Differential translation of mRNA isoforms transcribed with distinct sigma factors
- 1Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA
- 2Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA
- 3Whitehead Institute for Biomedical Research, Cambridge, Massachusetts 02142, USA
- Corresponding author: gwli{at}mit.edu
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↵5 These authors contributed equally to this work.
Abstract
Sigma factors are an important class of bacterial transcription factors that lend specificity to RNA polymerases by binding to distinct promoter elements for genes in their regulons. Here we show that activation of the general stress sigma factor, σB, in Bacillus subtilis paradoxically leads to dramatic induction of translation for a subset of its regulon genes. These genes are translationally repressed when transcribed by the housekeeping sigma factor, σA, owing to extended RNA secondary structures as determined in vivo using DMS-MaPseq. Transcription from σB-dependent promoters excludes the secondary structures and activates translation, leading to dual induction. Translation efficiencies between σB- and σA-dependent RNA isoforms can vary by up to 100-fold, which in multiple cases exceeds the magnitude of transcriptional induction. These results highlight the role of long-range RNA folding in modulating translation and demonstrate that a transcription factor can regulate protein synthesis beyond its effects on transcript levels.
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Article is online at http://www.rnajournal.org/cgi/doi/10.1261/rna.078747.121.
- Received March 7, 2021.
- Accepted April 23, 2021.
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