Search results for "Period Circadian Proteins"

showing 10 items of 10 documents

Circadian clock of Drosophila montana is adapted to high variation in summer day lengths and temperatures prevailing at high latitudes

2016

Photoperiodic regulation of the circadian rhythms in insect locomotor activity has been studied in several species, but seasonal entrainment of these rhythms is still poorly understood. We have traced the entrainment of activity rhythm of northern Drosophila montana flies in a climate chamber mimicking the photoperiods and day and night temperatures that the flies encounter in northern Finland during the summer. The experiment was started by transferring freshly emerged females into the chamber in early and late summer conditions to obtain both non-diapausing and diapausing females for the studies. The locomotor activity of the females and daily changes in the expression levels of two core …

0301 basic medicinePhysiologyTimelessPhotoperiodtimelessCircadian clockGene ExpressionZoologyBiologyDiapauseDiapause Insectphotoperiod03 medical and health sciences0302 clinical medicineCircadian Clockscircadian clockZeitgeberAnimalsDrosophila ProteinsCircadian rhythmFinlandphotoperiodismEcologyta1184TemperaturePeriod Circadian Proteinsseasonal adaptationperiod030104 developmental biologyInsect Scienceta1181Period Circadian ProteinsDrosophilalämpötilaSeasonsEntrainment (chronobiology)Locomotion030217 neurology & neurosurgeryJournal of Insect Physiology
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Characterisation, analysis of expression and localisation of circadian clock genes from the perspective of photoperiodism in the aphid Acyrthosiphon …

2017

Aphids are typical photoperiodic insects that switch from viviparous parthenogenetic reproduction typical of long day seasons to oviparous sexual reproduction triggered by the shortening of photoperiod in autumn yielding an overwintering egg in which an embryonic diapause takes place. While the involvement of the circadian clock genes in photoperiodism in mammals is well established, there is still some controversy on their participation in insects. The availability of the genome of the pea aphid Acyrthosiphon pisum places this species as an excellent model to investigate the involvement of the circadian system in the aphid seasonal response. In the present report, we have advanced in the c…

0301 basic medicineTimelessPeriod (gene)PhotoperiodCircadian clockDiapauseBiochemistry03 medical and health sciences0302 clinical medicineCircadian ClocksBotanyAnimalsCircadian rhythmMolecular Biologyphotoperiodismbiologyfood and beveragesBrainPeriod Circadian Proteinsbiology.organism_classificationAcyrthosiphon pisumCell biologyCLOCK030104 developmental biologyGene Expression RegulationInsect ScienceAphids030217 neurology & neurosurgeryInsect biochemistry and molecular biology
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zHSF1 modulates zper2 expression in zebrafish embryos

2018

International audience; HSF1 is a transcription factor that plays a key role in circadian resetting by temperature. We have used zebrafish embryos to decipher the roles of zHsf1, heat and light on zper2 transcription in vivo. Our results show that heat shock (HS) stimulated zper2 expression in the dark but has no cumulative effect combined with light. After light exposition, zper2 expression was 2.7 fold increased threefold in the hsf1-morphants in comparison to control embryos. Our results show that zHsf1 plays a positive role in HS-driven expression of zper2 in the dark but seems to act as an attenuator in the presence light.

0301 basic medicinezHSF1Physiologycrispants03 medical and health sciencesHeat Shock Transcription FactorsTranscription (biology)In vivoPhysiology (medical)AnimalsCircadian rhythm[ SDV.BDD ] Life Sciences [q-bio]/Development BiologyEye ProteinsHSF1ZebrafishTranscription factorzper2biologyChemistryfungiGene Expression Regulation DevelopmentalEmbryoPeriod Circadian ProteinsZebrafish Proteinsbiology.organism_classificationzebrafishCircadian RhythmCell biology030104 developmental biologyZebrafish embryomorpholino knockdown
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Deletion of the PER3 Gene on Chromosome 1p36 in Recurrent ER-Positive Breast Cancer

2010

El pdf del artículo es la versión de autor.-- et al.

