AI Article Synopsis

  • Preventing early interactions between pre-ribosomes and the translation machinery is crucial for maintaining accurate protein synthesis.
  • The protein DIM2 plays a key role in this process by interacting with the endoribonuclease NOB1 and blocking the rRNA cleavage site until the right moment.
  • Research using cryo-electron microscopy reveals that the ATP-loaded RIO1, in conjunction with ribosomal protein RPS26, effectively removes DIM2, allowing NOB1 to perform the final essential cleavage needed for ribosome maturation.

Article Abstract

Preventing premature interaction of pre-ribosomes with the translation apparatus is essential for translational accuracy. Hence, the final maturation step releasing functional 40S ribosomal subunits, namely processing of the 18S ribosomal RNA 3' end, is safeguarded by the protein DIM2, which both interacts with the endoribonuclease NOB1 and masks the rRNA cleavage site. To elucidate the control mechanism that unlocks NOB1 activity, we performed cryo-electron microscopy analysis of late human pre-40S particles purified using a catalytically inactive form of the ATPase RIO1. These structures, together with in vivo and in vitro functional analyses, support a model in which ATP-loaded RIO1 cooperates with ribosomal protein RPS26/eS26 to displace DIM2 from the 18S rRNA 3' end, thereby triggering final cleavage by NOB1; release of ADP then leads to RIO1 dissociation from the 40S subunit. This dual key lock mechanism requiring RIO1 and RPS26 guarantees the precise timing of pre-40S particle conversion into translation-competent ribosomal subunits.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8112863PMC
http://dx.doi.org/10.7554/eLife.61254DOI Listing

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