The interaction between C75 of tRNA and the A loop of the ribosome stimulates peptidyl transferase activity
Open Access
- 22 December 2005
- journal article
- research article
- Published by Cold Spring Harbor Laboratory in RNA
- Vol. 12 (1) , 33-39
- https://doi.org/10.1261/rna.2256706
Abstract
Ribosomal variants carrying mutations in active site nucleotides are severely compromised in their ability to catalyze peptide bond formation (PT) with minimal aminoacyl tRNA substrates such as puromycin. However, catalysis of PT by these same ribosomes with intact aminoacyl tRNA substrates is uncompromised. These data suggest that these active site nucleotides play an important role in the positioning of minimal aminoacyl tRNA substrates but are not essential for catalysis per se when aminoacyl tRNAs are positioned by more remote interactions with the ribosome. Previously reported biochemical studies and atomic resolution X-ray structures identified a direct Watson–Crick interaction between C75 of the A-site substrate and G2553 of the 23S rRNA. Here we show that the addition of this single cytidine residue (the C75 equivalent) to puromycin is sufficient to suppress the deficiencies of active site ribosomal variants, thus restoring “tRNA-like” behavior to this minimal substrate. Studies of the binding parameters and the pH-dependence of catalysis with this minimal substrate indicate that the interaction between C75 and the ribosomal A loop is an essential feature for robust catalysis and further suggest that the observed effects of C75 on peptidyl transfer activity reflect previously reported conformational rearrangements in this active site.Keywords
This publication has 28 references indexed in Scilit:
- Affinity purification of in vivo-assembled ribosomes for in vitro biochemical analysisMethods, 2005
- Substrate-assisted catalysis of peptide bond formation by the ribosomeNature Structural & Molecular Biology, 2004
- The Active Site of the Ribosome Is Composed of Two Layers of Conserved Nucleotides with Distinct Roles in Peptide Bond Formation and Peptide ReleaseCell, 2004
- A pre-translocational intermediate in protein synthesis observed in crystals of enzymatically active 50S subunitsNature Structural & Molecular Biology, 2002
- The Structural Basis of Ribosome Activity in Peptide Bond SynthesisScience, 2000
- Interaction of translation initiation factor IF1 with the E. coli ribosomal A siteJournal of Molecular Biology, 2000
- Nucleotides in 16S rRNA protected by the association of 30S and 50S ribosomal subunitsJournal of Molecular Biology, 1999
- pH Dependencies of the Tetrahymena Ribozyme Reveal an Unconventional Origin of an Apparent pKaBiochemistry, 1996
- Site-directed mutagenesis and NMR spectroscopic approaches to the elucidation of the structure-function relationships in translation initiation factors IF1 and IF3Biochimie, 1991
- The inactivation and reactivation of ribosomal-peptidyl transferase of E. coliBiochemical and Biophysical Research Communications, 1968