Search results for "20-Hydroxyecdysone"

showing 4 items of 4 documents

Molecular cloning and expression of Tenebrio molitor ultraspiracle during metamorphosis and in vivo induction of its phosphorylation by 20-hydroxyecd…

2000

Using a RT-PCR approach, the Tenebrio molitor homologue of Drosophila Ultraspiracle (TmUSP) was characterized. Its DNA binding domain shows a degree of identity with those of the other insect USPs. However, the ligand binding domain is closer to those of retinoid X receptors. Using an antibody raised against DmUSP, Western blot analysis of proteins from epidermis and other tissues revealed five immunoreactive bands, corresponding to different phosphorylated forms of a unique polypeptide, as shown by lambda-phosphatase treatment. The nuclear form of TmUSP seems unphosphorylated. An in vivo 20-hydroxyecdysone treatment increases considerably and rapidly the phosphorylated forms of TmUSP. This…

DNA ComplementaryMolecular Sequence Data20-HydroxyecdysoneGene ExpressionMolecular cloningBiologychemistry.chemical_compoundWestern blotGene expressionGeneticsmedicineAnimalsDrosophila ProteinsHumansProtein IsoformsAmino Acid SequenceRNA MessengerCloning MolecularPhosphorylationReceptorTenebrioMolecular BiologyEpidermis (botany)medicine.diagnostic_testMetamorphosis BiologicalDNA-binding domainSequence Analysis DNAMolecular biologyCell biologyDNA-Binding ProteinsEcdysteronechemistryInsect SciencePhosphorylationEpidermisTranscription FactorsInsect molecular biology
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The precocious commitment of wing Anlagen in Tenebrio molitor revealed by the addition of 20-hydroxyecdysone.

1992

Abstract An injection of 20-hydroxyecdysone (10 μg per animal) 6–13 days after the moult of the last larval instar of Tenebrio molitor induces the development of prothetelic larvae and larval-pupal intermediates. The state of larval-pupal switchover, or commitment, is only disclosed at the time of injection of the moulting hormone. Prothetelic A and B larvae, with small and medium sized wing Anlagen, undergo another larval or pupal instar. Prothetelic C larvae with bigger Anlagen are unable to moult, but the adult programme is expressed. Ecdysed larval-pupal intermediates give more or less perfect adults, while unecdysed mealworms, imprisoned in their larval cuticle, also expressed the adul…

Larvaanimal structuresWingCuticlefungi20-HydroxyecdysoneZoologyCell BiologyGeneral MedicineAnatomyBiologyPupachemistry.chemical_compoundchemistryUltrastructureInstarMoultingDevelopmental BiologyTissuecell
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Nucleotide sequence of an adult-specific cuticular protein gene from the beetle Tenebrio molitor: effects of 20-hydroxyecdysone on mRNA accumulation.

1993

0962-1075 (Print) Journal Article Research Support, Non-U.S. Gov't; The accumulation of transcripts from two adult-specific cuticular genes (ACP-20 and ACP-22) is shown to be modified after addition of exogenous 20-hydroxyecdysone. In the continuous presence of high levels of the hormone, the expression of ACP-20 gene is significantly weaker than that of untreated controls, while ACP-22 expression is 2.5-fold increased. During active synthesis of the ACP messages, a 0.5 microg 20-hydroxyecdysone injection causes a rapid 2-fold increase in ACP-22 mRNA and is not able to repress ACP-20 mRNA accumulation. We conclude that these genes whose transcripts appear in an almost coordinated manner in …

animal structuresmedia_common.quotation_subjectMolecular Sequence Data20-HydroxyecdysoneMessenger/metabolismGenes InsectInsectBiologychemistry.chemical_compoundstomatognathic systemGeneticsAnimalsAmino Acid SequenceRNA MessengerMetamorphosisTenebrioMolecular BiologyGeneSouthernmedia_commonGeneticsMessenger RNATenebrio/*genetics/metabolismEcdysterone/*pharmacologyGenomeBase SequenceBlottingNucleic acid sequenceDNAhumanitiesCell biologyInsect Proteins/*geneticsBlotting SouthernEcdysteronechemistryGenesGene Expression RegulationInsect SciencebacteriaRNAInsect Proteinslipids (amino acids peptides and proteins)MoultingInsectHormoneInsect molecular biology
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Developmental changes and acetylcholinesterase activity in the metamorphosing brain ofTenebrio molitor: Correlation to ecdysteroid titers

1994

The brain of Tenebrio molitor exhibited marked fluctuations in acetylcholinesterase (AChE) activity throughout metamorphosis. This was true AChE activity, since it was inhibited by high substrate concentrations and by 10 μM of the specific AChE inhibitor BW284C51 [(1,5-bis'4-allyldimethylammoniumphenyl)-pentan-3-one dibromide] but not by iso-OMPA (tetraisopropylpyrophosphoramide), a cholinesterase (but not AChE) inhibitor. The histochemical AChE activity was localized in the neuropile and the nuclear envelope of neurons and glial cells. The enzyme extracted from brains with 1% Triton X-100 and 1 M NaCl sedimented as a single peak in a sucrose density gradient, with a sedimentation coefficie…

medicine.medical_specialtyPhysiologyAchémedia_common.quotation_subject20-HydroxyecdysoneBiologyBiochemistrychemistry.chemical_compoundInternal medicinemedicineMetamorphosisCholinesterasemedia_commonchemistry.chemical_classificationEcdysteroidfungiGeneral MedicineAcetylcholinesteraselanguage.human_languageSedimentation coefficientEndocrinologyEnzymechemistryInsect Sciencelanguagebiology.proteinArchives of Insect Biochemistry and Physiology
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