Principles of gene regulation quantitatively connect DNA to RNA and proteins in bacteria.

Balakrishnan, Rohan; Mori, Matteo; Segota, Igor; Zhang, Zhongge; Aebersold, Ruedi; Ludwig, Christina; Hwa, Terence · Science · 2022

basic_science · Level V

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Abstract

Protein concentrations are set by a complex interplay between gene-specific regulatory processes and systemic factors, including cell volume and shared gene expression machineries. Elucidating this interplay is crucial for discerning and designing gene regulatory systems. We quantitatively characterized gene-specific and systemic factors that affect transcription and translation genome-wide for <i>Escherichia coli</i> across many conditions. The results revealed two design principles that make regulation of gene expression insulated from concentrations of shared machineries: RNA polymerase activity is fine-tuned to match translational output, and translational characteristics are similar across most messenger RNAs (mRNAs). Consequently, in bacteria, protein concentration is set primarily at the promoter level. A simple mathematical formula relates promoter activities and protein concentrations across growth conditions, enabling quantitative inference of gene regulation from omics data.

Medical subject headings