4.8 Article

Decoding the Function of Expansion Segments in Ribosomes

期刊

MOLECULAR CELL
卷 72, 期 6, 页码 1013-+

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2018.11.023

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资金

  1. New York Stem Cell Foundation [NYSCF-R-I36]
  2. NIH [1R01HD086634]
  3. Alfred P. Sloan Research Fellowship
  4. Pew Scholars Award
  5. National Science Scholarship (PhD) from the Agency for Science, Technology and Research
  6. Uehara Memorial Foundation
  7. Human Frontier Science Program Fellowship

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Expansion segments (ESs) are enigmatic insertions within the eukaryotic ribosome, the longest of which resemble tentacle-like extensions that vary in length and sequence across evolution, with a largely unknown function. By selectively engineering rRNA in yeast, we find that one of the largest ESs, ES27L, has an unexpected function in translation fidelity. Ribosomes harboring a deletion in the distal portion of ES27L have increased amino acid misincorporation, as well as readthrough and frameshifting errors. By employing quantitative mass spectrometry, we further find that ES27L acts as an RNA scaffold to facilitate binding of a conserved enzyme, methionine amino peptidase (MetAP). We show that MetAP unexpectedly controls the accuracy of ribosome decoding, which is coupled to an increase in its enzymatic function through its interaction with ES27L. These findings reveal that variable ESs of the ribosome serve important functional roles and act as platforms for the binding of proteins that modulate translation across evolution.

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