical medicineAnimalsGlobinGeneGeneticsbiologySchneider 2 cellsTransfectionbiology.organism_classificationCell biologyGlobinsOxygenOxidative Stress030104 developmental biologyDrosophila melanogasterCytoplasmCell cultureInsect ScienceInsect ProteinsFemaleDrosophila melanogaster030217 neurology & neurosurgeryJournal of insect physiology
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High Throughput Sequencing Identifies Misregulated Genes in the Drosophila Polypyrimidine Tract-Binding Protein (hephaestus) Mutant Defective in Sper…

2015

The Drosophila polypyrimidine tract-binding protein (dmPTB or hephaestus) plays an important role during spermatogenesis. The heph2 mutation in this gene results in a specific defect in spermatogenesis, causing aberrant spermatid individualization and male sterility. However, the array of molecular defects in the mutant remains uncharacterized. Using an unbiased high throughput sequencing approach, we have identified transcripts that are misregulated in this mutant. Aberrant transcripts show altered expression levels, exon skipping, and alternative 5' ends. We independently verified these findings by reverse-transcription and polymerase chain reaction (RT-PCR) analysis. Our analysis shows m…

0301 basic medicineMalePhysiologyMutantGene Expressionlcsh:MedicineArtificial Gene Amplification and ExtensionPolymerase Chain ReactionBiochemistryConserved sequence0302 clinical medicineSequencing techniquesReproductive PhysiologyAnimal CellsInvertebrate GenomicsMedicine and Health SciencesDrosophila ProteinsProtein IsoformsCell Cycle and Cell Divisionlcsh:ScienceConserved SequencePhylogenyGeneticsRegulation of gene expressionMultidisciplinarybiologyChromosome BiologyDrosophila MelanogasterMessenger RNAHigh-Throughput Nucleotide SequencingRNA sequencingAnimal ModelsGenomicsSpermatidsInsectsNucleic acidsMeiosisCell ProcessesDrosophilaDrosophila melanogasterTranscription Initiation SiteCellular TypesDrosophila ProteinPolypyrimidine Tract-Binding ProteinResearch ArticleArthropodaMolecular Sequence DataReal-Time Polymerase Chain ReactionResearch and Analysis Methods03 medical and health sciencesModel OrganismsGeneticsAnimalsPolypyrimidine tract-binding proteinRNA MessengerSpermatogenesisMolecular Biology TechniquesMolecular BiologyBinding SitesBase SequenceGene Expression Profilinglcsh:ROrganismsBiology and Life SciencesCell BiologyReverse Transcriptase-Polymerase Chain Reactionbiology.organism_classificationInvertebratesExon skippingSpermGene expression profiling030104 developmental biologyGene OntologyGerm CellsGene Expression RegulationAnimal GenomicsMutationbiology.proteinRNAlcsh:QTranscriptome030217 neurology & neurosurgeryPLoS ONE
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Extended Flight Bouts Require Disinhibition from GABAergic Mushroom Body Neurons

2019

Summary Insect flight is a complex behavior that requires the integration of multiple sensory inputs with flight motor output. Although previous genetic studies identified central brain monoaminergic neurons that modulate Drosophila flight, neuro-modulatory circuits underlying sustained flight bouts remain unexplored. Certain classes of dopaminergic and octopaminergic neurons that project to the mushroom body, a higher integrating center in the insect brain, are known to modify neuronal output based on contextual cues and thereby organismal behavior. This study focuses on how monoaminergic modulation of mushroom body GABAergic output neurons (MBONs) regulates the duration of flight bouts. O…

0301 basic medicineMale[SDV]Life Sciences [q-bio]Sensory systemBiologyin-vivoInsect flightGeneral Biochemistry Genetics and Molecular Biologymemory03 medical and health sciences0302 clinical medicineoctopaminebodiesexpressionMonoaminergicmedicineAnimalsGABAergic NeuronsMushroom Bodies030304 developmental biologymarker0303 health sciencesbehaviorFlight initiation[SDV.BA]Life Sciences [q-bio]/Animal biologyDopaminergicOambdrosophilaCaMPARI030104 developmental biologyDrosophila melanogasternervous systemDisinhibitionFood searchFlight AnimalMushroom bodiesPAMGABAergicFemaledopaminemedicine.symptomsub-esophageal zone.General Agricultural and Biological SciencescircuitNeuroscience030217 neurology & neurosurgerySSRN Electronic Journal
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Drosophila melanogaster Models of Metal-Related Human Diseases and Metal Toxicity

