0000000000248864

AUTHOR

Stefanie Kunst

showing 6 related works from this author

Transcriptional analysis of rat photoreceptor cells reveals daily regulation of genes important for visual signaling and light damage susceptibility.

2013

Photoreceptor cells face the challenge of adjusting their function and, possibly, their susceptibility to light damage to the marked daily changes in ambient light intensity. To achieve a better understanding of photoreceptor adaptation at the transcriptional level, this study aimed to identify genes which are under daily regulation in photoreceptor cells using microarray analysis and quantitative PCR. Included in the gene set obtained were a number of genes which up until now have not been shown to be expressed in photoreceptor cells, such as Atf3 (activating transcription factor 3) and Pde8a (phosphodiesterase 8A), and others with a known impact on phototransduction and/or photoreceptor s…

MaleTranscription GeneticPhotoperiodActivating transcription factorBiologyBiochemistryPhotoreceptor cellRats Sprague-DawleyCellular and Molecular NeuroscienceGene expressionmedicineTranscriptional regulationAnimalsPhotoreceptor CellsRNA MessengerGeneticsRetinaMicroarray analysis techniquesCell biologyRatsLight intensitymedicine.anatomical_structureGene Expression RegulationVisual Perceptionsense organsPhotic StimulationVisual phototransductionSignal TransductionJournal of neurochemistry
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Transcriptional regulation of nucleoredoxin-like genes takes place on a daily basis in the retina and pineal gland of rats.

2015

AbstractThe nucleoredoxin-like gene Nxnl1 (Txnl6) and its paralogue Nxnl2 encode the rod-derived cone viability factors (RdCVF and RdCVF2), which increase the resistance to photooxidative damage and have therapeutic potential for the survival of cones in retinitis pigmentosa. In this study, the transcription of Nxnl genes was investigated as a function of the day/night cycle in rats. The transcript levels of Nxnl1 and Nxnl2 were seen to display daily rhythms with steadily increasing values during the light phase and peak expression around dark onset in preparations of whole retina, photoreceptor cells and—but only in regard to Nxnl1—in photoreceptor-related pinealocytes. The cycling of Nxnl…

Malemedicine.medical_specialtyPhysiologyCircadian clockLaser Capture MicrodissectionBiologyPineal GlandRetinaPinealocyteRats Sprague-DawleyPineal glandInternal medicineRetinitis pigmentosamedicineAnimalsPhotoreceptor CellsCircadian rhythmRNA MessengerRegulation of gene expressionHomeodomain ProteinsRetinaGenes HomeoboxNuclear ProteinsDarknessmedicine.diseaseSensory SystemsCircadian RhythmRatsEndocrinologymedicine.anatomical_structureGene Expression RegulationDarknessFemalesense organsOxidoreductasesVisual neuroscience
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The Retinal Clock Drives the Expression ofKcnv2, a Channel Essential for Visual Function and Cone Survival

2012

PURPOSE The gene Kcnv2 codes for the voltage-gated potassium channel subunit Kv8.2, which can coassemble with Kv2.1 subfamily members to constitute functional voltage-gated potassium channels. Mutations in the Kcnv2 gene result in a retinal disorder designated "cone dystrophy with supernormal rod response (CDSRR)," revealing that Kcnv2 is essential for visual processing and cone survival. The aim of this study was to determine whether expression of Kcnv2 and Kv2.1 is under circadian regulation and may thus contribute to the clock-driven adjustment of photoreceptor function. METHODS Expression of the genes was recorded in preparations of the whole retina and microdissected retinal neurons by…

MaleRetinal Disordergenetic structuresCell SurvivalCone dystrophy with supernormal rod responseBlotting WesternBiologyReal-Time Polymerase Chain ReactionRetinaRats Sprague-Dawleychemistry.chemical_compoundShab Potassium ChannelsmedicineTranscriptional regulationAnimalsImmunoprecipitationRNA MessengerGeneVision OcularRetinaRetinalAnatomyAdaptation PhysiologicalPotassium channelCircadian RhythmRatsCell biologymedicine.anatomical_structureReal-time polymerase chain reactionGene Expression RegulationchemistryPotassium Channels Voltage-GatedRetinal Cone Photoreceptor CellsFemalesense organsInvestigative Opthalmology & Visual Science
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Melatonin signaling modulates clock genes expression in the mouse retina.

