High-Resolution Structure and Internal Mobility of a Plant 40S Ribosomal Subunit

Int J Mol Sci. 2023 Dec 14;24(24):17453. doi: 10.3390/ijms242417453.

Abstract

Ribosome is a major part of the protein synthesis machinery, and analysis of its structure is of paramount importance. However, the structure of ribosomes from only a limited number of organisms has been resolved to date; it especially concerns plant ribosomes and ribosomal subunits. Here, we report a high-resolution cryo-electron microscopy reconstruction of the small subunit of the Triticum aestivum (common wheat) cytoplasmic ribosome. A detailed atomic model was built that includes the majority of the rRNA and some of the protein modifications. The analysis of the obtained data revealed structural peculiarities of the 40S subunit in the monocot plant ribosome. We applied the 3D Flexible Refinement approach to analyze the internal mobility of the 40S subunit and succeeded in decomposing it into four major motions, describing rotations of the head domain and a shift in the massive rRNA expansion segment. It was shown that these motions are almost uncorrelated and that the 40S subunit is flexible enough to spontaneously adopt any conformation it takes as a part of a translating ribosome or ribosomal complex. Here, we introduce the first high-resolution structure of an isolated plant 40S subunit and the first quantitative analysis of the flexibility of small ribosomal subunits, hoping that it will help in studying various aspects of ribosome functioning.

Keywords: 40S ribosomal subunit; Triticum aestivum; cryo-EM; plant ribosome.

MeSH terms

  • Cryoelectron Microscopy
  • Protein Biosynthesis
  • RNA, Ribosomal / metabolism
  • Ribosomal Proteins / metabolism
  • Ribosome Subunits, Small, Eukaryotic* / metabolism
  • Ribosomes* / metabolism

Substances

  • RNA, Ribosomal
  • Ribosomal Proteins