2017

Iron, copper and zinc are transition metals essential for life because they are required in a multitude of biological processes. Organisms have evolved to acquire metals from nutrition and to maintain adequate levels of each metal to avoid damaging effects associated with its deficiency, excess or misplacement. Interestingly, the main components of metal homeostatic pathways are conserved, with many orthologues of the human metal-related genes having been identified and characterized in Drosophila melanogaster. Drosophila has gained appreciation as a useful model for studying human diseases, including those caused by mutations in pathways controlling cellular metal homeostasis. Flies have m…

0301 basic medicineMetal toxicityDiseaseComputational biologyReviewCatalysisInorganic Chemistrylcsh:Chemistry03 medical and health sciencesironATP7Metals HeavyMetalloproteinsmedicineAnimalsDrosophila ProteinsToxicologiaPhysical and Theoretical ChemistryMolecular BiologyGeneDrosophilalcsh:QH301-705.5SpectroscopyOrganismMetal Metabolism Inborn ErrorsMetal metabolismfrataxinbiologyEcologyOrganic ChemistryNeurodegenerationzincneurodegenerationGeneral Medicinemedicine.diseasebiology.organism_classificationdZip99CComputer Science ApplicationsDisease Models Animal030104 developmental biologyDrosophila melanogasterlcsh:Biology (General)lcsh:QD1-999coppermetal homeostasisDrosophilaDrosophila melanogasterheavy metal toxicityGenètica
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Apoptotic Activity of MeCP2 Is Enhanced by C-Terminal Truncating Mutations.

2016

Methyl-CpG binding protein 2 (MeCP2) is a widely abundant, multifunctional protein most highly expressed in post-mitotic neurons. Mutations causing Rett syndrome and related neurodevelopmental disorders have been identified along the entire MECP2 locus, but symptoms vary depending on mutation type and location. C-terminal mutations are prevalent, but little is known about the function of the MeCP2 C-terminus. We employ the genetic efficiency of Drosophila to provide evidence that expression of p.Arg294* (more commonly identified as R294X), a human MECP2 E2 mutant allele causing truncation of the C-terminal domains, promotes apoptosis of identified neurons in vivo. We confirm this novel find…

0301 basic medicineMethyl-CpG-Binding Protein 2lcsh:MedicineApoptosisBiochemistryPhosphoserine0302 clinical medicineAnimal CellsDrosophila ProteinsPost-Translational ModificationPhosphorylationlcsh:ScienceNeuronsMotor NeuronsGeneticsMultidisciplinaryCell DeathbiologyDrosophila MelanogasterAnimal ModelsInsectsFOXG1Cell ProcessesCaspasesPhosphorylationDrosophilaBiological CulturesCellular TypesDrosophila melanogasterResearch ArticleGene isoformcongenital hereditary and neonatal diseases and abnormalitiesArthropodaProtein domainMouse ModelsMotor ActivityResearch and Analysis MethodsTransfectionModels BiologicalMECP203 medical and health sciencesModel OrganismsProtein Domainsmental disordersAnimalsHumansMolecular Biology TechniquesImmunohistochemistry TechniquesMolecular BiologyTranscription factorBinding proteinlcsh:ROrganismsBiology and Life SciencesProteinsCell BiologyCell Culturesbiology.organism_classificationInvertebratesHistochemistry and Cytochemistry TechniquesHEK293 Cells030104 developmental biologyCellular NeuroscienceMutationImmunologic TechniquesMutant Proteinslcsh:Q030217 neurology & neurosurgeryNeuroscienceTranscription FactorsPLoS ONE
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rbFOX1/MBNL1 competition for CCUG RNA repeats binding contributes to myotonic dystrophy type 1/type 2 differences