2014

Previous studies have shown that retinal melatonin plays an important role in the regulation of retinal daily and circadian rhythms. Melatonin exerts its influence by binding to G-protein coupled receptors named melatonin receptor type 1 and type 2 and both receptors are present in the mouse retina. Earlier studies have shown that clock genes are rhythmically expressed in the mouse retina and melatonin signaling may be implicated in the modulation of clock gene expression in this tissue. In this study we determined the daily and circadian expression patterns of Per1, Per2, Bmal1, Dbp, Nampt and c-fos in the retina and in the photoreceptor layer (using laser capture microdissection) in C3H-f…

Malemedicine.medical_specialtyendocrine systemgenetic structuresOcular AnatomyReceptors Melatoninlcsh:MedicineBiologyMelatonin receptorBiochemistryRetinaPinealocyteMelatoninGene Knockout TechniquesMiceOcular SystemInternal medicinemedicineAnimalsPhotoreceptor Cellslcsh:ScienceMolecular BiologyMelatoninRetinaMultidisciplinarylcsh:RBiology and Life SciencesCell biologyCircadian RhythmCLOCKPER2Circadian OscillatorsCircadian Rhythmsmedicine.anatomical_structureEndocrinologyGene Expression RegulationDaylightFemalelcsh:Qsense organsSignal transductionAnatomyChronobiologyhormones hormone substitutes and hormone antagonistsmedicine.drugPER1Research ArticleSignal TransductionPLoS ONE
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Pgc-1α and Nr4a1 Are Target Genes of Circadian Melatonin and Dopamine Release in Murine Retina

2015

Purpose The neurohormones melatonin and dopamine mediate clock-dependent/circadian regulation of inner retinal neurons and photoreceptor cells and in this way promote their functional adaptation to time of day and their survival. To fulfill this function they act on melatonin receptor type 1 (MT1 receptors) and dopamine D4 receptors (D4 receptors), respectively. The aim of the present study was to screen transcriptional regulators important for retinal physiology and/or pathology (Dbp, Egr-1, Fos, Nr1d1, Nr2e3, Nr4a1, Pgc-1α, Rorβ) for circadian regulation and dependence on melatonin signaling/MT1 receptors or dopamine signaling/D4 receptors. Methods This was done by gene profiling using qu…

Malemedicine.medical_specialtyDopamineDNA Mutational AnalysisBiologyMelatonin receptorRetinaMelatoninMiceDopamineInternal medicinemedicineNuclear Receptor Subfamily 4 Group A Member 1AnimalsCircadian rhythmReceptorMelatoninRegulation of gene expressionDNAAdaptation PhysiologicalPeroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alphaeye diseasesCircadian RhythmMice Inbred C57BLEndocrinologyGene Expression RegulationDopamine receptorMutationFemalesense organsSignal transductionhormones hormone substitutes and hormone antagonistsmedicine.drugSignal TransductionTranscription Factors
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Photoreceptor cells display a daily rhythm in the orphan receptor Esrrβ

2015

Purpose Nuclear orphan receptors are critical for the development and long-term survival of photoreceptor cells. In the present study, the expression of the nuclear orphan receptor Esrrβ—a transcriptional regulator of energy metabolism that protects rod photoreceptors from dystrophy—was tested under daily regulation in the retina and photoreceptor cells. Methods The daily transcript and protein amount profiles were recorded in preparations of the whole retina and microdissected photoreceptor cells using quantitative PCR (qPCR) and western blot analysis. Results Esrrβ displayed a daily rhythm with elevated values at night in the whole retina and enriched photoreceptor cells. Daily regulation…

Malegenetic structuresTranscription GeneticPhotoperiodPrimary Cell Cultureeye diseasesRetinaCircadian RhythmRatsMice Inbred C57BLRats Sprague-DawleyTissue Culture TechniquesMiceGene Expression RegulationReceptors EstrogenRetinal Rod Photoreceptor CellsAnimalsFemalesense organsRNA MessengerEnergy MetabolismResearch ArticleMolecular Vision
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