In the previous chapter, we discussed several examples of living systems in which periodic oscillations arise from regulatory systems with negative feedback. On the other hand, there are cases in which periodic oscillations are generated from systems that apparently do not have active regulation, such as feedback. Here, we focus on the state transition system of the protein that controls the circadian rhythm of cyanobacteria and try to mathematically clarify the relationship between the structure of biomolecular systems and the dynamics arising from them.

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Oscillation in Living System II: Cyanobacteria Circadian Rhythms

  • Atsushi Mochizuki

摘要

In the previous chapter, we discussed several examples of living systems in which periodic oscillations arise from regulatory systems with negative feedback. On the other hand, there are cases in which periodic oscillations are generated from systems that apparently do not have active regulation, such as feedback. Here, we focus on the state transition system of the protein that controls the circadian rhythm of cyanobacteria and try to mathematically clarify the relationship between the structure of biomolecular systems and the dynamics arising from them.