Insights from Mathematical Modeling/Simulations of the In Vitro KaiABC Clock

Author:

Byrne Mark

Publisher

Springer International Publishing

Reference46 articles.

1. Abe J, Hiyama TB, Mukaiyama A, Son S, Mori T, Saito S et al (2015) Atomic-scale origins of slowness in the cyanobacterial circadian clock. Science 349(6245):312–316

2. Brettschneider C, Rose RJ, Hertel S, Axmann IM, Heck AJR, Kollmann M (2010) A sequestration feedback determines dynamics and temperature entrainment of the KaiABC circadian clock. Mol Syst Biol 6(389):1–10

3. Byrne M (2009) Mathematical modeling of the in vitro cyanobacterial circadian oscillator. In: Ditty JL, Mackey SR, Johnson CH (eds) Bacterial circadian programs, vol 16. Springer, Berlin, pp 283–300

4. Byrne M (2014) Computational modeling of protein interactions and phosphoform kinetics in the KaiABC cyanobacterial circadian clock. arXiv:1405.3586

5. Byrne M (2020) Simple post-translational circadian clock models from selective sequestration bioRxiv 2020.02.21.958827; https://doi.org/10.1101/2020.02.21.958827

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