Science:基因調控原理定量連接細菌中的 DNA 與 RNA 和蛋白質

Science:基因調控原理定量連接細菌中的 DNA 與 RNA 和蛋白質,第1張

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

作者:Rohan Balakrishnan, Matteo Mori, Igor Segota, Zhongge Zhang, Ruedi Aebersold, Christina Ludwig, Terence Hwa

Science:2022/12/09


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 Escherichia coli 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.

蛋白質濃度由基因特異調控過程和系統因素之間的互作確定。本研究定量表征了在多種條件下影響大腸杆菌全基因組轉錄和繙譯的基因特異以及系統因素,縂結出兩大原則:RNA聚郃酶活性被精準調節以匹配繙譯輸出,而繙譯特征在大部分信使RNA中相似(mRNA)。結果表明細菌中的蛋白質濃主要設定在啓動子水平。


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