2018

Myotonic dystrophy type 1 and type 2 (DM1, DM2) are caused by expansions of CTG and CCTG repeats, respectively. RNAs containing expanded CUG or CCUG repeats interfere with the metabolism of other RNAs through titration of the Muscleblind-like (MBNL) RNA binding proteins. DM2 follows a more favorable clinical course than DM1, suggesting that specific modifiers may modulate DM severity. Here, we report that the rbFOX1 RNA binding protein binds to expanded CCUG RNA repeats, but not to expanded CUG RNA repeats. Interestingly, rbFOX1 competes with MBNL1 for binding to CCUG expanded repeats and overexpression of rbFOX1 partly releases MBNL1 from sequestration within CCUG RNA foci in DM2 muscle ce…

0301 basic medicineModels MolecularProtein Conformation alpha-Helical[SDV]Life Sciences [q-bio]General Physics and AstronomyGene ExpressionRNA-binding proteinCrystallography X-Raychemistry.chemical_compoundMOLECULAR-BASISGene expressionMBNL1Myotonic DystrophyComputingMilieux_MISCELLANEOUSMultidisciplinaryCHLORIDE CHANNELQRNA-Binding ProteinsRecombinant Proteins3. Good healthCell biologyCONGENITAL HEART-DISEASEDrosophila melanogasterThermodynamicsSKELETAL-MUSCLERNA Splicing FactorsCUG REPEATSProtein BindingRNA Splicing Factorsmusculoskeletal diseasesSTEADY-STATEcongenital hereditary and neonatal diseases and abnormalitiesScienceRBFOX1BiologyMyotonic dystrophyBinding CompetitiveGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciencesmedicineEscherichia coliAnimalsHumansProtein Interaction Domains and MotifsBinding siteNucleotide MotifsMuscle SkeletalSPLICING REGULATOR RBFOX2MUSCLEBLIND PROTEINSBinding SitesPRE-MESSENGER-RNARNAGeneral Chemistrymedicine.diseaseDisease Models AnimalKinetics030104 developmental biologychemistryTRIPLET REPEATRNAProtein Conformation beta-Strand3111 Biomedicine
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Evolving Notch polyQ tracts reveal possible solenoid interference elements.

2016

ABSTRACTPolyglutamine (polyQ) tracts in regulatory proteins are extremely polymorphic. As functional elements under selection for length, triplet repeats are prone to DNA replication slippage and indel mutations. Many polyQ tracts are also embedded within intrinsically disordered domains, which are less constrained, fast evolving, and difficult to characterize. To identify structural principles underlying polyQ tracts in disordered regulatory domains, here I analyze deep evolution of metazoan Notch polyQ tracts, which can generate alleles causing developmental and neurogenic defects. I show that Notch features polyQ tract turnover that is restricted to a discrete number of conserved “polyQ …

0301 basic medicineModels MolecularProtein Structure ComparisonProtein FoldingHuntingtinlcsh:MedicineCarboxamideAnkyrin Repeat DomainBiochemistryProtein Structure SecondaryDatabase and Informatics Methods0302 clinical medicineProtein structureMacromolecular Structure AnalysisDrosophila Proteinslcsh:ScienceGeneticsHuntingtin ProteinMultidisciplinaryReceptors NotchChemistryDrosophila MelanogasterAnimal ModelsCell biologyInsectsExperimental Organism SystemsProtein foldingDrosophilaSequence AnalysisResearch ArticleMultiple Alignment CalculationProtein StructureArthropodamedicine.drug_classBioinformaticsProtein domainSequence alignmentBiologyIntrinsically disordered proteinsResearch and Analysis MethodsTerminal loopEvolution Molecular03 medical and health sciencesModel OrganismsProtein DomainsSequence Motif AnalysisComputational TechniquesmedicineHuntingtin ProteinAnimalsIndelMolecular BiologyRepetitive Sequences Nucleic AcidModels GeneticSequence Homology Amino Acidlcsh:RDNA replicationOrganismsBiology and Life SciencesProteinsHydrogen BondingInvertebratesSplit-Decomposition MethodIntrinsically Disordered Proteins030104 developmental biologyAnkyrin repeatlcsh:QPeptidesSequence Alignment030217 neurology & neurosurgeryPLoS ONE
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In silico discovery of substituted pyrido[2,3-d]pyrimidines and pentamidine-like compounds with biological activity in myotonic dystrophy models

