Science · 2013 · 116 citations · 21 references
BiologyCircadian OscillationsAlertnessSignal TransductionBioenergeticsMedicineNatural SciencesMolecular BiologySingle CyanobacteriaCell CycleOscillator SynchronyRobust Circadian OscillationsCyanobacteriaSystems BiologyCircadian RhythmChronobiologyCircadian Biology
The remarkably stable circadian oscillations of single cyanobacteria enable a population of growing cells to maintain synchrony for weeks. The cyanobacterial pacemaker is a posttranslational regulation (PTR) circuit that generates circadian oscillations in the phosphorylation state of the clock protein KaiC. Layered on top of the PTR is transcriptional-translational feedback regulation (TTR), common to all circadian systems, consisting of a negative feedback loop in which KaiC regulates its own production. We found that the PTR circuit is sufficient to generate oscillations in growing cyanobacteria. However, in the absence of TTR, individual oscillators were less stable and synchrony was not maintained in a population of cells. Experimentally constrained mathematical modeling reproduced sustained oscillations in the PTR circuit alone and demonstrated the importance of TTR for oscillator synchrony.
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Peter A. Tass, Michael G. Rosenblum, Jörg Weule et al. · Physical Review Letters · 1998 · 1.4K citations
Reconstitution of Circadian Oscillation of Cyanobacterial KaiC Phosphorylation in Vitro
Masato Nakajima, Keiko Imai, Hiroshi Ito et al. · Science · 2005 · 1.1K citations
Circadian clocks in human red blood cells
John S. O’Neill, Akhilesh B. Reddy · Nature · 2011 · 806 citations
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Expression of a Gene Cluster <i>kaiABC</i> as a Circadian Feedback Process in Cyanobacteria
Masahiro Ishiura, Shinsuke Kutsuna, Setsuyuki Aoki et al. · Science · 1998 · 752 citations