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The RNA helicase HrpA rescues collided ribosomes in E. coli

  • Annabelle Campbell
  • , Hanna F. Esser
  • , A. Maxwell Burroughs
  • , Otto Berninghausen
  • , L. Aravind
  • , Thomas Becker
  • , Rachel Green
  • , Roland Beckmann
  • , Allen R. Buskirk

Research output: Contribution to journalArticlepeer-review

Abstract

Although many antibiotics inhibit bacterial ribosomes, the loss of known factors that rescue stalled ribosomes does not lead to robust antibiotic sensitivity in E. coli, suggesting the existence of additional mechanisms. Here, we show that the RNA helicase HrpA rescues stalled ribosomes in E. coli. Acting selectively on ribosomes that have collided, HrpA uses ATP hydrolysis to split stalled ribosomes into subunits. Cryoelectron microscopy (cryo-EM) structures reveal how HrpA simultaneously binds to two collided ribosomes, explaining its selectivity, and how its helicase module engages downstream mRNA such that, by exerting a pulling force on the mRNA, it would destabilize the stalled ribosome. These studies show that ribosome splitting is a conserved mechanism that allows proteobacteria to tolerate ribosome-targeting antibiotics.

Original languageEnglish (US)
Pages (from-to)999-1007.e7
JournalMolecular cell
Volume85
Issue number5
DOIs
StatePublished - Mar 6 2025

Keywords

  • DEAH-box protein
  • HrpA
  • SmrB
  • cryo-EM
  • ribosome collisions
  • ribosome splitting

ASJC Scopus subject areas

  • Molecular Biology
  • Cell Biology

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