The daily rhythms that adapt organisms to the solar cycle are driven by internal circadian clocks. The hypothesis that the core pacemakers of these clocks consist of auto-regulatory transcriptional/post-translational feedback loops (TTFLs) was first developed in flies and fungi and has now been extended successfully to describe circadian timing mechanisms in mammals and plants. TTFL models revolve around the protein products of ‘clock’ genes that feedback periodically to regulate their own expression. From this simple beginning, the models have been expanded to encompass multiple, interlinked loops. However, experimental data now highlight the limitations of the TTFL model. Until recently, the focus on transcription caused rhythms in cytoso...
SummaryThe cyanobacterial circadian clock generates genome-wide transcriptional oscillations and reg...
The remarkably stable circadian oscillations of single cyanobacteria enable a population of growing ...
SummaryCyanobacteria have become a major model system for analyzing circadian rhythms. The temporal ...
The daily rhythms that adapt organisms to the solar cycle are driven by internal circadian clocks. T...
For 20 years, researchers have thought that circadian clocks are defined by feedback loops of transc...
The circadian clock, which governs metabolic and physiological rhythms in diverse organisms, shares ...
Cyanobacteria are the only model circadian clock system in which a circadian oscillator can be recon...
AbstractCircadian clocks, internal timekeepers that generate a daily rhythmicity, help organisms to ...
AbstractCircadian clocks allow a temporal coordination and segregation of physiological, metabolic, ...
SummaryCyanobacteria have become a major model system for analyzing circadian rhythms. The temporal ...
Cyanobacteria are the only model circadian clock system in which a circadian oscillator can be recon...
Rudolf F, Wehrle F, Staiger D. Slaves to the rhythm. The Biochemist. 2004;26:11-13
Many physiological processes in organisms from bacteria to man are rhythmic, and some of these are c...
AbstractCircadian clocks are auto-regulatory loops in which ‘clock’ gene products feedback to regula...
AbstractThe circadian system of Neurospora crassa includes a molecular feedback loop that is entrain...
SummaryThe cyanobacterial circadian clock generates genome-wide transcriptional oscillations and reg...
The remarkably stable circadian oscillations of single cyanobacteria enable a population of growing ...
SummaryCyanobacteria have become a major model system for analyzing circadian rhythms. The temporal ...
The daily rhythms that adapt organisms to the solar cycle are driven by internal circadian clocks. T...
For 20 years, researchers have thought that circadian clocks are defined by feedback loops of transc...
The circadian clock, which governs metabolic and physiological rhythms in diverse organisms, shares ...
Cyanobacteria are the only model circadian clock system in which a circadian oscillator can be recon...
AbstractCircadian clocks, internal timekeepers that generate a daily rhythmicity, help organisms to ...
AbstractCircadian clocks allow a temporal coordination and segregation of physiological, metabolic, ...
SummaryCyanobacteria have become a major model system for analyzing circadian rhythms. The temporal ...
Cyanobacteria are the only model circadian clock system in which a circadian oscillator can be recon...
Rudolf F, Wehrle F, Staiger D. Slaves to the rhythm. The Biochemist. 2004;26:11-13
Many physiological processes in organisms from bacteria to man are rhythmic, and some of these are c...
AbstractCircadian clocks are auto-regulatory loops in which ‘clock’ gene products feedback to regula...
AbstractThe circadian system of Neurospora crassa includes a molecular feedback loop that is entrain...
SummaryThe cyanobacterial circadian clock generates genome-wide transcriptional oscillations and reg...
The remarkably stable circadian oscillations of single cyanobacteria enable a population of growing ...
SummaryCyanobacteria have become a major model system for analyzing circadian rhythms. The temporal ...