English

Nonlinearity arising from noncooperative transcription factor binding enhances negative feedback and promotes genetic oscillations

Adaptation and Self-Organizing Systems 2015-01-19 v1 Biological Physics Molecular Networks

Abstract

We study the effects of multiple binding sites in the promoter of a genetic oscillator. We evaluate the regulatory function of a promoter with multiple binding sites in the absence of cooperative binding, and consider different hypotheses for how the number of bound repressors affects transcription rate. Effective Hill exponents of the resulting regulatory functions reveal an increase in the nonlinearity of the feedback with the number of binding sites. We identify optimal configurations that maximize the nonlinearity of the feedback. We use a generic model of a biochemical oscillator to show that this increased nonlinearity is reflected in enhanced oscillations, with larger amplitudes over wider oscillatory ranges. Although the study is motivated by genetic oscillations in the zebrafish segmentation clock, our findings may reveal a general principle for gene regulation.

Keywords

Cite

@article{arxiv.1501.04040,
  title  = {Nonlinearity arising from noncooperative transcription factor binding enhances negative feedback and promotes genetic oscillations},
  author = {Iván M. Lengyel and Daniele Soroldoni and Andrew C. Oates and Luis G. Morelli},
  journal= {arXiv preprint arXiv:1501.04040},
  year   = {2015}
}

Comments

11 pages, 8 figures