Search results for "Drosophila melanogaster"

showing 10 items of 426 documents

Endothelial nitric oxide synthase upregulation in the guinea pig organ of Corti after acute noise trauma.

2004

Endothelial nitric oxide synthase (eNOS) upregulation was identified 60 h after acute noise trauma in morphologically intact cells of the reticular lamina in the organ of Corti of the guinea pig in the second turn of the cochlea. Using gold-coupled anti-eNOS antibodies and electron microscopy, it was shown that eNOS expression was upregulated in all cell areas and cell types except inner hair cells. Furthermore, eNOS was found in the organelle-free cytoplasm and in mitochondria of various cell types. The density of eNOS in mitochondria was considerably higher compared with the surrounding cytoplasm. Since eNOS activity is regulated by calcium, the eNOS detection was combined with calcium pr…

Pathologymedicine.medical_specialtyCytoplasmNitric Oxide Synthase Type IIIGuinea Pigschemistry.chemical_elementCalciumMicrotubulesDownregulation and upregulationMicroscopy Electron TransmissionEnosStress PhysiologicalHair Cells AuditorymedicineAnimalsCalcium SignalingMolecular BiologyOrgan of CortiCytoskeletonbiologyGeneral NeuroscienceNitric Oxide Synthase Type IIIbiology.organism_classificationImmunohistochemistryCell biologyMitochondriaUp-RegulationNitric oxide synthaseActin CytoskeletonDisease Models Animalmedicine.anatomical_structureDrosophila melanogasterchemistryAcoustic StimulationHearing Loss Noise-InducedCytoplasmOrgan of Cortibiology.proteinCalciumNeurology (clinical)Nitric Oxide SynthaseNoiseIntracellularDevelopmental BiologyBrain research
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Crystal cell pattern modification in a melanotic tumor strain of Drosophila melanogaster.

1988

3rd instar larvae of the melanotic tumor tu-pb strain of Drosophila melanogaster hold a lower number of free-circulating crystal cells in their hemolymph than the wild type ones. This pattern could result from an abnormal retention of mature crystal cells in the hematopoietic organs, as the strong hemocyte melanization inside the lymph glands of heat-treated tu-pb larvae seems to demonstrate. Melanotic tumor formation and modification of the crystal cell pattern may be related.

Pharmacologyanimal structuresStrain (chemistry)biologyfungiWild typeTemperatureCell Biologybiology.organism_classificationCell biologyCellular and Molecular NeuroscienceHaematopoiesisDrosophila melanogasterGenesHemolymphImmunologyHemolymphMelanogasterMolecular MedicineInstarAnimalsLymphDrosophila melanogasterMolecular BiologyMelanomaExperientia
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Candidate target mechanisms of the growth inhibitor cyromazine: Studies of phenylalanine hydroxylase, puparial amino acids, and dihydrofolate reducta…

2000

Cyromazine, an insect growth regulator, affects larval and pupal cuticles in dipterans and some other insects. The mode of action of this aminotriazine is not known yet, though it has been shown not to inhibit the synthesis of chitin and cuticular proteins. Cyromazine may, however, act on some step(s) of sclerotization of the cuticle. In the present study, we have analyzed the key enzyme for the production of sclerotization agents, phenylalanine hydroxylase (PAH), using the enzyme from Drosophila, a cyromazine-sensitive insect. PAH was studied in vitro with cyromazine and three biologically less active derivatives at concentrations ranging from 1 μM to 1 mM. None of the compounds did signif…

Phenylalanine hydroxylasePhysiologyCuticlePhenylalanineBiologyBiochemistrychemistry.chemical_compoundHousefliesDihydrofolate reductaseAnimalsAmino AcidsTyrosineMode of actionchemistry.chemical_classificationTriazinesDipterafungiPupaPhenylalanine HydroxylaseGeneral MedicineCyromazineJuvenile HormonesTetrahydrofolate DehydrogenaseDrosophila melanogasterEnzymechemistryBiochemistryInsect Sciencebiology.proteinArchives of Insect Biochemistry and Physiology
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Structure of the phenylalanine hydroxylase gene in Drosophila melanogaster and evidence of alternative promoter usage.