Cancer ResearchMicroarrayGene DosageGene ExpressionEstrogen receptorBreast NeoplasmsGene dosageMiceBreast cancerOriginal ReportsAnimalsHumansMedicineGenetic Predisposition to DiseaseCopy-number variationskin and connective tissue diseasesSequence Deletionbusiness.industryCancerPeriod Circadian ProteinsPrognosismedicine.diseaseSurvival AnalysisDisease Models AnimalReceptors EstrogenOncologyChromosomes Human Pair 1Cancer researchFemaleBreast diseaseNeoplasm Recurrence LocalbusinessTamoxifenmedicine.drugJournal of Clinical Oncology
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Spatio-temporal pattern of cells expressing the clock genes period and timeless and the lineages of period expressing neurons in the embryonic CNS of…

2010

The initial steps towards the generation of cell diversity in the central nervous system of the fruitfly Drosophila melanogaster take place during early phases of embryonic development when a stereotypic population of neural progenitor cells (neuroblasts and midline precursors) is formed in a precise spatial and temporal pattern, and subsequently expresses a particular sequence of genes. The clarification of the positional, temporal and molecular features of the individual progenitor cells in the nerve cord and brain as well as of their specific types of neuronal and/or glial progeny cells forms an essential basis to understand the mechanisms controlling their development. The present study…

Central Nervous SystemEmbryo NonmammalianTimelessPeriod (gene)PopulationModels BiologicalAnimals Genetically ModifiedNeuroblastCell MovementGeneticsAnimalsDrosophila ProteinsCell LineageeducationMolecular BiologyBody PatterningGeneticsNeuronseducation.field_of_studyLife Cycle StagesbiologyGene Expression Regulation DevelopmentalPeriod Circadian Proteinsbiology.organism_classificationNeural stem cellCell biologyClone CellsCLOCKDrosophila melanogasterLarvaDrosophila melanogasterNeural developmentDevelopmental BiologyGene expression patterns : GEP
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Circadian rhythms and chemical carcinogenesis: Potential link. An overview.

2009

Circadian rhythm is an integral and not replaceable part of the organism's homeostasis. Its signalling is multidimensional, overlooking global networks such as chromatin remodelling, cell cycle, DNA damage and repair as well as nuclear receptors function. Understanding its global networking will allow us to follow up not only organism dysfunction and pathology (including chemical carcinogenesis) but well-being in general having in mind that time is not always on our side. The authors thank ECNIS (Environmental Cancer, Nutrition and Individual Susceptibility), a network of excellence operating within the European Union 6th Framework Program, Priority 5: Food Quality and Safety (Contract no. …

DNA RepairDNA repairDNA damageHealth Toxicology and MutagenesisCell Cycle ProteinsBiologymedicine.disease_causeNeoplasmsGeneticsmedicineHomeostasisHumansAnimalsCircadian rhythmOrganismCell CyclePeriod Circadian ProteinsDNACell biologyCircadian RhythmCLOCKNuclear receptorCarcinogensPeriod Circadian ProteinsCarcinogenesisDNA Damage
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Mutual Antagonism between Circadian Protein Period 2 and Hepatitis C Virus Replication in Hepatocytes

2013

BackgroundHepatitis C virus (HCV) infects approximately 3% of the world population and is the leading cause of liver disease, impacting hepatocyte metabolism, depending on virus genotype. Hepatic metabolic functions show rhythmic fluctuations with 24-h periodicity (circadian), driven by molecular clockworks ticking through translational-transcriptional feedback loops, operated by a set of genes, called clock genes, encoding circadian proteins. Disruption of biologic clocks is implicated in a variety of disorders including fatty liver disease, obesity and diabetes. The relation between HCV replication and the circadian clock is unknown.MethodsWe investigated the relationship between HCV core…

MaleGastroenterology and hepatologyCircadian clockHepacivirusVirus ReplicationHepatitisMolecular cell biologyCellular Stress ResponsesMultidisciplinaryViral Core ProteinsQMechanisms of Signal TransductionRPeriod Circadian ProteinsMiddle AgedHepatitis CCLOCKPER2ARNTLInfectious hepatitisLiverMedicineInfectious diseasesRNA ViralFemaleResearch ArticleSignal TransductionPER1AdultHistologyFeedback RegulationGenotypeSciencePeriod (gene)DNA transcriptionViral diseasesGenome ViralBiologyCell LineCell Line TumorGeneticsHumansBiologyLiver diseasesAgedVirologyHepatocytesPeriod Circadian ProteinsGene expressionARNTL2PLoS ONE
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Daily oscillation of gene expression in the retina is phase-advanced with respect to the pineal gland

