AI Article Synopsis

  • The study investigates the role of Cgr1 in the maturation process of the 60S ribosomal subunit by examining its placement in relation to the 5S RNP during ribosome assembly.
  • Deletion of the Cgr1 gene in yeast leads to slow growth and reverts the pre-60S particles back to an earlier stage, indicating Cgr1's importance in this process.
  • Interestingly, mutations that stabilize the earlier pre-rotation stage can compensate for the loss of Cgr1, suggesting it helps maintain the structure of the newly rearranged, post-rotation ribosomal complex.

Article Abstract

During eukaryotic 60S biogenesis, the 5S RNP requires a large rotational movement to achieve its mature position. Cryo-EM of the Rix1-Rea1 pre-60S particle has revealed the post-rotation stage, in which a gently undulating α-helix corresponding to Cgr1 becomes wedged between Rsa4 and the relocated 5S RNP, but the purpose of this insertion was unknown. Here, we show that cgr1 deletion in yeast causes a slow-growth phenotype and reversion of the pre-60S particle to the pre-rotation stage. However, spontaneous extragenic suppressors could be isolated, which restore growth and pre-60S biogenesis in the absence of Cgr1. Whole-genome sequencing reveals that the suppressor mutations map in the Rpf2-Rrs1 module and Rpl5, which together stabilize the unrotated stage of the 5S RNP. Thus, mutations in factors stabilizing the pre-rotation stage facilitate 5S RNP relocation upon deletion of Cgr1, but Cgr1 itself could stabilize the post-rotation stage.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6173701PMC
http://dx.doi.org/10.1038/s41467-018-06660-wDOI Listing

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