1996

The complete Drosophila melanogaster phenylalanine hydroxylase gene isolated from a genomic library was sequenced. Gene structure consisted of five exons covering a region of around 3 kb. Position of introns in the C-terminal domain was conserved with mammalian aromatic amino acid hydroxylase genes. Putative promoter sequences in the 5'UTR and intron 1 were identified. A novel transcript was detected differing from that previously reported by the inclusion of a part of the intron 1 sequence. It could be produced using an alternative promoter. The deduced open reading frame would code a protein with a small difference at the N-terminus. Expression of the alternative transcripts was examined …

Phenylalanine hydroxylaseTranscription GeneticMolecular Sequence DataBiophysicsGenes InsectBiochemistryPolymerase Chain ReactionExonchemistry.chemical_compoundAromatic amino acidsAnimalsGenomic libraryAmino Acid SequenceRNA MessengerPromoter Regions GeneticMolecular BiologyGeneDNA PrimersGeneticsGenomic LibrarybiologyBase SequenceIntronPhenylalanine HydroxylaseCell BiologyExonsbiology.organism_classificationMolecular biologyIntronsOpen reading frameDrosophila melanogasterchemistrybiology.proteinDrosophila melanogasterBiochemical and biophysical research communications
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Regulation of pteridine biosynthesis and aromatic amino acid hydroxylation in Drosophila melanogaster

1989

The relationship between high dietary levels of aromatic amino acid and regulation of pteridines in Drosophila eyes was examined by measuring changes in pool levels of six pterins in the wild type and mutants and amino acid pool levels in flies that carry mutations for pteridine biosynthesis. The effect upon relative viability and developmental times was also analyzed; relative viability was affected by L-phenylalanine, L-tryptophan, and L-tyrosine in decreasing order and the D-amino acids had little or no effect. The changes in concentration of biopterin, dihydrobiopterin, pterin, sepiapterin, drosopterins, and isoxanthopterin showed a characteristic pattern of increased and/or decreased a…

PhenylalanineBiopterinPhenylalanineBiologyHydroxylationBiochemistrychemistry.chemical_compoundDihydrobiopterinGeneticsmedicineAromatic amino acidsAnimalsAmino AcidsPterinMolecular BiologyEcology Evolution Behavior and Systematicschemistry.chemical_classificationPteridinesTryptophanGeneral MedicineTetrahydrobiopterinAmino acidDrosophila melanogasterchemistryBiochemistryMutationTyrosinePteridinemedicine.drug
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Separation by FPLC chromatofocusing of UDP-glucosyltransferases from three developmental stages of Drosophila melanogaster.

1997

Variation of UDP-glucosyltransferase activity, during Drosophila melanogaster development, was analyzed. The endogenous metabolite xanthurenic acid and the xenobiotic compounds 1-naphthol and 2-naphthol were used as substrates. Developmentally regulated differences were observed for the three substrates, suggesting the presence of UDP-glucosyltransferase isoenzymes. This was further confirmed by FPLC chromatofocusing on a Mono P column: seven peaks of UDP-glucosyltransferase activity (pHs: ≥6.3, 5.8, 5.5, 4.9, 4.5, 4.2, ≤4.0) with either single or overlapping substrate specificity were detected. A single xanthurenic acid:UDP-glucosyltransferase activity (pl 5.8) was found throughout develop…

PhysiologyMetaboliteOvipositionBiochemistryIsozymeGene Expression Regulation EnzymologicSubstrate Specificitychemistry.chemical_compoundGlucosyltransferasesAnimalsXanthurenic acidChromatography High Pressure LiquidbiologyChromatofocusingGene Expression Regulation DevelopmentalFast protein liquid chromatographyGeneral Medicinebiology.organism_classificationIsoenzymesDrosophila melanogasterchemistryBiochemistryGlucosyltransferasesInsect ScienceChromatography GelFemaleDrosophila melanogasterXenobioticArchives of insect biochemistry and physiology
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The nucleosome-remodeling ATPase ISWI is regulated by poly-ADP-ribosylation.

