Search results for "Oscillating gene"

showing 3 items of 3 documents

A Role of Histone Acetylation in the Regulation of Circadian Rhythm in Ants

2020

Summary In many organisms, circadian rhythms and associated oscillations in gene expression are controlled by post-translational modifications of histone proteins. Although epigenetic mechanisms influence key aspects of insect societies, their implication in regulating circadian rhythms has not been studied in social insects. Here we ask whether histone acetylation plays a role in adjusting circadian activity in the ant Temnothorax longispinosus. We characterized activity patterns in 20 colonies to reveal that these ants exhibit a diurnal rhythm in colony-level activity and can rapidly respond to changes in the light regime. Then we fed T. longispinosus colonies with C646, a chemical inhibi…

0301 basic medicinemedia_common.quotation_subject02 engineering and technologyInsectBiologyArticle03 medical and health sciencesGene expressionEpigeneticsCircadian rhythmlcsh:ScienceOscillating geneMolecular Biologymedia_commonHistone AcetyltransferasesMultidisciplinaryfungi021001 nanoscience & nanotechnologyANTCell biology030104 developmental biologyHistoneAcetylationbiology.proteinlcsh:QMolecular Mechanism of Behavior0210 nano-technologyEntomologyiScience
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How is the inner circadian clock controlled by interactive clock proteins?

2015

AbstractMost internationally travelled researchers will have encountered jetlag. If not, working odd hours makes most of us feel somehow dysfunctional. How can all this be linked to circadian rhythms and circadian clocks? In this review, we define circadian clocks, their composition and underlying molecular mechanisms. We describe and discuss recent crystal structures of Drosophila and mammalian core clock components and the enormous impact they had on the understanding of circadian clock mechanisms. Finally, we highlight the importance of circadian clocks for the daily regulation of human/mammalian physiology and show connections to overall fitness, health and disease.

Drosophila and mammalian clock proteinCircadian rhythmCircadian clock mechanismProtein ConformationCircadian clockBiophysicsCLOCK Proteins3D crystal structureCell BiologyBiologyBiochemistryBacterial circadian rhythmsCell biologyStructural BiologyCircadian ClocksGeneticsAnimalsHumansCLOCK ProteinsCircadian rhythmOscillating geneMolecular BiologyNeuroscienceFEBS Letters
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Influence of photoperiodic history on clock genes and the circadian pacemaker in the rat retina

2006

The influence of seasonal lighting conditions on expression of clock genes and the circadian pacemaker was investigated in the rat retina. For this purpose, the 24-h profiles of nine clock genes (bmal1, clock, per1, per2, per3, dec1, dec2, cry1 and cry 2) and the arylalkylamine N-acetyltransferase gene as an indicator of the circadian pacemaker output were compared between light-dark periods of 8 : 16 and 16 : 8 h. The photoperiod influenced the daily patterns of the amount of transcript for per1, per3, dec2 and arylalkylamine N-acetyltransferase. This indicates that photoperiodic information modulates clock gene expression in addition to the circadian pacemaker of the retina. Under constan…

Maleendocrine systemmedicine.medical_specialtyTime FactorsPhotoperiodGene ExpressionBiologyRetinaRats Sprague-DawleyInternal medicinemedicineAnimalsRNA MessengerEye ProteinsOscillating genephotoperiodismAnalysis of VarianceReverse Transcriptase Polymerase Chain ReactionGeneral NeuroscienceNuclear ProteinsCircadian RhythmRatsPER2CLOCKDEC1PER3EndocrinologyGene Expression RegulationArylalkylamineFemalesense organshormones hormone substitutes and hormone antagonistsPER1European Journal of Neuroscience
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