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Polyamine Control of Translation Elongation Regulates Start Site Selection on Antizyme Inhibitor mRNA via Ribosome Queuing

  • Ivaylo P. Ivanov*
  • , Byung Sik Shin
  • , Gary Loughran
  • , Ioanna Tzani
  • , Sara K. Young-Baird
  • , Chune Cao
  • , John F. Atkins
  • , Thomas E. Dever
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

112 Scopus citations

Abstract

Translation initiation is typically restricted to AUG codons, and scanning eukaryotic ribosomes inefficiently recognize near-cognate codons. We show that queuing of scanning ribosomes behind a paused elongating ribosome promotes initiation at upstream weak start sites. Ribosomal profiling reveals polyamine-dependent pausing of elongating ribosomes on a conserved Pro-Pro-Trp (PPW) motif in an inhibitory non-AUG-initiated upstream conserved coding region (uCC) of the antizyme inhibitor 1 (AZIN1) mRNA, encoding a regulator of cellular polyamine synthesis. Mutation of the PPW motif impairs initiation at the uCC's upstream near-cognate AUU start site and derepresses AZIN1 synthesis, whereas substitution of alternate elongation pause sequences restores uCC translation. Impairing ribosome loading reduces uCC translation and paradoxically derepresses AZIN1 synthesis. Finally, we identify the translation factor eIF5A as a sensor and effector for polyamine control of uCC translation. We propose that stalling of elongating ribosomes triggers queuing of scanning ribosomes and promotes initiation by positioning a ribosome near the start codon. Ivanov et al. reveal that ribosome queuing upstream of a paused elongating ribosome promotes translation initiation at an upstream near-cognate start codon on the AZIN1 mRNA. This mechanism is exploited during polyamine autoregulation of antizyme inhibitor synthesis, and similar strategies may control translation of other mRNAs with poor start sites.

Original languageEnglish
Pages (from-to)254-264.e6
JournalMolecular Cell
Volume70
Issue number2
DOIs
StatePublished - 19 Apr 2018

Keywords

  • antizyme inhibitor
  • AZIN1
  • eIF5A
  • near cognate
  • polyamines
  • ribosome
  • spermidine

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