2007

Abstract The photoreceptive retina and the non-photoreceptive pineal gland are components of the circadian and the melatonin forming system in mammals. To contribute to our understanding of the functional integrity of the circadian system and the melatonin forming system we have compared the daily oscillation of the two tissues under various seasonal lighting conditions. For this purpose, the 24-h profiles of the expression of the genes coding for arylalkylamine N-acetyltransferase (AA-NAT), nerve growth factor inducible gene-A (NGFI-A), nerve growth factor inducible gene-B (NGFI-B), retinoic acid related orphan receptor β (RORβ), dopamine D4 receptor, and period2 (Per2) have been simultane…

Maleendocrine systemmedicine.medical_specialtyGene ExpressionCell Cycle ProteinsBiologyArylalkylamine N-AcetyltransferasePineal GlandRetinaPinealocyteRats Sprague-DawleyMelatoninPineal glandInternal medicinemedicineAnimalsCircadian rhythmMolecular BiologyEarly Growth Response Protein 1RetinaSuprachiasmatic nucleusGeneral NeuroscienceReceptors Dopamine D4Nuclear ProteinsPeriod Circadian ProteinsMicroarray AnalysisCircadian RhythmRatsPER2Endocrinologymedicine.anatomical_structureFemaleNeurology (clinical)Developmental BiologyEndocrine glandmedicine.drugBrain Research
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Interaction of Circadian Clock Proteins CRY1 and PER2 Is Modulated by Zinc Binding and Disulfide Bond Formation

2014

SummaryPeriod (PER) proteins are essential components of the mammalian circadian clock. They form complexes with cryptochromes (CRY), which negatively regulate CLOCK/BMAL1-dependent transactivation of clock and clock-controlled genes. To define the roles of mammalian CRY/PER complexes in the circadian clock, we have determined the crystal structure of a complex comprising the photolyase homology region of mouse CRY1 (mCRY1) and a C-terminal mouse PER2 (mPER2) fragment. mPER2 winds around the helical mCRY1 domain covering the binding sites of FBXL3 and CLOCK/BMAL1, but not the FAD binding pocket. Our structure revealed an unexpected zinc ion in one interface, which stabilizes mCRY1-mPER2 int…

Models Molecularendocrine systemanimal structuresPeriod (gene)Molecular Sequence DataCircadian clockBiologyCrystallography X-RayGeneral Biochemistry Genetics and Molecular BiologyMiceCryptochromeAnimalsProtein Interaction Domains and MotifsAmino Acid SequenceCircadian rhythmBinding siteBiochemistry Genetics and Molecular Biology(all)F-Box ProteinsPeriod Circadian ProteinsRecombinant ProteinsCryptochromesPER2ZincBiochemistryFAD bindingBiophysicsPeriod Circadian ProteinsSequence AlignmentCell
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Expression and regulation of mPer1 in immortalized GnRH neurons.

2003

Hypothalamic GnRH (gonadotropin-releasing hormone) neurons play a critical role in the initiation and maintenance of reproduction competence. Using the mouse GnRH neuronal cell line, GT1-7, we have characterized the expression of the gene mPer1, a recognized key element of the mammalian circadian clockwork. Both mPer1 transcripts and the 136 kDa mPER1 gene product could be detected in these cells. Immunocytochemical analysis also confirmed expression of mPER1 both in vitro and in vivo in GnRH neurons. Activation of cyclic AMP signalling pathways in vitro elevated GnRH secretion as well as mPer1 expression and nuclear mPER1 immunoreactivity. As mPER1 is known to feedback on transcriptional a…

endocrine systemmedicine.medical_specialtyCellImmunoblottingCell Cycle ProteinsBiologyGene productGonadotropin-Releasing HormoneMiceInternal medicineGene expressionmedicineAnimalsGeneCells CulturedRegulation of gene expressionNeuronsReverse Transcriptase Polymerase Chain ReactionGeneral NeuroscienceColforsinNuclear ProteinsPeriod Circadian ProteinsImmunohistochemistryPreoptic AreaIn vitromedicine.anatomical_structureEndocrinologyNeuroprotective AgentsGene Expression RegulationCell cultureHypothalamushormones hormone substitutes and hormone antagonistsVasoactive Intestinal PeptideNeuroreport
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