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. 2022 Jun 15;13(6):454-470.e15.
doi: 10.1016/j.cels.2022.04.005. Epub 2022 May 24.

Feedback from nuclear RNA on transcription promotes robust RNA concentration homeostasis in human cells

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Feedback from nuclear RNA on transcription promotes robust RNA concentration homeostasis in human cells

Scott Berry et al. Cell Syst. .
Free article

Abstract

RNA concentration homeostasis involves coordinating RNA abundance and synthesis rates with cell size. Here, we study this in human cells by combining genome-wide perturbations with quantitative single-cell measurements. Despite relative ease in perturbing RNA synthesis, we find that RNA concentrations generally remain highly constant. Perturbations that would be expected to increase nuclear mRNA levels, including those targeting nuclear mRNA degradation or export, result in downregulation of RNA synthesis. This is associated with reduced abundance of transcription-associated proteins and protein states that are normally coordinated with RNA production in single cells, including RNA polymerase II (RNA Pol II) itself. Acute perturbations, elevation of nuclear mRNA levels, and mathematical modeling indicate that mammalian cells achieve robust mRNA concentration homeostasis by the mRNA-based negative feedback on transcriptional activity in the nucleus. This ultimately acts to coordinate RNA Pol II abundance with nuclear mRNA degradation and export rates and may underpin the scaling of mRNA abundance with cell size.

Keywords: RNA metabolism; cell size scaling; homeostasis; ribostasis; transcription.

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Conflict of interest statement

Declaration of interests L.P. has filed a patent on the 4i technology (patent WO2019207004A1).

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