Effect of cytidine-5′-monophosphate on peptidyl transferase activity
Author:
Publisher
Wiley
Subject
Cell Biology,Genetics,Molecular Biology,Biochemistry,Structural Biology,Biophysics
Reference9 articles.
1. Ribosome-catalyzed peptidyl transfer: substrate specificity at the P-site.
2. Peptidyl-Donor Substrates for Ribosomal Peptidyl Transferase. Chemical Synthesis and Biological Activity of N-Acetyl Aminoacyl Di-and Tri-Nucleotides
3. 2′(3′)-O-N -formylmethionyl)-adenosine-5′-phosphate, a new donor substrate in peptidyl transferase catalyzed reactions
4. Substrate specificity of ribosomal peptidyl transferase: 2′(3′)-O-aminoacyl nucleosides as acceptors of the peptide chain on the amino acid site
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1. Induced fit of the peptidyl-transferase center of the ribosome and conformational freedom of the esterified amino acids;RNA;2016-11-22
2. Mononucleotide derivatives as ribosomal P-site substrates reveal an important contribution of the 2'-OH to activity;Nucleic Acids Research;2003-11-15
3. Structure–function relationships in the hammerhead ribozyme probed by base rescue;RNA;1998-11
4. Review;Biological Chemistry;1998
5. Conserved Nucleotides of 23 S rRNA Located at the Ribosomal Peptidyltransferase Center;Journal of Biological Chemistry;1996-12
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