A small RNA guides a post-transcriptional regulatory protein to its target

Read the full article See related articles

Listed in

This article is not in any list yet, why not save it to one of your lists.
Log in to save this article

Abstract

RNA-binding proteins are central to post-transcriptional regulation and are generally thought to recognize their target RNAs through direct binding. Here, we uncover a previously unrecognized mechanism in which a small RNA (sRNA) guides a protein regulator to specific target mRNAs, enabling programmable post-transcriptional control. By mapping in pathogenic Escherichia coli the RNA interactome of CsrA, a global post-transcriptional regulator, we identify ∼800 ternary complexes in which CsrA simultaneously binds an sRNA and an mRNA. Focusing on one class of these complexes, we show that PasE, a newly discovered sRNA, directs CsrA to virulence-associated mRNAs that are otherwise not targeted by CsrA, resulting in their repression. Altering the PasE seed sequence redirects CsrA to selected mRNAs, establishing a modular RNA-guided platform for gene regulation. Together, our findings reveal a new and likely widespread mechanism of bacterial post-transcriptional regulation and provide a framework for a new type of RNA-based synthetic regulation.

Highlights

  • The PasE sRNA can direct the CsrA post-transcriptional regulator to target mRNAs that are otherwise not targeted by CsrA.

  • The CsrA-PasE complex controls the virulence of enteropathogenic E. coli .

  • The PasE seed can be synthetically reprogrammed to direct CsrA to new target mRNAs.

  • Hundreds of additional sRNA-CsrA-mRNA regulatory complexes are formed in pathogenic E. coli .

Article activity feed