English

Quantifying Broken Detailed Balance in Transcription

Subcellular Processes 2025-11-27 v3 Statistical Mechanics Populations and Evolution

Abstract

For the canonical two-state model of transcription, we derive exact analytic expressions for the entropy production rate of transcription at steady state, and assess detailed balance breaking in transcription. Our analytics allow us to easily evaluate the entropy production rate of thousands of genes across seven datasets of two-state model parameters without needing to evaluate the entropy production rate from trajectory-based computation. A data-driven approach then exposes that most genes avoid parameter regimes associated with large entropy production rates, akin to a mesoscopic version of energy expenditure minimization. Importantly, we show that this is not a thermodynamic phenomenon, since the entropy production rate from the two state gene model provides only a weak bound on the housekeeping energy needed to power transcription. Finally, we show that cell-to-cell variability can make mRNA expression seem more or less irreversible than a ``representative cell'' would imply.

Keywords

Cite

@article{arxiv.2405.12897,
  title  = {Quantifying Broken Detailed Balance in Transcription},
  author = {James Holehouse},
  journal= {arXiv preprint arXiv:2405.12897},
  year   = {2025}
}

Comments

10 pages of main text, 6 figures in the main text, 14 pages of SI, 14 figures in the SI. Final version (accepted at npj Complexity)

R2 v1 2026-06-28T16:34:29.433Z