2016

Myotonic dystrophy type 1 (DM1) is a rare multisystemic disorder associated with an expansion of CUG repeats in mutant DMPK (dystrophia myotonica protein kinase) transcripts; the main effect of these expansions is the induction of pre-mRNA splicing defects by sequestering muscleblind-like family proteins (e.g. MBNL1). Disruption of the CUG repeats and the MBNL1 protein complex has been established as the best therapeutic approach for DM1, hence two main strategies have been proposed: targeted degradation of mutant DMPK transcripts and the development of CUG-binding molecules that prevent MBNL1 sequestration. Herein, suitable CUG-binding small molecules were selected using in silico approach…

0301 basic medicineMolecular biologyPhysiologyMutantMyotonic dystrophyDruggabilitylcsh:Medicine01 natural sciencesBiochemistryPhysical ChemistryMyoblastschemistry.chemical_compoundAnabolic AgentsMedicaments--InteraccióAnimal CellsDrug DiscoveryMedicine and Health SciencesMBNL1Drosophila ProteinsMyotonic Dystrophylcsh:ScienceRNA structureConnective Tissue CellsMultidisciplinaryMolecular StructureOrganic CompoundsStem CellsPhysicsRNA-Binding ProteinsBiological activityPhenotypeClimbingMolecular Docking SimulationNucleic acidsChemistryDrosophila melanogasterBiochemistryGenetic DiseasesConnective TissueRNA splicingPhysical SciencesCellular TypesAnatomyLocomotion57 - BiologiaSignal TransductionResearch ArticleBiotechnologyHydrogen bondingcongenital hereditary and neonatal diseases and abnormalitiesIn silicoPrimary Cell CultureComputational biologyBiology010402 general chemistryMyotonic dystrophyMyotonin-Protein KinaseDrug interactionsSmall Molecule Libraries03 medical and health sciencesStructure-Activity RelationshipmedicineAnimalsHumansRNA MessengerEnllaços d'hidrogenClinical GeneticsChemical PhysicsBiology and life sciencesChemical BondingBiological Locomotionlcsh:ROrganic ChemistryEstructura molecularChemical CompoundsHydrogen BondingCell BiologyFibroblastsmedicine.disease0104 chemical sciencesBenzamidinesAlternative SplicingDisease Models AnimalMacromolecular structure analysis030104 developmental biologyPyrimidinesBiological TissuechemistrySmall MoleculesRNAlcsh:QTrinucleotide Repeat ExpansionMolecular structure
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Transcriptomic data from panarthropods shed new light on the evolution of insulator binding proteins in insects : Insect insulator proteins.

2016

Background Body plan development in multi-cellular organisms is largely determined by homeotic genes. Expression of homeotic genes, in turn, is partially regulated by insulator binding proteins (IBPs). While only a few enhancer blocking IBPs have been identified in vertebrates, the common fruit fly Drosophila melanogaster harbors at least twelve different enhancer blocking IBPs. We screened recently compiled insect transcriptomes from the 1KITE project and genomic and transcriptomic data from public databases, aiming to trace the origin of IBPs in insects and other arthropods. Results Our study shows that the last common ancestor of insects (Hexapoda) already possessed a substantial number …

0301 basic medicineMost recent common ancestormedia_common.quotation_subjectInsectDipluraGene evolutionEvolution Molecular03 medical and health sciencesArthropod evolutionGeneticsAnimalsEnhancerArthropodsPhylogenymedia_commonGeneticsbiologyGene Expression ProfilingfungiComparative transcriptomic analysesbiology.organism_classificationInsulator binding proteinsNeopteraDNA-Binding Proteins030104 developmental biologyBody planDrosophila melanogasterEnhancer Elements GeneticInsulator ElementsDrosophila melanogasterHomeotic geneTranscriptomeBiotechnologyResearch ArticleBMC genomics
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