An expanded genetic code with a functional quadruplet codon
- 11 May 2004
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (20), 7566-7571
- https://doi.org/10.1073/pnas.0401517101
Abstract
With few exceptions the genetic codes of all known organisms encode the same 20 amino acids, yet all that is required to add a new building block are a unique tRNA/aminoacyl-tRNA synthetase pair, a source of the amino acid, and a unique codon that specifies the amino acid. For example, the amber nonsense codon, TAG, together with orthogonal Methanococcus jannaschii or Escherichia coli tRNA/synthetase pairs have been used to genetically encode a variety of unnatural amino acids in E. coli and yeast, respectively. However, the availability of noncoding triplet codons ultimately limits the number of amino acids encoded by any organism. Here, we report the design and generation of an orthogonal synthetase/tRNA pair derived from archaeal tRNALys sequences that efficiently and selectively incorporates an unnatural amino acid into proteins in response to the quadruplet codon, AGGA. Frameshift suppression with l-homoglutamine (hGln) does not significantly affect protein yields or cell growth rates and is mutually orthogonal with amber suppression, permitting the simultaneous incorporation of two unnatural amino acids, hGln and O-methyl-l-tyrosine, at distinct positions within myoglobin. This work suggests that neither the number of available triplet codons nor the translational machinery itself represents a significant barrier to further expansion of the genetic code.Keywords
This publication has 31 references indexed in Scilit:
- A New Strategy for the Synthesis of GlycoproteinsScience, 2004
- Site-Specific Incorporation of a Redox-Active Amino Acid into ProteinsJournal of the American Chemical Society, 2003
- Adaptation of an Orthogonal Archaeal Leucyl-tRNA and Synthetase Pair for Four-base, Amber, and Opal SuppressionBiochemistry, 2003
- Generation of a Bacterium with a 21 Amino Acid Genetic CodeJournal of the American Chemical Society, 2003
- Functional convergence of two lysyl-tRNA synthetases with unrelated topologiesNature Structural & Molecular Biology, 2002
- Expanding the genetic code: selection of efficient suppressors of four-base codons and identification of “shifty” four-base codons with a library approach in Escherichia coli11Edited by M. GottesmanJournal of Molecular Biology, 2001
- Incorporation of two nonnatural amino acids into proteins through extension of the genetic codeNucleic Acids Symposium Series, 1999
- Novel transfer RNAs that are active in Escherichia coliBiochemistry, 1992
- Reading Frame Selection and Transfer RNA Anticodon Loop StackingScience, 1987
- Four-base codons ACCA, ACCU and ACCC are recognized by frameshift suppressor sufJCell, 1981