A bio-orthogonal and unnatural substance, such as an unnatural amino acid (Uaa), is an ideal regulator to control target gene expression in a synthetic gene circuit. Genetic code expansion technology has achieved Uaa incorporation into ribosomal synthesized proteins in vivo at specific sites designated by UAG stop codons. This site-specific Uaa incorporation can be used as a controller of target gene expression at the translational level by conditional read-through of internal UAG stop codons. Recent advances in optimization of site-specific Uaa incorporation for translational regulation have enabled more precise control over a wide range of novel important applications, such as Uaa-auxotrophy-based biological containment, live-attenuated v...
AbstractCodon-specific incorporation of noncoded amino acids into proteins can diversify the genetic...
Abstract — Re-engineering the protein synthesis apparatus is a powerful approach to expand our under...
Over the last decade, the ability to genetically encode unnatural amino acids (UAAs) has evolved rap...
Genetic code expansion allows unnatural (non-canonical) amino acid incorporation into proteins of in...
Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonical amino a...
Abstract: Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonic...
Genetic code expansion enables the site-specific incorporation of unnatural amino acids (unAA) into ...
The ability to site-specifically incorporate unnatural amino acids (UAAs) into proteins is a powerfu...
The genetic code of most organisms was evolved to encode 20 amino acids. Although the ability to enc...
Expanding the genetic code by unnatural amino acid (UAA) incorporation allows for control of protein...
The ability to site-specifically incorporate unnatural amino acids (UAAs) into proteins is a powerfu...
Since the establishment of site-specific mutagenesis of single amino acids to interrogate protein fu...
Genetic code expansion provides a powerful tool for site-specific incorporation of unnatural amino a...
Stop codons have been exploited for genetic incorporation of unnatural amino acids (Uaas) in live ce...
SummaryUsing an orthogonal tRNA-synthetase pair, unnatural amino acids can be genetically encoded wi...
AbstractCodon-specific incorporation of noncoded amino acids into proteins can diversify the genetic...
Abstract — Re-engineering the protein synthesis apparatus is a powerful approach to expand our under...
Over the last decade, the ability to genetically encode unnatural amino acids (UAAs) has evolved rap...
Genetic code expansion allows unnatural (non-canonical) amino acid incorporation into proteins of in...
Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonical amino a...
Abstract: Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonic...
Genetic code expansion enables the site-specific incorporation of unnatural amino acids (unAA) into ...
The ability to site-specifically incorporate unnatural amino acids (UAAs) into proteins is a powerfu...
The genetic code of most organisms was evolved to encode 20 amino acids. Although the ability to enc...
Expanding the genetic code by unnatural amino acid (UAA) incorporation allows for control of protein...
The ability to site-specifically incorporate unnatural amino acids (UAAs) into proteins is a powerfu...
Since the establishment of site-specific mutagenesis of single amino acids to interrogate protein fu...
Genetic code expansion provides a powerful tool for site-specific incorporation of unnatural amino a...
Stop codons have been exploited for genetic incorporation of unnatural amino acids (Uaas) in live ce...
SummaryUsing an orthogonal tRNA-synthetase pair, unnatural amino acids can be genetically encoded wi...
AbstractCodon-specific incorporation of noncoded amino acids into proteins can diversify the genetic...
Abstract — Re-engineering the protein synthesis apparatus is a powerful approach to expand our under...
Over the last decade, the ability to genetically encode unnatural amino acids (UAAs) has evolved rap...