4.4 Article

Mutations at the accommodation gate of the ribosome impair RF2-dependent translation termination

期刊

RNA
卷 16, 期 9, 页码 1848-1853

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1261/rna.2185710

关键词

translation; ribosome; decoding; accommodation; release factor

资金

  1. INTAS [05-109-4696]
  2. Russian Foundation for Basic Research [08-04-01212, 08-04-00974]
  3. Human Frontier Science Program [RGY0088/2008]
  4. U.S. Civilian Research and Development Foundation [RUB1-33006-MO-08]
  5. Howard Hughes Medical Institute [55005605]
  6. Deutsche Forschungsgemeinschaft
  7. International Bureau of the Federal Ministry of Education and Research, Germany

向作者/读者索取更多资源

During protein synthesis, aminoacyl-tRNA (aa-tRNA) and release factors 1 and 2 (RF1 and RF2) have to bind at the catalytic center of the ribosome on the 50S subunit where they take part in peptide bond formation or peptidyl-tRNA hydrolysis, respectively. Computer simulations of aa-tRNA movement into the catalytic site (accommodation) suggested that three nucleotides of 23S rRNA, U2492, C2556, and C2573, form a gate at which aa-tRNA movement into the A site is retarded. Here we examined the role of nucleotides C2573 of 23S rRNA, a part of the putative accommodation gate, and of the neighboring A2572 for aa-tRNA binding followed by peptide bond formation and for the RF2-dependent peptide release. Mutations at the two positions did not affect aa-tRNA accommodation, peptide bond formation, or the fidelity of aa-tRNA selection, but impaired RF2-catalyzed peptide release. The data suggest that the ribosome is a robust machine that allows rapid aa-tRNA accommodation despite the defects at the accommodation gate. In comparison, peptide release by RF2 appears more sensitive to these mutations, due to slower accommodation of the factor or effects on RF2 positioning in the A site.

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