4.4 Article

An open interface in the pre-80S ribosome coordinated by ribosome assembly factors Tsr1 and Dim1 enables temporal regulation of Fap7

期刊

RNA
卷 27, 期 2, 页码 221-233

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1261/rna.077610.120

关键词

ribosome assembly; small ribosome subunit; cryo-EM

资金

  1. National Institutes of Health (NIH) [R01-GM117093, R01-GM086451]
  2. Howard Hughes Medical Institute (HHMI) Faculty Scholar grant [55108536]
  3. Florida State University
  4. NIH [S10 RR025080, S10 OD018142, U24 GM116788]
  5. PGA National Women's Cancer Awareness Postdoctoral Fellowship

向作者/读者索取更多资源

By determining the structure of an 80S-like ribosome assembly intermediate, researchers revealed how assembly and translation factors cooperate to promote quality control, resolving previously paradoxical data and showing how different proteins facilitate the crucial process of ribosome formation.
During their maturation, nascent 40S subunits enter a translation-like quality control cycle, where they are joined by mature 60S subunits to form 80S-like ribosomes. While these assembly intermediates are essential for maturation and quality control, how they form, and how their structure promotes quality control, remains unknown. To address these questions, we determined the structure of an 80S-like ribosome assembly intermediate to an overall resolution of 3.4 angstrom. The structure, validated by biochemical data, resolves a large body of previously paradoxical data and illustrates how assembly and translation factors cooperate to promote the formation of an interface that lacks many mature subunit contacts but is stabilized by the universally conserved methyltransferase Dim1. We also show how Tsr1 enables this interface by blocking the canonical binding of eIF5B to 40S subunits, while maintaining its binding to 60S. The structure also shows how this interface leads to unfolding of the platform, which allows for temporal regulation of the ATPase Fap7, thus linking 40S maturation to quality control during ribosome assembly.

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