Programming peptidomimetic syntheses by translating genetic codes designed de novo
- 16 May 2003
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 100 (11) , 6353-6357
- https://doi.org/10.1073/pnas.1132122100
Abstract
Although the universal genetic code exhibits only minor variations in nature, Francis Crick proposed in 1955 that "the adaptor hypothesis allows one to construct, in theory, codes of bewildering variety." The existing code has been expanded to enable incorporation of a variety of unnatural amino acids at one or two nonadjacent sites within a protein by using nonsense or frameshift suppressor aminoacyl-tRNAs (aa-tRNAs) as adaptors. However, the suppressor strategy is inherently limited by compatibility with only a small subset of codons, by the ways such codons can be combined, and by variation in the efficiency of incorporation. Here, by preventing competing reactions with aa-tRNA synthetases, aa-tRNAs, and release factors during translation and by using nonsuppressor aa-tRNA substrates, we realize a potentially generalizable approach for template-encoded polymer synthesis that unmasks the substantially broader versatility of the core translation apparatus as a catalyst. We show that several adjacent, arbitrarily chosen sense codons can be completely reassigned to various unnatural amino acids according to de novo genetic codes by translating mRNAs into specific peptide analog polymers (peptidomimetics). Unnatural aa-tRNA substrates do not uniformly function as well as natural substrates, revealing important recognition elements for the translation apparatus. Genetic programming of peptidomimetic synthesis should facilitate mechanistic studies of translation and may ultimately enable the directed evolution of small molecules with desirable catalytic or pharmacological properties.Keywords
This publication has 41 references indexed in Scilit:
- A tRNA aminoacylation system for non-natural amino acids based on a programmable ribozymeNature Biotechnology, 2002
- Working Outside the Protein-Synthesis RulesScience, 2002
- An end to the protection racketNature, 2001
- Incorporation of Nonnatural Amino Acids into Proteins by Using Various Four-Base Codons in an Escherichia coli in Vitro Translation SystemBiochemistry, 2001
- Initiation factors IF1 and IF2 synergistically remove peptidyl-tRNAs with short polypeptides from the P-site of translating Escherichia coli ribosomesJournal of Molecular Biology, 1998
- Development of improved tRNAs for in vitro biosynthesis of proteins containing unnatural amino acidsChemistry & Biology, 1996
- Identification of d -Peptide Ligands Through Mirror-Image Phage DisplayScience, 1996
- In vitro protein engineering using synthetic tRNAAla with different anticodonsBiochemistry, 1993
- Self-cleaving viroid and newt RNAs may only be active as dimersNature, 1988
- Ribosome-Catalyzed Polyester FormationScience, 1971