Genetic code expansion and reprogramming methodologies allow us to incorporate non-canonical amino acids (ncAAs) bearing various functional groups, such as fluorescent groups, bioorthogonal functional groups, and post-translational modifications, into a desired position or multiple positions in polypeptides both in vitro and in vivo. In order to efficiently incorporate a wide range of ncAAs, several methodologies have been developed, such as orthogonal aminoacyl-tRNA-synthetase (AARS)–tRNA pairs, aminoacylation ribozymes, frame-shift suppression of quadruplet codons, and engineered ribosomes. More recently, it has been reported that an engineered translation system specifically utilizes an artificially built genetic code and functions ort...
Over the last decade, the ability to genetically encode unnatural amino acids (UAAs) has evolved rap...
Genetic incorporation of noncanonical amino acids (ncAAs) has become a powerful tool to enhance exis...
textOver the last twenty years, the expansion of the genetic code has been made possible by the enco...
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...
The genetic code of cells is near‐universally triplet, and since many ribosomal mutations are lethal...
The genetic code of cells is near‐universally triplet, and since many ribosomal mutations are lethal...
The ability of incorporation non-canonical amino acids (ncAAs) using translation offers researchers ...
Synthetic biology holds promise to revolutionize the life sciences and biomedicine via expansion of ...
Methods of genetic code manipulation, such as nonsense codon suppression and genetic code reprogramm...
Synthetic biology holds promise to revolutionize the life sciences and biomedicine via expansion of ...
Proteins in nature are synthesized from a conservative set of 20 canonical amino acids, limiting the...
AbstractWith few minor variations, the genetic code is universal to all forms of life on our planet....
ABSTRACT: We have taken a rational approach to redesigning the amino acid binding and aminoacyl−tRNA...
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 incorporation of noncanonical amino acids (ncAAs) has become a powerful tool to enhance exis...
textOver the last twenty years, the expansion of the genetic code has been made possible by the enco...
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...
The genetic code of cells is near‐universally triplet, and since many ribosomal mutations are lethal...
The genetic code of cells is near‐universally triplet, and since many ribosomal mutations are lethal...
The ability of incorporation non-canonical amino acids (ncAAs) using translation offers researchers ...
Synthetic biology holds promise to revolutionize the life sciences and biomedicine via expansion of ...
Methods of genetic code manipulation, such as nonsense codon suppression and genetic code reprogramm...
Synthetic biology holds promise to revolutionize the life sciences and biomedicine via expansion of ...
Proteins in nature are synthesized from a conservative set of 20 canonical amino acids, limiting the...
AbstractWith few minor variations, the genetic code is universal to all forms of life on our planet....
ABSTRACT: We have taken a rational approach to redesigning the amino acid binding and aminoacyl−tRNA...
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 incorporation of noncanonical amino acids (ncAAs) has become a powerful tool to enhance exis...
textOver the last twenty years, the expansion of the genetic code has been made possible by the enco...