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Small RNAs Establish Delays and Temporal Thresholds in Gene Expression

2008/07/03 by Stefan Legewie, Dennis Dienst, Annegret Wilde +2 · 1 citation
Biochemistry, Genetics and Molecular Biology · #Bacterial Genetics and Biotechnology #Photosynthetic Processes and Mechanisms #RNA Research and Splicing #q-bio.CB #q-bio.MN

paper · pdf · doi:10.1529/biophysj.108.133819

published as Biophys J. 2008 Oct;95(7):3232-8

openalex publication_date 2008/07/03 · arxiv created 2008/11/28 · arxiv updated 2009/12/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

Non-coding RNAs are crucial regulators of gene expression in prokaryotes and eukaryotes, but it remains poorly understood how they affect the dynamics of transcriptional networks. We analyzed the temporal characteristics of the cyanobacterial iron stress response by mathematical modeling and quantitative experimental analyses, and focused on the role of a recently discovered small non-coding RNA, IsrR. We found that IsrR is responsible for a pronounced delay in the accumulation of isiA mRNA encoding the late-phase stress protein, IsiA, and that it ensures a rapid decline in isiA levels once external stress triggers are removed. These kinetic properties allow the system to selectively respond to sustained (as opposed to transient) stimuli, and thus establish a temporal threshold, which prevents energetically costly IsiA accumulation under short-term stress conditions. Biological information is frequently encoded in the quantitative aspects of intracellular signals (e.g., amplitude and duration). Our simulations reveal that competitive inhibition and regulated degradation allow intracellular regulatory networks to efficiently discriminate between transient and sustained inputs.

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