2008

ATP-dependent nucleosome-remodeling enzymes and covalent modifiers of chromatin set the functional state of chromatin. However, how these enzymatic activities are coordinated in the nucleus is largely unknown. We found that the evolutionary conserved nucleosome-remodeling ATPase ISWI and the poly-ADP-ribose polymerase PARP genetically interact. We present evidence showing that ISWI is target of poly-ADP-ribosylation. Poly-ADP-ribosylation counteracts ISWI function in vitro and in vivo. Our work suggests that ISWI is a physiological target of PARP and that poly-ADP-ribosylation can be a new, important post-translational modification regulating the activity of ATP-dependent nucleosome remodel…

Poly Adenosine Diphosphate RiboseImmunoprecipitationQH301-705.5Poly ADP ribose polymeraseATPaseBlotting WesternBiochemistryChromosomesGeneral Biochemistry Genetics and Molecular BiologySettore BIO/10 - BiochimicaAnimalsDrosophila ProteinsImmunoprecipitationNucleosomeBiology (General)Transcription factorIn Situ Hybridization FluorescencePolymeraseAdenosine TriphosphatasesGeneral Immunology and MicrobiologybiologyGeneral NeuroscienceGenetics and GenomicsPARP ISWI Poly(ADP)ribosylation Chromatin remodellingCell BiologyChromatinISWI PARPNucleosomesChromatinSettore BIO/18 - GeneticaDrosophila melanogasterBiochemistrybiology.proteinPoly(ADP-ribose) PolymerasesGeneral Agricultural and Biological SciencesFunction (biology)Transcription FactorsResearch ArticlePLoS Biology
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Immunolocalization of Poly ADP-Ribose on Drosophila Polytene Chromosomes

2011

Poly ADP-ribosylation (PARylation) is a posttranslational protein modification catalyzed by poly -ADP-ribose polymerases (PARPs). Poly ADP-ribose metabolism is involved in a wide range of biological processes, such as maintenance of genome stability, transcriptional regulation, energy metabolism, and programed cell death. Recently, chromatin components, including histones, have been shown to be targets of PARylation. Unlike mammals, which have several PARP-encoded genes, the model organism Drosophila melanogaster has only one PARP gene, highly related to mammalian PARP1. These features make flies a great model system to study PARP biology. Commercially available antibodies recognizing this …

Polytene chromosomebiologyved/biologyPoly ADP ribosylationPoly ADP ribose polymeraseved/biology.organism_classification_rank.speciesbiology.organism_classificationChromatinCell biologyHistonePARP1Melanogasterbiology.proteinDrosophila melanogasterModel organism
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The Role of Autophagy and Apoptosis During Embryo Development

2015

Programmed cell death (PCD) and cell survival are two sides of the same coin. Autopha‐ gy and apoptosis are crucial processes during embryo development of Invertebrates and Vertebrates organisms, as they are necessary for the formation of a new organism, start‐ ing from a fertilized egg. Fertilization triggers cell remodeling from each gamete to a toti‐ potent zygote. During embryogenesis, the cells undergo various processes, thus allowing the transformation of the embryo into an adult organism. In particular, cells require the appropriate tools to suddenly modify their morphology and protein content in order to respond to intrinsic and external stimuli. Autophagy and apoptosis are involved…

Programmed cell deathbiologyAutophagyCellMorphogenesisEmbryobiology.organism_classificationEmbryonic stem cellCell biologyMulticellular organismmedicine.anatomical_structuremedicineSettore BIO/06 - Anatomia Comparata E CitologiaDrosophila melanogasterCell death apoptosis-autophagy crosstalk stress differentiation embryo model systems
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Cell cycle independent role of Cyclin E during neural cell fate specification in Drosophila is mediated by its regulation of Prospero function

2009

AbstractDuring development, neural progenitor cells or neuroblasts generate a great intra- and inter-segmental diversity of neuronal and glial cell types in the nervous system. In thoracic segments of the embryonic central nervous system of Drosophila, the neuroblast NB6-4t undergoes an asymmetric first division to generate a neuronal and a glial sublineage, while abdominal NB6-4a divides once symmetrically to generate only 2 glial cells. We had earlier reported a critical function for the G1 cyclin, CyclinE (CycE) in regulating asymmetric cell division in NB6-4t. Here we show that (i) this function of CycE is independent of its role in cell cycle regulation and (ii) the two functions are m…

ProsperoNerve Tissue ProteinsStem cellsCyclinEBiologyCell fate determinationNeuroblastNeuroblastsCyclin EAsymmetric cell divisionAnimalsDrosophila ProteinsCell LineageMolecular BiologyNeural cellCell ProliferationSequence DeletionNeuronsCell fate determinationCell CycleNuclear ProteinsCell DifferentiationCell BiologyCell cycleNeural stem cellUp-RegulationCell biologyProtein TransportDrosophila melanogasternervous systemDrosophilaCNSStem cellGanglion mother cellBiomarkersProtein BindingTranscription FactorsDevelopmental BiologyDevelopmental Biology
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